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迈向一种用于研究II型/IV型分泌系统的系统生物学方法。

Towards a systems biology approach to study type II/IV secretion systems.

作者信息

Hazes Bart, Frost Laura

机构信息

Department of Medical Microbiology and Immunology, University of Alberta, Edmonton, Alberta, Canada.

出版信息

Biochim Biophys Acta. 2008 Sep;1778(9):1839-50. doi: 10.1016/j.bbamem.2008.03.011. Epub 2008 Mar 21.

Abstract

Many gram-negative bacteria produce thin protein filaments, named pili, which extend beyond the confines of the outer membrane. The importance of these pili is illustrated by the fact that highly complex, multi-protein pilus-assembly machines have evolved, not once, but several times. Their many functions include motility, adhesion, secretion, and DNA transfer, all of which can contribute to the virulence of bacterial pathogens or to the spread of virulence factors by horizontal gene transfer. The medical importance has stimulated extensive biochemical and genetic studies but the assembly and function of pili remains an enigma. It is clear that progress in this field requires a more holistic approach where the entire molecular apparatus that forms the pilus is studied as a system. In recent years systems biology approaches have started to complement classical studies of pili and their assembly. Moreover, continued progress in structural biology is building a picture of the components that make up the assembly machine. However, the complexity and multiple-membrane spanning nature of these secretion systems pose formidable technical challenges, and it will require a concerted effort before we can create comprehensive and predictive models of these remarkable molecular machines.

摘要

许多革兰氏阴性菌会产生名为菌毛的细蛋白丝,这些菌毛延伸到外膜范围之外。高度复杂的多蛋白菌毛组装机器不止一次而是多次进化,这一事实说明了这些菌毛的重要性。它们的多种功能包括运动性、黏附、分泌和DNA转移,所有这些都可能有助于细菌病原体的毒力,或通过水平基因转移导致毒力因子的传播。其医学重要性激发了广泛的生化和遗传学研究,但菌毛的组装和功能仍然是个谜。显然,该领域的进展需要一种更全面的方法,即将形成菌毛的整个分子装置作为一个系统来研究。近年来,系统生物学方法已开始补充对菌毛及其组装的经典研究。此外,结构生物学的持续进展正在构建组成组装机器的组件的图景。然而,这些分泌系统的复杂性和多膜跨越性质带来了巨大的技术挑战,在我们能够创建这些非凡分子机器的全面且可预测模型之前,需要共同努力。

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