The Brachyury Gly177Asp SNP Is not Associated with a Risk of Skull Base Chordoma in the Chinese Population
Abstract
:1. Introduction
2. Results and Discussion
2.1. Results
2.2. Discussion
3. Experimental Section
3.1. Study Population
3.2. DNA Extraction and Genotyping
3.3. Statistical Analysis
4. Conclusion
Rs2305089 | G allele | A allele | χ2 | p-Value |
---|---|---|---|---|
HCB * | 0.640 | 0.360 | - | - |
CEU * | 0.410 | 0.590 | - | - |
YRI * | 0.797 | 0.203 | - | - |
Chordoma group | 0.63 | 0.37 | 0.21 | >0.05 |
Control group | 0.65 | 0.35 | 0.47 | >0.05 |
Genotype | Cases (n (%)) | Controls (n (%)) | p-Value | 95% CI |
---|---|---|---|---|
G/G | 25 (38.5) | 49 (40.8) | 0.929 | |
G/A | 32 (49.2) | 58 (48.3) | ||
A/A | 8 (12.3) | 13 (10.8) | ||
GA + AA * | 40 (61.5) | 71 (59.1) | 0.753 | 0.488–1.680 |
G177 Freq | 0.63 | 0.65 | 0.712 | 0.590–1.434 |
Gender | Genotype | Cases (n (%)) | Controls (n (%)) | p-Value | 95% CI |
---|---|---|---|---|---|
Male | G/G | 14 (40.0) | 28 (49.1) | 0.937 | |
G/A | 16 (45.7) | 22 (38.6) | |||
A/A | 5 (14.3) | 7 (12.3) | |||
G177 Freq | 0.63 | 0.68 | 0.438 | 0.418–1.460 | |
Female | G/G | 11 (36.7) | 21 (33.3) | 0.940 | |
G/A | 16 (53.3) | 36 (57.1) | |||
A/A | 3 (10.0) | 6 (9.5) | |||
G177 Freq | 0.63 | 0.62 | 0.851 | 0.563–2.009 |
Total | Genotype | Allele count | Frequency | p-Value | |||||
---|---|---|---|---|---|---|---|---|---|
GG | GA | AA | G | A | G | A | |||
Gender | |||||||||
Male | 35 | 14 | 16 | 5 | 44 | 26 | 0.63 | 0.37 | 0.955 |
Female | 30 | 11 | 16 | 3 | 38 | 22 | 0.63 | 0.37 | |
Age at the time of the operation (years) | |||||||||
≤40 | 35 | 10 | 19 | 6 | 39 | 31 | 0.56 | 0.44 | 0.060 |
>40 | 30 | 15 | 13 | 2 | 43 | 17 | 0.72 | 0.18 | |
Outcome | |||||||||
Primary | 48 | 18 | 27 | 3 | 63 | 33 | 0.66 | 0.34 | 0.312 |
Recurrence | 17 | 7 | 5 | 5 | 19 | 15 | 0.56 | 0.44 | |
Histology | |||||||||
Conventional | 62 | 25 | 30 | 7 | 80 | 44 | 0.65 | 0.35 | / |
Chondroid | 2 | 0 | 2 | 0 | 2 | 2 | 0.5 | 0.5 | |
De-differential | 1 | 0 | 0 | 1 | 0 | 2 | 0 | 1.0 |
Acknowledgments
Conflicts of interest
References
- McMaster, M.L.; Goldstein, A.M.; Bromley, C.M.; Ishibe, N.; Parry, D.M. Chordoma: Incidence and survival patterns in the United States, 1973–1995. Cancer Causes Control 2001, 12, 1–11. [Google Scholar]
- Wu, Z.; Zhang, J.; Zhang, L.; Jia, G.; Tang, J.; Wang, L.; Wang, Z. Prognostic factors for long-term outcome of patients with surgical resection of skull base chordomas-106 cases review in one institution. Neurosurg. Rev 2010, 33, 451–456. [Google Scholar]
- Samii, A.; Gerganov, V.M.; Herold, C.; Hayashi, N.; Naka, T.; Mirzayan, M.J.; Samii, M. Chordomas of the skull base: Surgical management and outcome. J. Neurosurg 2007, 107, 319–324. [Google Scholar]
- Di Maio, S.; Temkin, N.; Ramanathan, D.; Sekhar, L.N. Current comprehensive management of cranial base chordomas: 10-Year meta-analysis of observational studies. J. Neurosurg 2011, 115, 1094–1105. [Google Scholar]
- Vujovic, S.; Henderson, S.; Presmeau, N.; Odell, E.; Jacques, T.S.; Tirabosco, R.; Boshoff, C.; Flanagan, A.M. Brachyury, a crucial regulator of notochordal development, is a novel biomarker for chordomas. J. Pathol 2006, 209, 157–165. [Google Scholar]
- Jambhekar, N.A.; Rekhi, B.; Thorat, K.; Dikshit, R.; Agrawal, M.; Puri, A. Revisiting chordoma with brachyury, a “New Age” marker-Analysis of a validation study on 51 cases. Arch. Pathol. Lab. Med 2010, 134, 1181–1187. [Google Scholar]
- Presneau, N.; Shalaby, A.; Ye, H.; Pillay, N.; Halai, D.; Idowe, B.; Tirabosco, R.; Whitwell, D.; Jacques, T.S.; Kindblom, L.G.; et al. Role of the transcription factor T(brachyury) in the pathogenesis of sporadic chordoma: A genetic and function-based study. J. Pathol 2011, 223, 327–335. [Google Scholar]
