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Keywords = human T-cell leukemia virus type 1 (HTLV-1)

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30 pages, 1327 KB  
Review
Rewiring of the Apoptotic Rheostat in HTLV-1 Infection and Adult T-Cell Leukemia/Lymphoma
by Arezoo Darbandi, Vittoria Raimondi, Francesco Ciccarese, Donna M. D’Agostino and Vincenzo Ciminale
Cancers 2026, 18(15), 2494; https://doi.org/10.3390/cancers18152494 - 4 Aug 2026
Viewed by 248
Abstract
Human T-cell leukemia virus type 1 (HTLV-1) is the etiological agent of an aggressive malignancy of mature T-cells termed adult T-cell leukemia/lymphoma (ATLL), as well as a spectrum of chronic inflammatory diseases. A defining feature of HTLV-1 infection is a profound dysregulation of [...] Read more.
Human T-cell leukemia virus type 1 (HTLV-1) is the etiological agent of an aggressive malignancy of mature T-cells termed adult T-cell leukemia/lymphoma (ATLL), as well as a spectrum of chronic inflammatory diseases. A defining feature of HTLV-1 infection is a profound dysregulation of apoptotic pathways, which is a key determinant of long-term viral persistence and favors malignant transformation. This review describes the mechanisms through which HTLV-1 gene products, including Tax and HBZ, reprogram host-cell signaling controlling the “apoptotic rheostat”, an integrated network connecting redox metabolism, and response to apoptotic cues and immune pressure. We also highlight emerging therapeutic strategies to restore sensitivity to apoptosis, including BH3-mimetic drugs and rational combination approaches. Deciphering how HTLV-1 reconfigures the apoptotic network provides a conceptual and therapeutic framework for targeting death pathway vulnerabilities in ATLL and potentially other hematological neoplasms. Full article
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21 pages, 6989 KB  
Article
Investigating the Mechanisms Underlying Cell Death Induction by a Tributyltin Molecule in HTLV-1-Infected Cells Dependent or Not on IL-2 as a Growth Factor
by Valeria Stefanizzi, Evariste Molimbou, Emanuela Balestrieri, Antonella Minutolo, Franca M. Cordero, Sandro Grelli, Antonio Mastino, Claudia Matteucci, Beatrice Macchi and Francesca Marino-Merlo
Int. J. Mol. Sci. 2026, 27(14), 6165; https://doi.org/10.3390/ijms27146165 - 10 Jul 2026
Viewed by 291
Abstract
Human T-Lymphotropic virus type 1 (HTLV-1) lifelong infects at least 5–10 million people worldwide, a minority of whom develop severe lethal diseases including adult T-cell Leukemia/lymphoma and HTLV-1-associated myelopathy or tropical spastic paraparesis. Currently, no vaccines or curative therapies to fight HTLV-1 infection [...] Read more.
Human T-Lymphotropic virus type 1 (HTLV-1) lifelong infects at least 5–10 million people worldwide, a minority of whom develop severe lethal diseases including adult T-cell Leukemia/lymphoma and HTLV-1-associated myelopathy or tropical spastic paraparesis. Currently, no vaccines or curative therapies to fight HTLV-1 infection or diseases are available. Recently we found that a tributyltin molecule, Bu3SnOCOCF3 (TBT), which is more potent than cisplatin in inducing cytotoxic effects towards a panel of cell lines including high-tumorigenic cells, also exerted potent cytotoxic effects even towards HTLV-1-infected cell lines, mimicking different states of virus-driven transformation. The type of cell death involved was elusive. In the present study, the effects of TBT on virological and cell death parameters were investigated in HTLV-1-infected immortalized lymphocytes generated by in vitro infection and rendered with or without progressive independence from interleukin-2 as a growth factor. Molecular studies demonstrated that TBT affected HTLV-1 viral gene expression, especially HBZ. TBT confirmed its high cytotoxic potential on the HTLV-1-infected cell lines assayed, especially towards the IL-2-independent HTLV-1-infected cells. Investigation of mechanisms involved in cell death induced by TBT in HTLV-1-infected cells confirmed that caspase 3 and 8 activation, as well as apoptotic response, were relevant. In addition, pyroptosis as well as other unspecifed forms of lytic death presumably contribute to cell death induced by TBT in HTLV-1-infected cells, while a concomitant activation of an autophagic response by this compound seems to mitigate it. Overall, these experimental results outline a particular profile of TBT-induced cell death in HTLV-1-infected cells that is useful for future studies aimed at verifying the real potential of tin-based compounds to contrast diseases caused by HTLV-1. Full article
(This article belongs to the Special Issue New Insights into Anticancer Strategies)
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22 pages, 7828 KB  
Article
Whole Blood Volume-Based Absolute Quantification of HTLV-1 Proviral Load: A Comparative Method Evaluation Study
by Gabriel O. Franco, Andreas Stocker, Eduardo M. Netto, Heliene Pereira and Carlos Brites
Viruses 2026, 18(5), 580; https://doi.org/10.3390/v18050580 - 21 May 2026
Cited by 1 | Viewed by 776 | Correction
Abstract
The proviral load of human T-cell lymphotropic virus type 1 (HTLV-1) is an important biomarker associated with the monitoring and risk stratification of adult T-cell leukemia/lymphoma (ATL) and HTLV-1-associated myelopathy/tropical spastic paraparesis (HAM/TSP). However, the lack of standardized quantification methods limits its broader [...] Read more.
