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动态酶对接核糖体协调 N 端加工与多肽折叠。

Dynamic enzyme docking to the ribosome coordinates N-terminal processing with polypeptide folding.

机构信息

Zentrum für Molekulare Biologie der Universität Heidelberg, Germany.

出版信息

Nat Struct Mol Biol. 2013 Jul;20(7):843-50. doi: 10.1038/nsmb.2615. Epub 2013 Jun 16.

Abstract

Newly synthesized polypeptides undergo various cotranslational maturation steps, including N-terminal enzymatic processing, chaperone-assisted folding and membrane targeting, but the spatial and temporal coordination of these steps is unclear. We show that Escherichia coli methionine aminopeptidase (MAP) associates with ribosomes through a charged loop that is crucial for nascent-chain processing and cell viability. MAP competes with peptide deformylase (PDF), the first enzyme to act on nascent chains, for binding sites at the ribosomal tunnel exit. PDF has extremely fast association and dissociation kinetics, which allows it to frequently sample ribosomes and ensure the processing of nascent chains after their emergence. Premature recruitment of the chaperone trigger factor, or polypeptide folding, negatively affect processing efficiency. Thus, the fast ribosome association kinetics of PDF and MAP are crucial for the temporal separation of nascent-chain processing from later maturation events, including chaperone recruitment and folding.

摘要

新合成的多肽经历各种共翻译成熟步骤,包括 N 端酶加工、伴侣蛋白辅助折叠和膜靶向,但这些步骤的时空协调尚不清楚。我们表明,大肠杆菌蛋氨酸氨肽酶(MAP)通过一个带电荷的环与核糖体结合,该环对于新生链的加工和细胞活力至关重要。MAP 与肽脱甲酰酶(PDF)竞争,后者是作用于新生链的第一种酶,竞争核糖体隧道出口的结合位点。PDF 具有极快的结合和解离动力学,使其能够频繁地对核糖体进行采样,并确保新生链在出现后进行加工。伴侣蛋白触发因子的过早募集或多肽折叠会对加工效率产生负面影响。因此,PDF 和 MAP 的快速核糖体结合动力学对于将新生链的加工与后期成熟事件(包括伴侣蛋白募集和折叠)的时间分离至关重要。

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