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伴侣蛋白辅助的菌毛自组装,不依赖细胞能量。

Chaperone-assisted self-assembly of pili independent of cellular energy.

作者信息

Jacob-Dubuisson F, Striker R, Hultgren S J

机构信息

Department of Molecular Microbiology, Washington University Medical School, St. Louis, Missouri 63110-1093.

出版信息

J Biol Chem. 1994 Apr 29;269(17):12447-55.

PMID:7909802
Abstract

Assembly of P pili on the surface of pyelonephritic Escherichia coli proceeds from periplasmic chaperone-subunit complexes. The outer membrane protein PapC, which has been termed a molecular usher, is thought to be the site of assembly, where the chaperone dissociates from the subunits as they are incorporated into the pilus across the outer membrane. The kinetics of assembly and the energy requirements of the "secretion" events at the outer membrane were investigated using a pulse-chase analysis in which preformed labeled periplasmic chaperone-subunit complexes were assembled into pili in synchrony by the induction of PapC. Provided that a sufficient amount of PapC was present and functional in the outer membrane, the incorporation of the major PapA subunit into pili was shown to be completed in less than 5 min. Our results also indicated that the targeting of PapC to the outer membrane may be a rate-limiting factor for pilus assembly. Following the arrival of PapC, the formation of pili seemed to proceed spontaneously and was not sensitive to a pH shift or an inhibitor of the electrochemical gradient across the cytoplasmic membrane. We suggest that the secretion of pili across the outer membrane may be independent of cellular energy and thermodynamically driven.

摘要

肾盂肾炎大肠杆菌表面菌毛的组装是从周质伴侣-亚基复合物开始的。外膜蛋白PapC被称为分子引导者,被认为是组装位点,当亚基穿过外膜并入菌毛时,伴侣蛋白会与亚基解离。通过脉冲追踪分析研究了外膜处组装的动力学和“分泌”事件的能量需求,在该分析中,预先形成的标记周质伴侣-亚基复合物通过诱导PapC同步组装成菌毛。只要外膜中有足够量且有功能的PapC,主要的PapA亚基并入菌毛的过程在不到5分钟内即可完成。我们的结果还表明,PapC在外膜的定位可能是菌毛组装的限速因素。PapC到达后,菌毛的形成似乎是自发进行的,并且对pH值变化或跨细胞质膜电化学梯度的抑制剂不敏感。我们认为菌毛穿过外膜的分泌可能与细胞能量无关,而是由热力学驱动的。

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