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微孢子虫中枯草溶菌素样蛋白酶 NbSLP1 的成熟。

Maturation of subtilisin-like protease NbSLP1 from microsporidia .

机构信息

State Key Laboratory of Silkworm Genome Biology, Chongqing Key Laboratory of Microsporidia Infection and Control, Southwest University, Chongqing, China.

College of Life Sciences, Chongqing Normal University, Chongqing, China.

出版信息

Front Cell Infect Microbiol. 2022 Aug 15;12:897509. doi: 10.3389/fcimb.2022.897509. eCollection 2022.

Abstract

Microsporidia are obligate intracellular parasites and possess a unique way of invading hosts, namely germination. Microsporidia are able to infect almost all animal cells by germination. During the process, the polar tube extrudes from the spores within, thus injecting infectious sporoplasm into the host cells. Previous studies indicated that subtilisin-like protease 1 (NbSLP1) of microsporidia were located at the polar cap of germinated spores where the polar tube extrusion. We hypothesized that NbSLP1 is an essential player in the germination process. Normally, SLP need to be activated by autoproteolysis under conditions. In this study, we found that the signal peptide of NbSLP1 affected the activation of protease, two self-cleavage sites were involved in NbSLP1 maturation between AlaAsp and AlaAsp respectively. Mutants at catalytic triad of NbSLP1 confirmed the decreasing of autoproteolysis. This study demonstrates that intramolecular proteolysis is required for NbSLP1 maturation. The protease undergoes a series of sequential N-terminal cleavage events to generate the mature enzyme. Like other subtilisin-like enzymes, catalytic triad of NbSLP1 are significant for the self-activation of NbSLP1. In conclusion, clarifying the maturation of NbSLP1 will be valuable for understanding the polar tube ejection mechanism of germination.

摘要

微孢子虫是专性细胞内寄生虫,具有独特的入侵宿主的方式,即发芽。微孢子虫能够通过发芽感染几乎所有的动物细胞。在这个过程中,极管用孢子内的极管挤出,从而将感染性孢子质注入宿主细胞。先前的研究表明,微孢子虫的枯草杆菌蛋白酶样蛋白酶 1(NbSLP1)位于发芽孢子的极帽处,极管用极管挤出。我们假设 NbSLP1 是发芽过程中的一个重要参与者。通常,SLP 需要在条件下通过自水解激活。在这项研究中,我们发现 NbSLP1 的信号肽影响蛋白酶的激活,两个自切割位点分别位于 AlaAsp 和 AlaAsp 之间,参与 NbSLP1 的成熟。NbSLP1 催化三联体的突变体证实了自水解的减少。这项研究表明,分子内蛋白水解是 NbSLP1 成熟所必需的。蛋白酶通过一系列连续的 N 端切割事件生成成熟酶。像其他枯草杆菌蛋白酶样酶一样,NbSLP1 的催化三联体对于 NbSLP1 的自我激活至关重要。总之,阐明 NbSLP1 的成熟对于理解发芽过程中的极管用喷射机制将是有价值的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/983a/9421246/322cc0181c5b/fcimb-12-897509-g001.jpg

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