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由AAA+ ClpX和ClpC1解折叠酶进行的底物传递激活了分枝杆菌的ClpP1P2肽酶。

Substrate delivery by the AAA+ ClpX and ClpC1 unfoldases activates the mycobacterial ClpP1P2 peptidase.

作者信息

Schmitz Karl R, Sauer Robert T

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.

出版信息

Mol Microbiol. 2014 Aug;93(4):617-28. doi: 10.1111/mmi.12694. Epub 2014 Jul 13.

Abstract

Mycobacterial Clp-family proteases function via collaboration of the heteromeric ClpP1P2 peptidase with a AAA+ partner, ClpX or ClpC1. These enzymes are essential for M. tuberculosis viability and are validated antibacterial drug targets, but the requirements for assembly and regulation of functional proteolytic complexes are poorly understood. Here, we report the reconstitution of protein degradation by mycobacterial Clp proteases in vitro and describe novel features of these enzymes that distinguish them from orthologues in other bacteria. Both ClpX and ClpC1 catalyse ATP-dependent unfolding and degradation of native protein substrates in conjunction with ClpP1P2, but neither mediates protein degradation with just ClpP1 or ClpP2. ClpP1P2 alone has negligible peptidase activity, but is strongly stimulated by translocation of protein substrates into ClpP1P2 by either AAA+ partner. Interestingly, our results support a model in which both binding of a AAA+ partner and protein-substrate delivery are required to stabilize active ClpP1P2. Our model has implications for therapeutically targeting ClpP1P2 in dormant M. tuberculosis, and our reconstituted systems should facilitate identification of novel Clp protease inhibitors and activators.

摘要

分枝杆菌的Clp家族蛋白酶通过异源二聚体ClpP1P2肽酶与一种AAA +伴侣蛋白ClpX或ClpC1协同发挥作用。这些酶对于结核分枝杆菌的生存至关重要,并且是经过验证的抗菌药物靶点,但对于功能性蛋白水解复合物的组装和调节要求却知之甚少。在此,我们报道了分枝杆菌Clp蛋白酶在体外对蛋白质降解的重构,并描述了这些酶区别于其他细菌中同源物的新特征。ClpX和ClpC1都能与ClpP1P2协同催化天然蛋白质底物的ATP依赖性解折叠和降解,但单独与ClpP1或ClpP2都不能介导蛋白质降解。单独的ClpP1P2具有可忽略不计的肽酶活性,但通过任一AAA +伴侣蛋白将蛋白质底物转运到ClpP1P2中可强烈刺激其活性。有趣的是,我们的结果支持一种模型,即需要AAA +伴侣蛋白的结合和蛋白质底物的递送两者来稳定活性ClpP1P2。我们的模型对在休眠结核分枝杆菌中靶向治疗ClpP1P2具有启示意义,并且我们重构的系统应有助于鉴定新型Clp蛋白酶抑制剂和激活剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28db/4131744/88b4897cea7b/nihms609200f1.jpg

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