The proviral load of human T-cell lymphotropic virus type 1 (HTLV-1) is an important biomarker associated with the monitoring and risk stratification of adult T-cell leukemia/lymphoma (ATL) and HTLV-1-associated myelopathy/tropical spastic paraparesis (HAM/TSP). However, the lack of standardized quantification methods limits its broader application. This study evaluated a novel absolute quantification approach based on whole blood volume and compared its performance with established protocols. A total of 66 HTLV-1-infected individuals were analyzed using six qPCR-based methodologies, including volumetric quantification (copies/µL) by absolute quantification and the Tamegão-Lopes method, as well as normalization per 1000 cells (whole blood, buffy coat, PBMCs, and CD4+ T cells). Association and agreement were assessed using Pearson’s correlation, Bland–Altman analysis, concordance correlation coefficients (CCCs), and Deming regression. Absolute quantification showed strong correlation with both the Tamegão-Lopes method and CD4+-based quantification (r = 0.93 and 0.84, respectively; p < 0.001) and high agreement (CCC = 0.866 and 0.811, respectively), with modest systematic bias (−0.273 log10 copies/µL and 0.115 log10 copies/103 cells, respectively). Leukocyte-normalized methods showed greater discrepancies, likely due to dilution by uninfected cells. These findings show that quantification based on total blood volume is a simplified, operationally feasible alternative for assessing HTLV-1 proviral load. Full article
(This article belongs to the Section Human Virology and Viral Diseases)
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12 pages, 1706 KB  
Article
Transferrin Receptor Marks a Foxp3-Low Treg-like Inflammatory T Cell Subset Associated with Disease Severity in HAM/TSP
by Shinsuke Nakajima, Masaki Hino, Norihiro Takenouchi, Yoshihisa Yamano, Makoto Yamagishi, Tokifumi Odaka, Fhahira Rizkhika Admadiani, Cecile Faye, Kaoru Uchimaru, Jun-Ichi Fujisawa and Kazu Okuma
Pathogens 2026, 15(4), 450; https://doi.org/10.3390/pathogens15040450 - 21 Apr 2026
Viewed by 668
Abstract
Human T-cell leukemia virus type 1 (HTLV-1)-associated myelopathy/tropical spastic paraparesis (HAM/TSP) is a chronic inflammatory disease driven by HTLV-1-infected CD4+ T cells; however, the phenotypic and functional characteristics of disease-associated T-cell subsets remain incompletely understood. We analyzed samples using flow cytometry ( [...] Read more.
