| Literature DB >> 28667162 |
Zhiheng He1, Fei Wang1, Jing Zhang1,2, Subha Sen1, Qihua Pang1,3, Shengwei Luo1,3, Yousang Gwack4, Zuoming Sun5.
Abstract
Transcription factor retinoid acid-related orphan receptor (ROR)γt transcriptionally regulates the genes required for differentiation of Th17 cells that mediate both protective and pathogenic immunity. However, little is known about the function of posttranslational modifications in the regulation of RORγt activity. Mass spectrometric analysis of immunoprecipitated RORγt from Th17 cells identified multiple phosphorylation sites. Systematic mutation analysis of the identified phosphorylation sites found that phosphorylation of S376 enhances whereas phosphorylation of S484 inhibits Th17 differentiation. IκB kinase (IKK)α binds and phosphorylates RORγt at S376 but not S484. Knockdown of IKKα, dominant-negative IKKα, and RORγt mutants incapable of interacting with IKKα all decrease Th17 differentiation. Furthermore, nonphosophorylatable RORγt mutant (S376A) impairs whereas phosphomimetic mutant (S376E) stimulates Th17 differentiation independent of IKKα. Therefore, IKKα-dependent phosphorylation of S376 stimulated whereas IKKα-independent phosphorylation of S484 inhibited RORγt function in Th17 differentiation.Entities:
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Year: 2017 PMID: 28667162 PMCID: PMC5531059 DOI: 10.4049/jimmunol.1700457
Source DB: PubMed Journal: J Immunol ISSN: 0022-1767 Impact factor: 5.422