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Clustering of peptidoglycan recognition protein-SA is required for sensing lysine-type peptidoglycan in insects

机译:肽聚糖识别蛋白-SA的簇集是检测昆虫中赖氨酸型肽聚糖所必需的

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摘要

Recognition of lysine-type peptidoglycan by peptidoglycan recognition protein (PGRP)-SA provokes the activation of the Toll and prophenoloxidase pathways. Here we reveal that a soluble fragment of lysine-type peptidoglycan, a long glycan chain with short stem peptides, is a potent activator of the Drosophila Toll pathway and the prophenoloxidase activation cascade in the beetle Tenebrio molitor. Using this peptidoglycan fragment, we present biochemical evidence that clustering of PGRP-SA molecules on the peptidoglycan is required for the activation of the prophenoloxidase cascade. We subsequently highlight that the lysozyme-mediated partial digestion of highly cross-linked lysine-type peptidoglycan dramatically increases the binding of PGRP-SA, presumably by inducing clustering of PGRP-SA, which then recruits the Gram-negative bacteria-binding protein 1 homologue and a modular serine protease containing low-density lipoprotein and complement control protein domains. The crucial role of lysozyme in the prophenoloxidase activation cascade is further confirmed in vivo by using a lysozyme inhibitor. Taken together, we propose a model whereby lysozyme presents a processed form of lysine-type peptidoglycan for clustering of PGRP-SA that recruits Gram-negative bacteria-binding protein 1 and the modular serine protease, which leads to the activation of both the Toll and prophenoloxidase pathways.
机译:肽聚糖识别蛋白(PGRP)-SA识别赖氨酸型肽聚糖可激活Toll和酚氧化酶原途径。在这里,我们揭示了赖氨酸型肽聚糖的可溶性片段,长链聚糖短茎肽,是果蝇Toll途径的有效活化剂和甲虫黄粉虫中的酚氧化酶活化级联反应。使用该肽聚糖片段,我们提供了生化证据,即肽酚聚糖上PGRP-SA分子的聚簇是激活酚氧化酶原级联反应所必需的。我们随后强调指出,高度交联的赖氨酸型肽聚糖的溶菌酶介导的部分消化可显着增加PGRP-SA的结合,大概是通过诱导PGRP-SA的聚集,然后募集革兰氏阴性细菌结合蛋白1同源物以及含有低密度脂蛋白和补体控制蛋白结构域的模块化丝氨酸蛋白酶。通过使用溶菌酶抑制剂在体内进一步证实了溶菌酶在酚氧化酶原激活级联反应中的关键作用。综上所述,我们提出了一个模型,其中溶菌酶呈现一种加工形式的赖氨酸型肽聚糖用于PGRP-SA的聚类,该蛋白募集革兰氏阴性细菌结合蛋白1和模块化丝氨酸蛋白酶,从而导致Toll和前酚氧化酶途径。

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