Human T-cell leukemia virus type 1 (HTLV-1)-associated myelopathy/tropical spastic paraparesis (HAM/TSP) is a chronic inflammatory disease driven by HTLV-1-infected CD4+ T cells; however, the phenotypic and functional characteristics of disease-associated T-cell subsets remain incompletely understood. We analyzed samples using flow cytometry (n = 3–5 per group) and RNA-seq (n = 13), focusing on CADM1highCD4+ T cells enriched for HTLV-1-infected cells to evaluate a transferrin receptor (TfR)-expressing subset. TfR+CADM1highCD4+ T cells were detected in both asymptomatic carriers and patients with HAM, but their frequency among CD4+ T cells was higher in HAM patients. These cells exhibited a Treg-like phenotype with higher Foxp3 and CTLA-4 expression than TfR cells and showed increased Ki-67 positivity, consistent with proliferation. Despite this phenotype, they produced interferon-γ, indicating inflammatory potential, while Foxp3 expression was lower in HAM patients than in asymptomatic carriers, suggesting a more inflammatory phenotype. Furthermore, TfR transcript levels (RNA-seq TPM) correlated with clinical indicators of disease activity, including neopterin and CXCL10 protein levels, and the Osame motor disability score. Collectively, these findings suggest that TfR identifies a proliferative, Foxp3-low, Treg-like inflammatory CD4+ T-cell subset that is associated with disease activity in HAM. Full article
(This article belongs to the Special Issue New Insights into HTLV-1-Related Inflammatory Diseases)
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13 pages, 796 KB  
Review
Targeting PRMT5 in Adult T-Cell Leukemia/Lymphoma: Opportunities and Challenges
by Kyle Ernzen and Amanda R. Panfil
Viruses 2026, 18(1), 94; https://doi.org/10.3390/v18010094 - 9 Jan 2026
Viewed by 1112
Abstract
Adult T-cell leukemia/lymphoma (ATLL) is an aggressive T-cell malignancy caused by persistent infection with human T-cell leukemia virus type 1 (HTLV-1). ATLL remains difficult to treat despite intensive chemotherapy, antiviral therapy, and hematopoietic stem cell transplantation. The limited durability of current treatment strategies [...] Read more.
Adult T-cell leukemia/lymphoma (ATLL) is an aggressive T-cell malignancy caused by persistent infection with human T-cell leukemia virus type 1 (HTLV-1). ATLL remains difficult to treat despite intensive chemotherapy, antiviral therapy, and hematopoietic stem cell transplantation. The limited durability of current treatment strategies highlights the need for mechanism-based therapeutic approaches. Protein arginine methyltransferase 5 (PRMT5) is a type II arginine methyltransferase that regulates transcription, RNA splicing, DNA damage responses, and immune signaling through symmetric dimethylation of histone and non-histone substrates. PRMT5 is frequently overexpressed across hematologic and solid tumors. Preclinical studies indicate that PRMT5 expression is elevated during HTLV-1-mediated T-cell transformation and that pharmacologic inhibition of PRMT5 selectively impairs the survival and transformation of infected T cells in vitro and in vivo. In this review, we highlight the current understanding of PRMT5 biology in cancer, summarize preclinical studies supporting PRMT5 as a therapeutic target in ATLL, and discuss key challenges to future clinical translation. We also discuss emerging approaches such as rational combination therapies and tumor-selective PRMT5 inhibitors as potential paths toward treatment for ATLL. Full article
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15 pages, 2204 KB  
Article
Transcriptomic and Epitranscriptomic Landscape of Integrated HTLV-1 in MT2 Cells
by Shuanglong Wei, Bohan Zhang, Jingwan Han, Hanping Li, Yongjian Liu, Lei Jia, Jingyun Li, Xiaotian Huang and Lin Li
Viruses 2026, 18(1), 57; https://doi.org/10.3390/v18010057 - 30 Dec 2025
Cited by 1 | Viewed by 1287
Abstract
Human T-lymphotropic virus type 1 (HTLV-1), the first human retrovirus identified, is linked to adult T-cell leukemia and HTLV-1-associated myelopathy/tropical spastic paraparesis. However, its post-transcriptional regulation remains poorly understood. Here, we used Oxford Nanopore direct RNA sequencing to profile the HTLV-1 transcriptome and [...] Read more.
