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肽聚糖识别蛋白:先天免疫的开关

Peptidoglycan recognition proteins: on and off switches for innate immunity.

作者信息

Steiner Håkan

机构信息

Department of Microbiology, Stockholm University, Stockholm, Sweden.

出版信息

Immunol Rev. 2004 Apr;198:83-96. doi: 10.1111/j.0105-2896.2004.0120.x.

Abstract

Insects rely on innate immune mechanisms to defend themselves against microbes. The inducible anti-microbial peptides constitute an important arm of this defense. In Drosophila, the Toll and the Imd pathways are the major routes to induce the peptides, and it has become clear that to a certain extent, these pathways can discriminate between different microbes and mount an appropriate response to eliminate the intruder. This review discusses the proteins responsible for this discriminatory recognition, the peptidoglycan recognition proteins (PGRPs). The serum protein PGRP-SA triggers a humoral cascade of proteases upon infection by certain gram-positive bacteria to activate the Toll pathway. The membrane-bound receptor PGRP-LC activates the Imd pathway in response to certain gram-negative bacteria or their peptidoglycans. Other PGRPs have enzymatic activity, cleaving lactylamide bonds in peptidoglycan to eliminate its immunogenicity, thus turning off the immune response. The PGRP family is conserved from insects to man. Short mammalian PGRP variants are synthesized in neutrophils and stored in granules. These PGRPs seem to influence the survival of phagocytosed non-pathogenic bacteria. Long PGRP variants are expressed in the liver and secreted into the bloodstream where their peptidoglycan-degrading activity might serve scavenger functions.

摘要

昆虫依靠先天免疫机制来抵御微生物。可诱导的抗菌肽是这种防御的重要组成部分。在果蝇中,Toll和Imd途径是诱导这些肽的主要途径,并且已经清楚的是,在一定程度上,这些途径可以区分不同的微生物并做出适当反应以消除入侵者。本综述讨论了负责这种区分性识别的蛋白质,即肽聚糖识别蛋白(PGRP)。血清蛋白PGRP-SA在受到某些革兰氏阳性菌感染时会引发蛋白酶的体液级联反应,从而激活Toll途径。膜结合受体PGRP-LC响应某些革兰氏阴性菌或其肽聚糖而激活Imd途径。其他PGRP具有酶活性,可切割肽聚糖中的乳酰胺键以消除其免疫原性,从而关闭免疫反应。PGRP家族从昆虫到人类都是保守的。短的哺乳动物PGRP变体在中性粒细胞中合成并储存在颗粒中。这些PGRP似乎会影响吞噬的非致病性细菌的存活。长的PGRP变体在肝脏中表达并分泌到血液中,其肽聚糖降解活性可能具有清除功能。

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