- Yang, X.R.; Ng, D.; Alcorta, D.A.; Liebsch, N.J.; Sheridan, E.; Li, S.; Goldstein, A.M.; Parry, D.M.; Kelley, M.J. T(brachyury) gene duplication confers major susceptibility to familial chordoma. Nat. Genet 2009, 41, 1176–1178. [Google Scholar]
- Pillay, N.; Plagnol, V.; Tarpey, P.S.; Lobo, S.B.; Presneau, N.; Szuhai, K.; Halai, D.; Berisha, F.; Cannon, S.R.; Mead, S.; et al. A common single-nucleotide variant in T is strongly associated with chordoma. Nat. Genet 2011, 44, 1185–1187. [Google Scholar]
- Nelson, A.C.; Pillay, N.; Henderson, S.; Presneau, N.; Tirabosco, R.; Halai, D.; Berisha, F.; Flicek, P.; Stemple, D.L.; Stern, C.D.; et al. An integrated functional genomics approach identifies the regulatory network directed by brachyury (T) in chordoma. J. Pathol 2012, 228, 274–285. [Google Scholar]
- Le, L.P.; Nielsen, G.P.; Rosenberg, A.E.; Thomas, D.; Batten, J.M.; Deshpande, V.; Schwab, J.; Duan, Z.; Xavier, R.J.; Hornicek, F.J.; et al. Recurrent chromosomal copy number alterations in sporadic chordomas. PLoS One 2011, 6, e18846. [Google Scholar]
- Kilic, N.; Feldhaus, S.; Kilic, E.; Tennstedt, P.; Wichlein, D.; Wasielewski, R.V.; Viebahn, C.; Kreipe, H.; Schumacher, U. Brachyury expression predicts poor prognosis at early stages of colorectal cancer. Eur. J. Cancer 2011, 47, 1080–1085. [Google Scholar]
- Barresi, V.; Vitarelli, E.; Branca, G.; Antonelli, M.; Giangaspero, F.; Barresi, G. Expression of brachyury in hemangioblastoma: Potential use in differential diagnosis. Am. J. Surg. Pathol 2012, 36, 1052–1057. [Google Scholar]
- Fernando, R.I.; Litzinger, M.; Trono, P.; Hamilton, D.H.; Schlom, J.; Palena, C. The T-box transcription factor Brachyury promotes epithelial-mesenchymal transition in human tumor cells. J. Clin. Invest 2010, 120, 533–544. [Google Scholar]
- Amold, S.J.; Stappert, J.; Bauer, A.; Kispert, A.; Herrmann, B.G.; Kemler, R. Brachyury is a target gene of the Wnt/β-catenin signaling pathway. Mech. Dev 2000, 91, 249–258. [Google Scholar]
- Vander Lugt, B.; Beck, Z.T.; Fuhlbrigge, R.C.; Hacohen, N.; Campbell, J.J.; Boes, M. TGF-β suppresses β-catenin-dependent tolerogenic activation program in dendritic cells. PLoS One 2011, 6, e20099. [Google Scholar]
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Wu, Z.; Wang, K.; Wang, L.; Feng, J.; Hao, S.; Tian, K.; Zhang, L.; Jia, G.; Wan, H.; Zhang, J. The Brachyury Gly177Asp SNP Is not Associated with a Risk of Skull Base Chordoma in the Chinese Population. Int. J. Mol. Sci. 2013, 14, 21258-21265. https://doi.org/10.3390/ijms141121258
Wu Z, Wang K, Wang L, Feng J, Hao S, Tian K, Zhang L, Jia G, Wan H, Zhang J. The Brachyury Gly177Asp SNP Is not Associated with a Risk of Skull Base Chordoma in the Chinese Population. International Journal of Molecular Sciences. 2013; 14(11):21258-21265. https://doi.org/10.3390/ijms141121258
Chicago/Turabian StyleWu, Zhen, Ke Wang, Liang Wang, Jie Feng, Shuyu Hao, Kaibing Tian, Liwei Zhang, Guijun Jia, Hong Wan, and Junting Zhang. 2013. "The Brachyury Gly177Asp SNP Is not Associated with a Risk of Skull Base Chordoma in the Chinese Population" International Journal of Molecular Sciences 14, no. 11: 21258-21265. https://doi.org/10.3390/ijms141121258
APA StyleWu, Z., Wang, K., Wang, L., Feng, J., Hao, S., Tian, K., Zhang, L., Jia, G., Wan, H., & Zhang, J. (2013). The Brachyury Gly177Asp SNP Is not Associated with a Risk of Skull Base Chordoma in the Chinese Population. International Journal of Molecular Sciences, 14(11), 21258-21265. https://doi.org/10.3390/ijms141121258