Human T-lymphotropic virus type 1 (HTLV-1), the first human retrovirus identified, is linked to adult T-cell leukemia and HTLV-1-associated myelopathy/tropical spastic paraparesis. However, its post-transcriptional regulation remains poorly understood. Here, we used Oxford Nanopore direct RNA sequencing to profile the HTLV-1 transcriptome and epitranscriptome in MT2 cells. We identified 23 transcript isoforms, encompassing canonical and novel splice variants. Polyadenylation analysis revealed a predominant poly(A) tail length of around 50–100 nucleotides with transcript-specific variations. Distinct RNA modifications, including pseudouridine, N6-methyladenosine, and 5-methylcytidine, were enriched near the 3′ end and varied among transcript classes, with generally lower modification ratios in viral transcripts. These findings provide a more comprehensive map of HTLV-1 RNA splicing, polyadenylation, and modifications in MT2 cells, offering new insights into viral gene regulation and pathogenic mechanisms. Full article
(This article belongs to the Section Human Virology and Viral Diseases)
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12 pages, 1470 KB  
Opinion
The Complexity of Bovine Leukemia Virus Oncogenesis
by Florine Doucet, Alexis Fontaine, Malik Hamaidia, Jean-Rock Jacques, Thomas Jouant, Nour Mhaidly, Songkang Qin, Roxane Terres, Xavier Saintmard, Luc Willems and Manon Zwaenepoel
Viruses 2025, 17(12), 1609; https://doi.org/10.3390/v17121609 - 12 Dec 2025
Cited by 5 | Viewed by 1486
Abstract
Bovine leukemia virus (BLV) is a retrovirus infecting several bovid species, notably Bos taurus, where it fulfills Koch’s postulates for pathogenicity. The virus primarily targets B-lymphocytes, establishing lifelong infections that remain mostly asymptomatic but can progress to lymphocytosis or lymphoma. Transmission occurs [...] Read more.
Bovine leukemia virus (BLV) is a retrovirus infecting several bovid species, notably Bos taurus, where it fulfills Koch’s postulates for pathogenicity. The virus primarily targets B-lymphocytes, establishing lifelong infections that remain mostly asymptomatic but can progress to lymphocytosis or lymphoma. Transmission occurs through live infected cells via blood, milk, or transplacental routes. Despite a robust antiviral immunity, BLV replicates by producing virions (i.e., the infectious cycle) or inducing mitosis of infected cells (i.e., clonal expansion). The immune system effectively controls the infectious cycle but fails to impede clonal expansion, leading to chronic immune activation and immunosuppression. BLV modifies the transcriptome of the host cell by expressing oncogenic factors (Tax), viral microRNAs and antisense RNAs. Leukemogenesis arises from cumulative alterations of the virus (e.g., 5′-end deletions of the integrated provirus and histone modifications of the LTR promoter) and the host cell (e.g., genomic mutations and favorable chromatin integration). This model underscores a unique persistence strategy, linking chronic infection, immune evasion, and slow multistep oncogenesis in the bovine host. Full article
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14 pages, 1149 KB  
Review
Use of Adult T-Cell Leukemia/Lymphoma Cell Lines in a Novel Proteomic Approach for Clarifying the Function of Human Proteins of Unknown Function
by Yasuhiro Tonoyama and Yo-ichi Ishida
Lymphatics 2025, 3(4), 38; https://doi.org/10.3390/lymphatics3040038 - 22 Nov 2025
Viewed by 1162
Abstract
Clarifying the function of approximately 20,000 proteins encoded by the human genome is a key challenge in the fields of medicine and biology. However, many proteins remain uncharacterized. In this review, we introduce a challenge that uses adult T-cell leukemia/lymphoma (ATL) and proteomics [...] Read more.
Clarifying the function of approximately 20,000 proteins encoded by the human genome is a key challenge in the fields of medicine and biology. However, many proteins remain uncharacterized. In this review, we introduce a challenge that uses adult T-cell leukemia/lymphoma (ATL) and proteomics to study human proteins of unknown function (PUFs). The characteristic properties of ATL cells are as follows: ATL cells (1) are infected with virus, (2) are derived from CD4+ T cells, (3) are generated via multi-stage carcinogenesis, (4) have flower-like nuclei, and (5) are highly infiltrative in the aggressive type. Given that ATL cells have contributed to impressive basic research, such as the discovery of HTLV-1 as a human cancer virus and interleukin-2 (IL-2) receptor α chain (IL-2Rα)/CD25, which is used for identifying regulatory T (Treg) cells, ATL cell lines could still be considered an attractive research tool. Furthermore, the “Unknome database” is useful for examining function-unknown degrees of proteins of interest using known scores based on Gene Ontology (GO) annotations and protein analysis through evolutionary relationships (PANTHER). Combining ATL proteomic data obtained by us with the “Unknome database” is expected to contribute not only to investigating the pathogenetic mechanism of ATL but also to clarifying the functions of PUFs. Full article
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21 pages, 2897 KB  
Article
IgG Idiotype Diversity Shapes Cytokine Profiles and Autoantibody Targets in HTLV-1 Clinical Outcomes
by Isabela Siuffi Bergamasco, Nicolle Rakanidis Machado, Lais Alves do Nascimento, Beatriz Oliveira Fagundes, Fabio da Ressureição Sgnotto, Jorge Casseb, Sabri Saeed Sanabani, Luiz Henrique Da Silva Nali, Denis Miyashiro, José Antonio Sanches and Jefferson Russo Victor
Int. J. Mol. Sci. 2025, 26(22), 10858; https://doi.org/10.3390/ijms262210858 - 8 Nov 2025
Cited by 2 | Viewed by 1218
Abstract
Human T-lymphotropic virus type 1 (HTLV-1) infection is associated with a spectrum of clinical outcomes, ranging from lifelong asymptomatic carriage to severe conditions such as HTLV-1-associated myelopathy/tropical spastic paraparesis (HAM/TSP) and adult T-cell leukemia/lymphoma (ATLL). Although antibody responses are known to shape immune [...] Read more.
