首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Versatile modes of peptide recognition by the ClpX N domain mediate alternative adaptor-binding specificities in different bacterial species
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Versatile modes of peptide recognition by the ClpX N domain mediate alternative adaptor-binding specificities in different bacterial species

机译:ClpX N结构域的多功能肽识别模式可介导不同细菌物种中的替代衔接子结合特异性

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摘要

ClpXP, an AAA+ protease, plays key roles in protein-quality control and many regulatory processes in bacteria. The N-terminal domain of the ClpX component of ClpXP is involved in recognition of many protein substrates, either directly or by binding the SspB adaptor protein, which delivers specific classes of substrates for degradation. Despite very limited sequence homology between the E. coli and C. crescentus SspB orthologs, each of these adaptors can deliver substrates to the ClpXP enzyme from the other bacterial species. We show that the ClpX N domain recognizes different sequence determinants in the ClpX-binding (XB) peptides of C. crescentus SspBα and E. coli SspB. The C. crescentus XB determinants span 10 residues and involve interactions with multiple side chains, whereas the E. coli XB determinants span half as many residues with only a few important side chain contacts. These results demonstrate that the N domain of ClpX functions as a highly versatile platform for peptide recognition, allowing the emergence during evolution of alternative adaptor-binding specificities. Our results also reveal highly conserved residues in the XB peptides of both E. coli SspB and C. crescentus SspBα that play no detectable role in ClpX-binding or substrate delivery.
机译:ClpXP是一种AAA +蛋白酶,在蛋白质质量控​​制和细菌的许多调节过程中起着关键作用。 ClpXP的ClpX组件的N末端结构域直接或通过结合SspB衔接子蛋白参与许多蛋白质底物的识别,后者可降解特定种类的底物。尽管大肠杆菌和C.crescentus SspB直向同源物之间的序列同源性非常有限,但是这些衔接子中的每一个都可以将底物从其他细菌物种传递到ClpXP酶。我们显示ClpX N域识别C.crescentusSspBα和大肠杆菌SspB的ClpX结合(XB)肽中的不同序列决定簇。 C.crescentus XB决定簇跨越10个残基,并涉及与多个侧链的相互作用,而E. coli XB决定簇跨越一半的残基,只有几个重要的侧链接触。这些结果证明,ClpX的N结构域用作肽识别的高度通用的平台,从而允许在替代的衔接子结合特异性的进化过程中出现。我们的结果还揭示了大肠杆菌SspB和C.crescentusSspBα的XB肽中高度保守的残基,在ClpX结合或底物传递中没有可检测的作用。

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