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热纤梭菌 PCAT1 肽酶结构域的结构与动力学研究。

Structural and dynamic studies of the peptidase domain from Clostridium thermocellum PCAT1.

机构信息

New York Structural Biology Center, New York, New York, USA.

Laboratory of Membrane Biology and Biophysics, The Rockefeller University, New York, New York, USA.

出版信息

Protein Sci. 2022 Feb;31(2):498-512. doi: 10.1002/pro.4248. Epub 2021 Dec 16.

Abstract

The export of antimicrobial peptides is mediated by diverse mechanisms in bacterial quorum sensing pathways. One such binary system employed by gram-positive bacteria is the PCAT1 ABC transporter coupled to a cysteine protease. The focus of this study is the N-terminal C39 peptidase (PEP) domain from Clostridium thermocellum PCAT1 that processes its natural substrate CtA by cleaving a conserved -GG- motif to separate the cargo from the leader peptide prior to secretion. In this study, we are primarily interested in elucidating the dynamic and structural determinants of CtA binding and how it is coupled to cleavage efficiency in the PCAT1 PEP domain. To this end, we have characterized CtA interactions with PEP domain and PCAT1 transporter in detergent micelles using solution nuclear magnetic resonance spectroscopy. The bound CtA structure revealed the disordered C-terminal cargo peptide is linked by a sterically hindered cleavage site to a helix docked within a hydrophobic cavity in the PEP domain. The wide range of internal motions detected by amide nitrogen (N ) relaxation measurements in the free enzyme and substrate-bound complex suggests the binding site is relatively floppy. This flexibility plays a key role in the structural rearrangement necessary to relax steric inhibition in the bound substrate. In conjunction with previously reported PCAT1 structures, we offer fresh insight into the ATP-mediated association between PEP and transmembrane domains as a putative mechanism to optimize peptide cleavage by regulating the width and flexibility of the enzyme active site.

摘要

抗菌肽的输出是通过细菌群体感应途径中的多种机制介导的。革兰氏阳性菌使用的一种二元系统是与半胱氨酸蛋白酶偶联的 PCAT1 ABC 转运体。本研究的重点是来自热纤维梭菌 PCAT1 的 N 端 C39 肽酶 (PEP) 结构域,它通过切割保守的 -GG- 基序来处理其天然底物 CtA,从而在分泌前将货物与前导肽分离。在本研究中,我们主要感兴趣的是阐明 CtA 结合的动态和结构决定因素,以及它如何与 PCAT1 PEP 结构域中的切割效率相关。为此,我们使用溶液核磁共振波谱法在去污剂胶束中对 PEP 结构域和 PCAT1 转运体与 CtA 的相互作用进行了表征。结合的 CtA 结构揭示了无规卷曲的 C 端货物肽通过空间位阻的切割位点与停靠在 PEP 结构域疏水腔内的螺旋相连。在游离酶和底物结合复合物中通过酰胺氮 (N) 弛豫测量检测到的广泛内部运动表明结合位点相对灵活。这种灵活性在结构重排中起着关键作用,结构重排是在结合的底物中放松空间位阻抑制所必需的。结合先前报道的 PCAT1 结构,我们提供了关于 PEP 和跨膜结构域之间的 ATP 介导的关联的新见解,这可能是通过调节酶活性位点的宽度和灵活性来优化肽切割的机制。

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