Human T-lymphotropic virus type 1 (HTLV-1) infection is associated with a spectrum of clinical outcomes, ranging from lifelong asymptomatic carriage to severe conditions such as HTLV-1-associated myelopathy/tropical spastic paraparesis (HAM/TSP) and adult T-cell leukemia/lymphoma (ATLL). Although antibody responses are known to shape immune regulation, the functional relevance of IgG idiotype repertoires in HTLV-1 pathogenesis remains poorly understood. This study investigated the immunomodulatory effects of IgG from individuals with distinct HTLV-1 clinical outcomes. IgG was purified from pooled serum samples of asymptomatic carriers (ACs), HAM/TSP, and ATLL patients and used to stimulate peripheral blood mononuclear cells (PBMCs) from healthy donors. Cytokine production in CD4+, CD8+, and γδ T cells was assessed by flow cytometry. Additionally, proteome-wide IgG reactivity was evaluated using a human protein microarray encompassing over 21,000 proteins, and bioinformatic analyses were conducted to identify protein–protein interaction networks and tissue-specific autoreactivity. HAM/TSP-derived IgG selectively enhanced IFN-γ production in all T-cell subsets and suppressed IL-4 in CD4+ T cells. ATLL-derived IgG induced IL-9 and IL-13 production in CD4+ T cells, and both HAM/TSP and ATLL IgG elevated IL-13 levels in CD8+ T cells. Microarray data revealed distinct autoreactive IgG profiles across clinical groups, targeting immune-related proteins, apoptotic regulators, and proteins expressed in T cells, monocytes, and non-immune tissues such as brain and testis. Notably, no functional or structural clustering was observed in protein–protein interaction networks, suggesting these reactivities reflect complex, idiotype-specific immune alterations rather than compensatory responses. The present findings suggest that HTLV-1 infection may be associated with the development of distinct IgG repertoires that potentially modulate cytokine responses and exhibit broad reactivity toward human proteins. Such patterns could contribute to immune dysregulation and may partially explain the divergent clinical trajectories observed in HAM/TSP and ATLL. Further investigations are warranted to validate these observations at the individual level and to clarify their mechanistic relevance in disease progression. Full article
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66 pages, 1748 KB  
Review
Transcriptional Activation Mechanisms and Target Genes of the Oncogene Product Tax of Human T-Cell Leukemia Virus Type 1
by Mashiro Shirasawa, Rinka Nakajima, Yaxuan Zhou, Mariana Fikriyanti, Ritsuko Iwanaga, Andrew P. Bradford, Kenta Kurayoshi, Keigo Araki and Kiyoshi Ohtani
Genes 2025, 16(10), 1221; https://doi.org/10.3390/genes16101221 - 15 Oct 2025
Cited by 4 | Viewed by 2374
Abstract
Human T-cell leukemia virus type 1 (HTLV-1) is the causative agent of adult T-cell leukemia/lymphoma (ATL). The trans-activator protein Tax of HTLV-1 is thought to play a crucial role in the early-stage transformation of the virus-infected cells. Tax is a multi-functional protein and [...] Read more.
