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Here, we show that T-bet acts through enhancers to allow the recruitment of [[Mediator]] and [https://proteopedia.org/wiki/index.php/3mi9 P-TEFb] in the formation of the super elongation complex (SEC). Th1 genes are occupied by [[RNA Polymerase II]] in Thp cells, while T-bet-mediated recruitment of P-TEFb and mediator. The recruitment of P-TEFb and mediator activates transcriptional elongation and giving place to increased differentiation of Thp into Th1.<ref name="T-bet Activates Th1 Genes through Mediator and the Super Elongation Complex">DOI 10.1016/j.celrep.2016.05.054</ref>
Here, we show that T-bet acts through enhancers to allow the recruitment of [[Mediator]] and [https://proteopedia.org/wiki/index.php/3mi9 P-TEFb] in the formation of the super elongation complex (SEC). Th1 genes are occupied by [[RNA Polymerase II]] in Thp cells, while T-bet-mediated recruitment of P-TEFb and mediator. The recruitment of P-TEFb and mediator activates transcriptional elongation and giving place to increased differentiation of Thp into Th1.<ref name="T-bet Activates Th1 Genes through Mediator and the Super Elongation Complex">DOI 10.1016/j.celrep.2016.05.054</ref>


T-bet can also regulate Th1 cell differentiation by directly initiating gamma interferon (IFN-γ) transcription and by suppressing Th2-specific transcription factor  [https://proteopedia.org/wiki/index.php/3dfx GATA-3]<ref name="A novel transcription factor, T-bet, directs Th1 lineage commitment"> 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</ref>. The T-bet induced expression of IFN-γ derives Th precursor cells to differentiate into Th1 effector cells.
T-bet can also regulate Th1 cell differentiation by directly initiating gamma interferon (IFN-γ) transcription <ref name="The transcription factor T-bet controls regulatory T cell homeostasis and function during type 1 inflammation.">DOI 10.1038/ni.1731</ref>and by suppressing Th2-specific transcription factor  [https://proteopedia.org/wiki/index.php/3dfx GATA-3]<ref name="A novel transcription factor, T-bet, directs Th1 lineage commitment"> 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</ref>. The T-bet induced expression of IFN-γ derives Th precursor cells to differentiate into Th1 effector cells.
This stimulation of IFN-γ can take place thanks to the action of a nuclear tyrosine kinase, c-Abl. C-Abl induces phosphorylation of T-bet at tyrosine residues TYR 219, TYR 265, and TYR 304. C-Abl phosphorylates the tyrosine residues within the T-box domain, which is the DNA-binding domain of T-bet. This phosphorylation leads to conformational changes of the T-box domain to facilitate the DNA-binding activity of T-bet and appears to play a crucial role in the IFN-γ promoter-binding activity of T-bet.
This stimulation of IFN-γ can take place thanks to the action of a nuclear tyrosine kinase, c-Abl. C-Abl induces phosphorylation of T-bet at tyrosine residues TYR 219, TYR 265, and TYR 304. C-Abl phosphorylates the tyrosine residues within the T-box domain, which is the DNA-binding domain of T-bet. This phosphorylation leads to conformational changes of the T-box domain to facilitate the DNA-binding activity of T-bet and appears to play a crucial role in the IFN-γ promoter-binding activity of T-bet.


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== References ==
== References ==
<references/>
<references/>
12. 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

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T-Box transcription factor 21 (TBX21)

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