The periplasmic coiled coil formed by the assembly platform proteins PulL and PulM is critical for function of the Klebsiella type II secretion system

IF 2.5 4区 生物学 Q3 MICROBIOLOGY Research in microbiology Pub Date : 2023-09-01 DOI:10.1016/j.resmic.2023.104075
Yuanyuan Li, Javier Santos-Moreno , Olivera Francetic
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Abstract

Bacteria use type II secretion systems (T2SS) to secrete to their surface folded proteins that confer diverse functions, from nutrient acquisition to virulence. In the Klebsiella species, T2SS-mediated secretion of pullulanase (PulA) requires assembly of a dynamic filament called the endopilus. The inner membrane assembly platform (AP) subcomplex is essential for endopilus assembly and PulA secretion. AP components PulL and PulM interact with each other through their C-terminal globular domains and transmembrane segments. Here, we investigated the roles of their periplasmic helices, predicted to form a coiled coil, in assembly and function of the PulL–PulM complex. PulL and PulM variants lacking these periplasmic helices were defective for interaction in the bacterial two-hybrid (BACTH) assay. Their functions in PulA secretion and assembly of PulG subunits into endopilus filaments were strongly reduced. Interestingly, deleting the cytoplasmic peptide of PulM nearly abolished the function of variant PulMΔN and its interaction with PulG, but not with PulL, in the BACTH assay. Nevertheless, PulL was specifically proteolyzed in the presence of the PulMΔN variant, suggesting that PulM N-terminal peptide stabilizes PulL in the cytoplasm. We discuss the implications of these results for the T2S endopilus and type IV pilus assembly mechanisms.

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由组装平台蛋白PulL和PulM形成的周质卷曲螺旋对克雷伯菌II型分泌系统的功能至关重要。
细菌使用II型分泌系统(T2SS)向其表面折叠的蛋白质分泌,这些蛋白质赋予从营养获取到毒力的多种功能。在克雷伯菌属物种中,T2SS介导的普鲁兰酶(PulA)的分泌需要一种称为内切酶的动态丝的组装。内膜组装平台(AP)亚复合体对内膜组装和PulA分泌至关重要。AP组分PulL和PulM通过其C末端球状结构域和跨膜片段相互作用。在这里,我们研究了它们的周质螺旋在PulL-PulM复合物的组装和功能中的作用,预计会形成卷曲的螺旋。缺乏这些周质螺旋的PulL和PulM变体在细菌双杂交(BACTH)测定中的相互作用是有缺陷的。它们在PulA分泌和将PulG亚基组装成内丝中的功能被强烈降低。有趣的是,在BACTH测定中,删除PulM的细胞质肽几乎消除了变体PulMΔN的功能及其与PulG的相互作用,而不是与PulL的相互作用。然而,在存在PulMΔN变体的情况下,PulL被特异性蛋白水解,这表明PulM N末端肽稳定了细胞质中的PulL。我们讨论了这些结果对T2S内泌体和IV型菌毛组装机制的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Research in microbiology
Research in microbiology 生物-微生物学
CiteScore
4.10
自引率
3.80%
发文量
54
审稿时长
16 days
期刊介绍: Research in Microbiology is the direct descendant of the original Pasteur periodical entitled Annales de l''Institut Pasteur, created in 1887 by Emile Duclaux under the patronage of Louis Pasteur. The Editorial Committee included Chamberland, Grancher, Nocard, Roux and Straus, and the first issue began with Louis Pasteur''s "Lettre sur la Rage" which clearly defines the spirit of the journal:"You have informed me, my dear Duclaux, that you intend to start a monthly collection of articles entitled "Annales de l''Institut Pasteur". You will be rendering a service that will be appreciated by the ever increasing number of young scientists who are attracted to microbiological studies. In your Annales, our laboratory research will of course occupy a central position, but the work from outside groups that you intend to publish will be a source of competitive stimulation for all of us."That first volume included 53 articles as well as critical reviews and book reviews. From that time on, the Annales appeared regularly every month, without interruption, even during the two world wars. Although the journal has undergone many changes over the past 100 years (in the title, the format, the language) reflecting the evolution in scientific publishing, it has consistently maintained the Pasteur tradition by publishing original reports on all aspects of microbiology.
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