Human T-cell leukemia virus type 1 (HTLV-1) is the causative agent of adult T-cell leukemia/lymphoma (ATL). The trans-activator protein Tax of HTLV-1 is thought to play a crucial role in the early-stage transformation of the virus-infected cells. Tax is a multi-functional protein and modulates cellular signaling pathways that promote proliferation and survival of HTLV-1-infected cells, primarily through the trans-activation of cellular target genes. Tax interacts with a variety of host cell factors including signal transducers and transcription factors, leading to the activation of transcription factors such as CREB, NF-κB, and SRF and activates both its own promoter and those of a variety of host cellular genes. Tax activates its own promoter mainly through CREB and host cellular genes through NF-κB, SRF, and CREB. Accumulating evidence indicates that the Tax-mediated trans-activation of target genes through NF-κB plays an essential role in the transformation of HTLV-1 infected cells. However, the repertoire of Tax target genes, especially those crucial for leukemogenesis, are not known in detail. In this review, we summarize transcriptional activation mechanisms and target genes of Tax, especially focusing on transformation, to facilitate understanding of the underlying mechanisms of leukemogenesis induced by HTLV-1 infection. Full article
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19 pages, 955 KB  
Review
HTLV-1 and ATLL: Epidemiology, Oncogenesis, and Opportunities for Community-Informed Research in the United States
by Adrian Altieri, Sean Patrick Reilly, Abu Mansalay, Alan Soo-Beng Khoo, Nettie Johnson, Zafar K. Khan, Amy Leader, Pooja Jain and Pierluigi Porcu
Viruses 2025, 17(10), 1333; https://doi.org/10.3390/v17101333 - 30 Sep 2025
Cited by 9 | Viewed by 3334
Abstract
Human T-cell leukemia virus type 1 (HTLV-1), the first oncogenic human retrovirus, causes adult T-cell leukemia/lymphoma (ATLL), an aggressive neoplasm of mature CD4+ T-cells that is incurable in most patients and is associated with a median survival of less than 1 year. HTLV-1 [...] Read more.
Human T-cell leukemia virus type 1 (HTLV-1), the first oncogenic human retrovirus, causes adult T-cell leukemia/lymphoma (ATLL), an aggressive neoplasm of mature CD4+ T-cells that is incurable in most patients and is associated with a median survival of less than 1 year. HTLV-1 also causes inflammatory disorders, including HTLV-associated myelopathy/tropical spastic paraparesis (HAM/TSP) and uveitis. The estimated lifetime risks of ATLL and HAM/TSP in HTLV-1 carriers are 3–5% and 0.25–1.8%, respectively. Although there is uncertainty about other health effects of HTLV-1, a recent meta-analysis showed an association between HTLV-1 and cardiovascular, cerebrovascular, and metabolic diseases and a 57% increased risk of early mortality in HTLV-1 carriers, independent of ATLL or HAM/TSP. Furthermore, emerging studies in endemic areas show that outcomes for common cancers, such as cervical cancer and lymphoma (non-ATLL), are inferior in HTLV-1 carriers compared to publicly reported data. Thus, the impact of HTLV-1 may be greater and more diverse than currently understood. This review provides an outline of the prevalence and impact of HTLV-1 and associated disorders in the US, focused on—but not limited to—ATLL, with an emphasis on the social determinants of health that can affect the success of screening and prevention strategies. We also discuss the mechanisms by which HTLV-1 drives the pathogenesis of ATLL and potential strategies for early diagnosis and intervention. Finally, we conclude by suggesting approaches to designing and implementing community-informed research initiatives in HTLV-1 and ATLL. Full article
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10 pages, 1582 KB  
Article
A Simple, Highly Sensitive, and Highly Specific Dot-Blot-Based Immunoassay for Serodiagnosis of HTLV-1 in Resource-Limited Settings
by Haohan Zhuang, Shanhai Ou, Lixing Wang and Hongzhi Gao
Trop. Med. Infect. Dis. 2025, 10(10), 279; https://doi.org/10.3390/tropicalmed10100279 - 26 Sep 2025
Viewed by 1650
Abstract
Human T-cell leukemia virus type 1 (HTLV-1), the first identified human retrovirus, is associated with adult T-cell leukemia (ATL) and HTLV-1-associated myelopathy/tropical spastic paraparesis (HAM/TSP). The lack of effective antiviral therapies or vaccines highlights the critical importance of early diagnosis in managing HTLV-1-associated [...] Read more.
