首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Assembly of complex organelles: pilus biogenesis in gram-negative bacteria as a model system.
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Assembly of complex organelles: pilus biogenesis in gram-negative bacteria as a model system.

机译:复杂细胞器的组装:革兰氏阴性细菌的菌毛生物发生为模型系统。

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摘要

Pathogenic bacteria assemble a variety of adhesive structures on their surface for attachment to host cells. Some of these structures are quite complex. For example, the hair-like organelles known as pili or fimbriae are generally composed of several components and often exhibit composite morphologies. In gram-negative bacteria assembly of pili requires that the subunits cross the cytoplasmic membrane, fold correctly in the periplasm, target to the outer membrane, assemble into an ordered structure, and cross the outer membrane to the cell surface. Thus, pilus biogenesis provides a model for a number of basic biological problems including protein folding, trafficking, secretion, and the ordered assembly of proteins into complex structures. P pilus biogenesis represents one of the best-understood pilus systems. P pili are produced by 80-90% of all pyelonephritic Escherichia coli and are a major virulence determinant for urinary tract infections. Two specialized assembly factors known as the periplasmic chaperone and outer membrane usher are required for P pilus assembly. A chaperone/usher pathway is now known to be required for the biogenesis of more than 30 different adhesive structures in diverse gram-negative pathogenic bacteria. Elucidation of the chaperone/usher pathway was brought about through a powerful combination of molecular, biochemical, and biophysical techniques. This review discusses these approaches as they relate to pilus assembly, with an emphasis on newer techniques. Copyright 2000 Academic Press.
机译:病原菌在其表面上会组装各种粘附结构,以附着在宿主细胞上。其中一些结构非常复杂。例如,被称为菌毛或菌毛的毛状细胞器通常由几种成分组成,并且通常表现出复合形态。在革兰氏阴性细菌中,菌毛的组装需要亚基穿过细胞质膜,在周质中正确折叠,靶向外膜,组装成有序结构,然后将外膜穿过细胞表面。因此,菌毛生物发生为许多基本生物学问题提供了模型,包括蛋白质折叠,运输,分泌以及蛋白质有序组装成复杂结构。菌毛的生物发生代表了最容易理解的菌毛系统之一。 P菌毛由所有肾盂肾上腺大肠杆菌产生,占80-90%,是尿路感染的主要毒力决定因素。 P菌毛的组装需要两个专门的组装因子,称为周质伴侣和外膜引入剂。现在已知,在多种革兰氏阴性致病细菌中,生物合成需要30多种不同的粘附结构才能使用伴侣/辅助途径。分子/生化和生物物理技术的强大结合使伴侣/辅助途径得以阐明。这篇综述讨论了与毛毛虫组装相关的这些方法,并着重介绍了新技术。版权所有2000学术出版社。

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