Sandbox Reserved 1647: Difference between revisions

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== References ==
== References ==
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<references/>
1 Mehta, D. S., Wurster, A. L., Weinmann, A. S., & Grusby, M. J. (2005). NFATc2 and T-bet contribute to T-helper-cell-subset-specific regulation of IL-21 expression. Proceedings of the National Academy of Sciences of the United States of America, 102(6), 2016–2021. https://doi.org/10.1073/pnas.0409512102
2 Lysine 313 of T-box Is Crucial for Modulation of Protein Stability, DNA Binding, and Threonine Phosphorylation of T-bet
Eun Jung Jang, Hye Ryeon Park, Jeong-Ho Hong, Eun Sook Hwang
The Journal of Immunology June 1, 2013, 190 (11) 5764-5770; DOI: 10.4049/jimmunol.1203403
3 Oh, S., & Hwang, E. S. (2014). The role of protein modifications of T-bet in cytokine production and differentiation of T helper cells. Journal of immunology research, 2014, 589672. https://doi.org/10.1155/2014/589672
4 Pan, L., Chen, Z., Wang, L., Chen, C., Li, D., Wan, H., Li, B., & Shi, G. (2014). Deubiquitination and stabilization of T-bet by USP10. Biochemical and biophysical research communications, 449(3), 289–294. https://doi.org/10.1016/j.bbrc.2014.05.037
5 Wang, P., Wang, Y., Xie, L., Xiao, M., Wu, J., Xu, L., Bai, Q., Hao, Y., Huang, Q., Chen, X., He, R., Li, B., Yang, S., Chen, Y., Wu, Y., & Ye, L. (2019). The Transcription Factor T-Bet Is Required for Optimal Type I Follicular Helper T Cell Maintenance During Acute Viral Infection. Frontiers in immunology, 10, 606. https://doi.org/10.3389/fimmu.2019.00606
6 Hertweck, A., Evans, C. M., Eskandarpour, M., Lau, J. C., Oleinika, K., Jackson, I., Kelly, A., Ambrose, J., Adamson, P., Cousins, D. J., Lavender, P., Calder, V. L., Lord, G. M., & Jenner, R. G. (2016). T-bet Activates Th1 Genes through Mediator and the Super Elongation Complex. Cell reports, 15(12), 2756–2770. https://doi.org/10.1016/j.celrep.2016.05.054
7 Koch, M. A., Tucker-Heard, G., Perdue, N. R., Killebrew, J. R., Urdahl, K. B., & Campbell, D. J. (2009). The transcription factor T-bet controls regulatory T cell homeostasis and function during type 1 inflammation. Nature immunology, 10(6), 595–602. https://doi.org/10.1038/ni.1731
8 Lazarevic, V., Chen, X., Shim, J. H., Hwang, E. S., Jang, E., Bolm, A. N., Oukka, M., Kuchroo, V. K., & Glimcher, L. H. (2011). T-bet represses T(H)17 differentiation by preventing Runx1-mediated activation of the gene encoding RORγt. Nature immunology, 12(1), 96–104. https://doi.org/10.1038/ni.1969
9 Szabo, S. J., Kim, S. T., Costa, G. L., Zhang, X., Fathman, C. G., & Glimcher, L. H. (2000). A novel transcription factor, T-bet, directs Th1 lineage commitment. Cell, 100(6), 655–669. https://doi.org/10.1016/s0092-8674(00)80702-3
10 Robinson, D. S., & Lloyd, C. M. (2002). Asthma: T-bet--a master controller?. Current biology : CB, 12(9), R322–R324. https://doi.org/10.1016/s0960-9822(02)00830-8
11 Jenner, R. G., Townsend, M. J., Jackson, I., Sun, K., Bouwman, R. D., Young, R. A., Glimcher, L. H., & Lord, G. M. (2009). The transcription factors T-bet and GATA-3 control alternative pathways of T-cell differentiation through a shared set of target genes. Proceedings of the National Academy of Sciences of the United States of America, 106(42), 17876–17881. https://doi.org/10.1073/pnas.0909357106