A群链球菌白细胞介素-8蛋白酶SpyCEP通过逃避自噬促进细菌胞内存活。

IF 2 Q3 INFECTIOUS DISEASES
René Bergmann, Giuseppe Gulotta, Federica Andreoni, Tomoko Sumitomo, Shigetada Kawabata, Annelies S Zinkernagel, Gursharan S Chhatwal, Victor Nizet, Manfred Rohde, Satoshi Uchiyama
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引用次数: 1

摘要

自噬在保护宿主免受入侵细菌(包括A群链球菌(GAS))的侵害方面具有先天免疫功能。自噬受多种宿主蛋白调控,包括内源性负调节因子钙蛋白酶(一种胞质蛋白酶)。全球传播的血清型M1T1 GAS菌株与高侵袭性疾病相关,表达多种毒力因子并抵抗自噬清除。在体外感染具有代表性的野生型GAS M1T1菌株5448 (M1.5448)的人上皮细胞系后,我们观察到与特定GAS毒力因子IL-8蛋白酶SpyCEP相关的calpain激活增加。激活钙蛋白酶抑制自噬,减少自噬小体中胞质GAS的捕获。相比之下,血清型M6 GAS菌株JRS4 (M6.JRS4)对宿主自噬介导的杀伤高度敏感,表达低水平的SpyCEP,不激活calpain。SpyCEP在M6中的过表达。JRS4刺激calpain活化,抑制自噬,显著降低自噬体中的细菌捕获。这些配对的功能丧失和功能获得的研究揭示了细菌蛋白酶SpyCEP在使GAS M1逃避自噬和宿主先天免疫清除中的新作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The group A Streptococcus interleukin-8 protease SpyCEP promotes bacterial intracellular survival by evasion of autophagy.

Autophagy serves an innate immune function in defending the host against invading bacteria, including group A Streptococcus (GAS). Autophagy is regulated by numerous host proteins, including the endogenous negative regulator calpain, a cytosolic protease. Globally disseminated serotype M1T1 GAS strains associated with high invasive disease potential express numerous virulence factors and resist autophagic clearance. Upon in vitro infection of human epithelial cell lines with representative wild-type GAS M1T1 strain 5448 (M1.5448), we observed increased calpain activation linked to a specific GAS virulence factor, the IL-8 protease SpyCEP. Calpain activation inhibited autophagy and decreased capture of cytosolic GAS in autophagosomes. In contrast, the serotype M6 GAS strain JRS4 (M6.JRS4), which is highly susceptible to host autophagy-mediated killing, expresses low levels of SpyCEP and does not activate calpain. Overexpression of SpyCEP in M6.JRS4 stimulated calpain activation, inhibited autophagy and significantly decreased bacterial capture in autophagosomes. These paired loss- and gain-of-function studies reveal a novel role for the bacterial protease SpyCEP in enabling GAS M1 evasion of autophagy and host innate immune clearance.

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