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Article

Cimicifugoside H-2 as an Inhibitor of IKK1/Alpha: A Molecular Docking and Dynamic Simulation Study

by
Shahd Aboul Hosn
1,†,
Christina El Ahmadieh
1,†,
Sergio Thoumi
2,
Aia Sinno
1 and
Charbel Al Khoury
1,*
1
Department of Natural Sciences, School of Arts and Sciences, Lebanese American University, Beirut Campus, P.O. Box 13-5053, Chouran, Beirut 1102 2801, Lebanon
2
Department of Computer Science and Mathematics, Lebanese American University, Beirut Campus, P.O. Box 13-5053, Chouran, Beirut 1102 2801, Lebanon
*
Author to whom correspondence should be addressed.
Those authors contributed equally to this work.
Biomolecules 2024, 14(7), 860; https://doi.org/10.3390/biom14070860
Submission received: 30 May 2024 / Revised: 23 June 2024 / Accepted: 24 June 2024 / Published: 17 July 2024

Abstract

One of the most challenging issues scientists face is finding a suitable non-invasive treatment for cancer, as it is widespread around the world. The efficacy of phytochemicals that target oncogenic pathways appears to be quite promising and has gained attention over the past few years. We investigated the effect of docking phytochemicals isolated from the rhizomes of the Cimicifuga foetida plant on different domains of the IκB kinase alpha (IKK1/alpha) protein. The Cimicifugoside H-2 phytochemical registered a high docking score on the activation loop of IKK1/alpha amongst the other phytochemicals compared to the positive control. The interaction of the protein with Cimicifugoside H-2 was mostly stabilized by hydrogen bonds and hydrophobic interactions. A dynamic simulation was then performed with the Cimicifugoside H-2 phytochemical on the activation loop of IKK1/alpha, revealing that Cimicifugoside H-2 is a possible inhibitor of this protein. The pharmacokinetic properties of the drug were also examined to assess the safety of administering the drug. Therefore, in this in silico study, we discovered that the Cimicifugoside H-2 phytochemical inhibits the actively mutated conformation of IKK1/alpha, potentially suppressing the nuclear factor kappa light chain enhancer of activated B cells (NF-κB) pathway.
Keywords: IKK1/alpha or IKK1/α; NF-κB pathway; Cimicifugoside H-2; molecular docking; dynamic simulation IKK1/alpha or IKK1/α; NF-κB pathway; Cimicifugoside H-2; molecular docking; dynamic simulation

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MDPI and ACS Style

Aboul Hosn, S.; El Ahmadieh, C.; Thoumi, S.; Sinno, A.; Al Khoury, C. Cimicifugoside H-2 as an Inhibitor of IKK1/Alpha: A Molecular Docking and Dynamic Simulation Study. Biomolecules 2024, 14, 860. https://doi.org/10.3390/biom14070860

AMA Style

Aboul Hosn S, El Ahmadieh C, Thoumi S, Sinno A, Al Khoury C. Cimicifugoside H-2 as an Inhibitor of IKK1/Alpha: A Molecular Docking and Dynamic Simulation Study. Biomolecules. 2024; 14(7):860. https://doi.org/10.3390/biom14070860

Chicago/Turabian Style

Aboul Hosn, Shahd, Christina El Ahmadieh, Sergio Thoumi, Aia Sinno, and Charbel Al Khoury. 2024. "Cimicifugoside H-2 as an Inhibitor of IKK1/Alpha: A Molecular Docking and Dynamic Simulation Study" Biomolecules 14, no. 7: 860. https://doi.org/10.3390/biom14070860

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