转位酶
生物物理学
ATP酶
AAA蛋白
细胞生物学
细胞质
生物
生物化学
化学
染色体易位
酶
基因
作者
Srinath Krishnamurthy,Marios Frantzeskos Sardis,Nikolaos Eleftheriadis,Katerina Chatzi,Jochem H. Smit,Konstantina Karathanou,Giorgos Gouridis,Athina G. Portaliou,Ana‐Nicoleta Bondar,Spyridoula Karamanou,Anastassios Economou
出处
期刊:Cell Reports
[Elsevier]
日期:2022-02-01
卷期号:38 (6): 110346-110346
被引量:7
标识
DOI:10.1016/j.celrep.2022.110346
摘要
Protein machines undergo conformational motions to interact with and manipulate polymeric substrates. The Sec translocase promiscuously recognizes, becomes activated, and secretes >500 non-folded preprotein clients across bacterial cytoplasmic membranes. Here, we reveal that the intrinsic dynamics of the translocase ATPase, SecA, and of preproteins combine to achieve translocation. SecA possesses an intrinsically dynamic preprotein clamp attached to an equally dynamic ATPase motor. Alternating motor conformations are finely controlled by the γ-phosphate of ATP, while ADP causes motor stalling, independently of clamp motions. Functional preproteins physically bridge these independent dynamics. Their signal peptides promote clamp closing; their mature domain overcomes the rate-limiting ADP release. While repeated ATP cycles shift the motor between unique states, multiple conformationally frustrated prongs in the clamp repeatedly "catch and release" trapped preprotein segments until translocation completion. This universal mechanism allows any preprotein to promiscuously recognize the translocase, usurp its intrinsic dynamics, and become secreted.
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