Human T-cell leukemia virus type 1 (HTLV-1), the first identified human retrovirus, is associated with adult T-cell leukemia (ATL) and HTLV-1-associated myelopathy/tropical spastic paraparesis (HAM/TSP). The lack of effective antiviral therapies or vaccines highlights the critical importance of early diagnosis in managing HTLV-1-associated diseases. However, current commercial immunoassays, including enzyme immunoassays, line immunoassays, particle agglutination tests, and Western blots, are often limited by the need for specialized equipment and high costs, which restrict their accessibility in resource-poor regions. To address these challenges, we developed a novel dot-blot immunoassay using HTLV-1 P19 and GP46 synthetic peptides in combination with a precipitating tetramethylbenzidine (TMB) substrate. This innovative approach enables instrument-free visual detection through the formation of distinct blue-brown precipitates. Validation of this immunoassay with 179 clinical serum samples demonstrated 100% specificity and 91% sensitivity. Our assay offers a simple, cost-effective, and field-applicable diagnostic solution for HTLV-1 screening in resource-limited settings, potentially enhancing global surveillance of this neglected pathogen. Full article
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12 pages, 850 KB  
Article
An HTLV-1-Infected Humanized Mouse Model Expressing HLA-A*02:01 Demonstrates Effective CTL-Mediated Suppression of HTLV-1
by Shinsuke Nakajima, Motohito Goto, Sung-Il Lee, Tokifumi Odaka, Masaki Hino, Kenta Tezuka, Norihiro Takenouchi, Takaharu Ueno, Fhahira Rizkhika Admadiani, Riichi Takahashi, Isao Hamaguchi, Takeshi Takahashi, Mamoru Ito and Kazu Okuma
Viruses 2025, 17(9), 1249; https://doi.org/10.3390/v17091249 - 16 Sep 2025
Viewed by 1731
Abstract
Human T-cell leukemia virus type 1 (HTLV-1) establishes lifelong infection and is associated with severe diseases such as adult T-cell leukemia/lymphoma (ATL) and HTLV-1-associated myelopathy/tropical spastic paraparesis (HAM/TSP). Cytotoxic T lymphocytes (CTLs), especially those specific for the viral protein Tax, play a pivotal [...] Read more.
Human T-cell leukemia virus type 1 (HTLV-1) establishes lifelong infection and is associated with severe diseases such as adult T-cell leukemia/lymphoma (ATL) and HTLV-1-associated myelopathy/tropical spastic paraparesis (HAM/TSP). Cytotoxic T lymphocytes (CTLs), especially those specific for the viral protein Tax, play a pivotal role in controlling HTLV-1 infection. However, conventional humanized mouse models fail to fully reconstitute human immune responses, limiting their utility for evaluating CTL-mediated immunity. This study aimed to establish a physiologically relevant in vivo model to investigate human CTL responses against HTLV-1. To achieve this, we utilized NOG-HLA-A02 transgenic (Tg) mice expressing human HLA-A02:01 on thymic epithelial cells, enabling proper development of HLA-restricted human T cells. Compared to conventional humanized NOG mice, HTLV-1-infected humanized NOG-HLA-A02 Tg mice exhibited significantly reduced HTLV-1 proviral load (PVL), decreased expansion of infected CD4+ T cells, a trend toward increased frequencies of Tax-specific CD8+ T cells, and prolonged survival. These results demonstrate that the expression of HLA-A02:01 facilitates robust CTL-mediated immune control of HTLV-1. This model provides a powerful platform for dissecting HTLV-1 immunopathogenesis and evaluating CTL-targeted therapeutic strategies, including vaccines and immune checkpoint inhibitors. Full article
(This article belongs to the Section Viral Immunology, Vaccines, and Antivirals)
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40 pages, 17153 KB  
Review
Immunotherapy of Oncovirus-Induced Cancers: A Review on the Development and Efficacy of Targeted Vaccines
by Chi Sing Ng
Vaccines 2025, 13(9), 911; https://doi.org/10.3390/vaccines13090911 - 27 Aug 2025
Cited by 2 | Viewed by 3241
Abstract
Background: A number of viruses are oncogenic. These include the human papilloma virus (HPV), Epstein–Barr virus (EBV), Kaposi sarcoma human herpes virus 2/human herpes virus 8 (KSHHV/HHV8), hepatitis B virus, (HBV), hepatitis C virus (HCV), Merkel cell polyoma virus (McPyV), and the human [...] Read more.
