| Literature DB >> 28493531 |
Masato Noguchi1, Akihiro Nomura1, Ken Murase1, Satoki Doi1, Keishi Yamaguchi1, Kazuyuki Hirata2, Makoto Shiozaki2, Shintaro Hirashima2, Masayuki Kotoku2, Takayuki Yamaguchi3, Yoshiaki Katsuda3, Ruo Steensma4, Xioalin Li4, Haiyan Tao4, Bruno Tse4, Morgan Fenn4, Robert Babine4, Erin Bradley4, Paul Crowe4, Scott Thacher4, Tsuyoshi Adachi1, Masafumi Kamada1.
Abstract
Retinoid-related orphan receptor gamma (RORγ) directly controls the differentiation of Th17 cell and the production of interleukin-17, which plays an integral role in autoimmune diseases. To obtain insight into RORγ, we have determined the first crystal structure of a ternary complex containing RORγ ligand-binding domain (LBD) bound with a novel synthetic inhibitor and a repressor peptide, 22-mer peptide from silencing mediator of retinoic acid and thyroid hormone receptor (SMRT). Comparison of a binary complex of nonliganded (apo) RORγ-LBD with a nuclear receptor co-activator (NCoA-1) peptide has shown that our inhibitor displays a unique mechanism different from those caused by natural inhibitor, ursolic acid (UA). The compound unprecedentedly induces indirect disruption of a hydrogen bond between His479 on helix 11 (H11) and Tyr502 on H12, which is crucial for active conformation. This crystallographic study will allow us to develop novel synthetic compounds for autoimmune disease therapy.Entities:
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Year: 2017 PMID: 28493531 DOI: 10.1111/gtc.12494
Source DB: PubMed Journal: Genes Cells ISSN: 1356-9597 Impact factor: 1.891