Guo Yanxia, MacIsaac Kenzie D, Chen Yi, Miller Richard J, Jain Renu, Joyce-Shaikh Barbara, Ferguson Heidi, Wang I-Ming, Cristescu Razvan, Mudgett John, Engstrom Laura, Piers Kyle J, Baltus Gretchen A, Barr Kenneth, Zhang Hongjun, Mehmet Huseyin, Hegde Laxminarayan G, Hu Xiao, Carter Laura L, Aicher Thomas D, Glick Gary, Zaller Dennis, Hawwari Abbas, Correll Craig C, Jones Dallas C, Cua Daniel J
Merck Research Laboratories, 901 California Avenue, Palo Alto, CA 94304, USA.
Merck Research Laboratories, 33 Avenue Louis Pasteur, Boston, MA 02115, USA.
Cell Rep. 2016 Dec 20;17(12):3206-3218. doi: 10.1016/j.celrep.2016.11.073.
Recent studies have elucidated the molecular mechanism of RORγT transcriptional regulation of Th17 differentiation and function. RORγT was initially identified as a transcription factor required for thymopoiesis by maintaining survival of CD4CD8 (DP) thymocytes. While RORγ antagonists are currently being developed to treat autoimmunity, it remains unclear how RORγT inhibition may impact thymocyte development. In this study, we show that in addition to regulating DP thymocytes survival, RORγT also controls genes that regulate thymocyte migration, proliferation, and T cell receptor (TCR)α selection. Strikingly, pharmacological inhibition of RORγ skews TCRα gene rearrangement, limits T cell repertoire diversity, and inhibits development of autoimmune encephalomyelitis. Thus, targeting RORγT not only inhibits Th17 cell development and function but also fundamentally alters thymic-emigrant recognition of self and foreign antigens. The analysis of RORγ inhibitors has allowed us to gain a broader perspective of the diverse function of RORγT and its impact on T cell biology.
近期研究阐明了RORγT对Th17分化和功能进行转录调控的分子机制。RORγT最初被鉴定为胸腺生成所必需的转录因子,它通过维持CD4CD8(双阳性,DP)胸腺细胞的存活来发挥作用。虽然目前正在开发RORγ拮抗剂用于治疗自身免疫性疾病,但RORγT抑制如何影响胸腺细胞发育仍不清楚。在本研究中,我们发现,除了调节DP胸腺细胞存活外,RORγT还控制着调节胸腺细胞迁移、增殖和T细胞受体(TCR)α选择的基因。引人注目的是,RORγ的药理学抑制作用会使TCRα基因重排发生偏差,限制T细胞库的多样性,并抑制自身免疫性脑脊髓炎的发展。因此,靶向RORγT不仅抑制Th17细胞的发育和功能,而且从根本上改变胸腺迁出细胞对自身和外来抗原的识别。对RORγ抑制剂的分析使我们能够更全面地了解RORγT的多种功能及其对T细胞生物学的影响。