蛋白酵素
跨膜结构域
跨膜蛋白
蛋白质水解
生物
生物化学
劈开
劈理(地质)
构象变化
生物物理学
细胞生物学
酶
膜
断裂(地质)
古生物学
受体
作者
Yuki Imaizumi,Kazunori Takanuki,T. Miyake,Mizuki Takemoto,Kunio Hirata,Mika Hirose,Rika Oi,T. Kobayashi,Kenichi Miyoshi,Rie Aruga,Tatsuhiko Yokoyama,Shizuka Katagiri,Hiroaki Matsuura,Kenji Iwasaki,Takayuki Kato,Mika K. Kaneko,Yukinari Kato,Michiko Tajiri,Satoko Akashi,Osamu Nureki
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2022-08-24
卷期号:8 (34): eabp9011-eabp9011
被引量:23
标识
DOI:10.1126/sciadv.abp9011
摘要
Site-2 proteases are a conserved family of intramembrane proteases that cleave transmembrane substrates to regulate signal transduction and maintain proteostasis. Here, we elucidated crystal structures of inhibitor-bound forms of bacterial site-2 proteases including Escherichia coli RseP. Structure-based chemical modification and cross-linking experiments indicated that the RseP domains surrounding the active center undergo conformational changes to expose the substrate-binding site, suggesting that RseP has a gating mechanism to regulate substrate entry. Furthermore, mutational analysis suggests that a conserved electrostatic linkage between the transmembrane and peripheral membrane-associated domains mediates the conformational changes. In vivo cleavage assays also support that the substrate transmembrane helix is unwound by strand addition to the intramembrane β sheet of RseP and is clamped by a conserved asparagine residue at the active center for efficient cleavage. This mechanism underlying the substrate binding, i.e., unwinding and clamping, appears common across distinct families of intramembrane proteases that cleave transmembrane segments.
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