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ClpXP在[具体内容缺失]中所需的物种受限底物特异性的重要作用。

The Essential Role of ClpXP in Requires Species Constrained Substrate Specificity.

作者信息

Vass Robert H, Nascembeni Jacob, Chien Peter

机构信息

Molecular and Cellular Biology Graduate Program, University of MassachusettsAmherst, MA, USA.

Department of Biochemistry and Molecular Biology, University of MassachusettsAmherst, MA, USA.

出版信息

Front Mol Biosci. 2017 May 9;4:28. doi: 10.3389/fmolb.2017.00028. eCollection 2017.

Abstract

The ClpXP protease is a highly conserved AAA+ degradation machine that is present throughout bacteria and in eukaryotic organelles. ClpXP is essential in some bacteria, such as , but dispensible in others, such as . In , ClpXP normally degrades the SocB toxin and increased levels of SocB result in cell death. ClpX can be deleted in cells lacking this toxin, but these Δ strains are still profoundly deficient in morphology and growth supporting the existence of additional important functions for ClpXP. In this work, we characterize aspects of ClpX crucial for its cellular function. Specifically, we show that although the ClpX functions with the ClpP , this variant cannot complement wildtype activity . Chimeric studies suggest that the N-terminal domain of ClpX plays a crucial, species-specific role in maintaining normal growth. We find that one defect of lacking the proper species of ClpX is the failure to properly proteolytically process the replication clamp loader subunit DnaX. Consistent with this, growth of Δ cells is improved upon expression of a shortened form of DnaX . This work reveals that a broadly conserved protease can acquire highly specific functions in different species and further reinforces the critical nature of the N-domain of ClpX in substrate choice.

摘要

ClpXP蛋白酶是一种高度保守的AAA+降解机器,存在于所有细菌和真核细胞器中。ClpXP在某些细菌中是必需的,例如 ,但在其他细菌中是可有可无的,例如 。在 中,ClpXP通常会降解SocB毒素,而SocB水平的升高会导致细胞死亡。在缺乏这种毒素的细胞中可以删除ClpX,但这些Δ菌株在形态和生长方面仍然存在严重缺陷,这支持了ClpXP存在其他重要功能。在这项工作中,我们描述了ClpX对其细胞功能至关重要的方面。具体而言,我们表明,尽管ClpX与ClpP 一起发挥作用,但这种变体不能补充野生型活性 。嵌合研究表明,ClpX的N端结构域在维持正常生长中起着关键的物种特异性作用。我们发现,缺乏合适种类的ClpX的一个缺陷是无法正确地对复制钳加载亚基DnaX进行蛋白水解加工。与此一致的是,当表达缩短形式的DnaX时,Δ细胞的生长得到改善。这项工作表明,一种广泛保守的蛋白酶可以在不同物种中获得高度特异性的功能,并进一步强化了ClpX的N结构域在底物选择中的关键性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8754/5422525/cbd93b4072d6/fmolb-04-00028-g0001.jpg

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