Background: A number of viruses are oncogenic. These include the human papilloma virus (HPV), Epstein–Barr virus (EBV), Kaposi sarcoma human herpes virus 2/human herpes virus 8 (KSHHV/HHV8), hepatitis B virus, (HBV), hepatitis C virus (HCV), Merkel cell polyoma virus (McPyV), and the human T-cell leukemia virus type 1 (HTLV-1). These viruses cause malignancies ranging from carcinomas, sarcomas, lymphomas, to leukemias. This review aims to study the effects and efficacy of vaccines against these viruses and the cancers they cause in their prevention and treatment. Methods: The literature in the past 30 years was searched employing Scopus and Google Scholar using the keywords “oncogenic viruses, HPV, EBV, KSHHV, HHV8, Polyoma virus, HTLV-1, COVID-19, carcinoma, sarcoma, lymphoma, leukemia, anti-virus vaccines”. Results: Prophylactic vaccines against the HPV and HBV are highly effective in preventing and reducing the incidence of uterine cervical and hepatocellular carcinomas. Prophylactic vaccines against other oncogenic viruses have been less successful, though efficacious in some experimental animals. Therapeutic vaccines are still mostly under evaluation and development. Conclusions: Identification of oncogenic viruses has rendered anti-viral vaccines conspicuous tools for preventing and treating cancers they cause. Many endeavors for the development of such vaccines have been met with limited success, apart from the very effective anti-HPV and anti-HBV vaccines in universal vaccination programs. With the development of new vaccine technologies, it is hoped that effective vaccines against other oncogenic viruses will be developed in the future. Full article
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17 pages, 2353 KB  
Article
High TCR Degeneracy Enhances Antiviral Efficacy of HTLV-1-Specific CTLs by Targeting Variant Viruses in HAM Patients
by Ryuji Kubota, Kousuke Hanada, Mineki Saito, Mika Dozono, Satoshi Nozuma and Hiroshi Takashima
Int. J. Mol. Sci. 2025, 26(14), 6602; https://doi.org/10.3390/ijms26146602 - 10 Jul 2025
Viewed by 1340
Abstract
T-cell receptors (TCRs) exhibit degeneracy, enabling individual TCRs to recognize multiple altered peptide ligands (APLs) derived from a single cognate antigen. This characteristic has been involved in the pathogenesis of autoimmune diseases through cross-reactivity between microbial and self-antigens. Cytotoxic T lymphocytes (CTLs), which [...] Read more.
T-cell receptors (TCRs) exhibit degeneracy, enabling individual TCRs to recognize multiple altered peptide ligands (APLs) derived from a single cognate antigen. This characteristic has been involved in the pathogenesis of autoimmune diseases through cross-reactivity between microbial and self-antigens. Cytotoxic T lymphocytes (CTLs), which recognize peptide–MHC class I complexes via TCRs, play a critical role in the immune response against viral infections. However, the extent to which TCR degeneracy within a population of virus-specific CTLs contributes to effective viral control remains poorly understood. In this study, we investigated the magnitude and functional relevance of TCR degeneracy in CTLs targeting an immunodominant epitope of human T-cell leukemia virus type 1 (HTLV-1) in patients with HTLV-1-associated myelopathy (HAM). Using peripheral blood mononuclear cells (PBMCs) from these patients, we quantified TCR degeneracy at the population level by comparing CTL responses to a panel of APLs with responses to the cognate epitope. Our findings demonstrated that increased TCR degeneracy, particularly at the primary TCR contact residue at position 5 of the antigen, was inversely correlated with HTLV-1 proviral load (p = 0.038, R = −0.40), despite similar functional avidity across patient-derived CTLs. Viral sequencing further revealed that CTLs with high TCR degeneracy exerted stronger selective pressure on the virus, as indicated by a higher frequency of nonsynonymous substitutions within the epitope-encoding region in patients with highly degenerate TCR repertoires. Moreover, TCR degeneracy was positively correlated with the recognition rate of epitope variants (p = 0.018, R = 0.76), suggesting that CTLs with high TCR degeneracy exhibited enhanced recognition of naturally occurring epitope variants compared to those with low TCR degeneracy. Taken together, these results suggest that virus-specific CTLs with high TCR degeneracy possess superior antiviral capacity, characterized by broadened epitope recognition and more effective suppression of HTLV-1 infection. To our knowledge, this is the first study to systematically quantify TCR degeneracy in HTLV-1-specific CTLs and evaluate its contribution to viral control in HAM patients. These findings establish TCR degeneracy as a critical determinant of antiviral efficacy and provide a novel immunological insight into the mechanisms of viral suppression in chronic HTLV-1 infection. Full article
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