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自诱导肽成熟的决定因素。

Determinants of maturation of the autoinducing peptide.

机构信息

Department of Microbiology and Immunology, University of Illinois, Chicago, Illinois, USA.

Department of Microbiology and Immunology, Loyola University Chicago Stritch School of Medicine, Maywood, Illinois, USA.

出版信息

J Bacteriol. 2024 Sep 19;206(9):e0019524. doi: 10.1128/jb.00195-24. Epub 2024 Aug 23.

DOI:10.1128/jb.00195-24
PMID:39177535
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11412329/
Abstract

The ccessory ene egulatory (Agr) system is required for virulence factor gene expression and pathogenesis of . The Agr system is activated in response to the accumulation of a cyclic autoinducing peptide (AIP), which is matured and secreted by the bacterium. The precursor of AIP, AgrD, consists of the AIP flanked by an N-terminal [Formula: see text]-helical Leader and a charged C-terminal tail. AgrD is matured to AIP by the action of two proteases, AgrB and MroQ. AgrB cleaves the C-terminal tail and promotes the formation of a thiolactone ring, whereas MroQ cleaves the N-terminal Leader in a manner that depends on the four-amino acid linker immediately following a conserved IG helix breaker motif. However, the attributes of AgrD that dictate the sequence of events in peptide maturation are not fully defined. Here, we used engineered AgrD peptide intermediates to ascertain the sufficiency of MroQ for N-terminal peptide cleavage, peptide export, and generation of mature AIP. We found that MroQ promotes the removal of the N-terminal Leader peptide from both linear and cyclic peptide intermediates, while peptide cyclization remained essential for signaling. The expression of the Leader peptide in isolation was sufficient for MroQ-dependent cleavage proximal to the four-amino-acid linker. In addition, active site mutations within AgrB destabilized full-length AgrD and thiolactone-containing intermediates and prevented the release of the Leader peptide. Altogether, our data support a tandem peptide maturation event involving both MroQ and AgrB that appears to couple protease activity and export of bioactive AIP.IMPORTANCEThe ccessory ene egulatory (Agr) system is important for pathogenesis. Activation of the Agr system requires recognition of a cyclic peptide pheromone, which must be fully matured to exert its biological activity. The complete events in cyclic peptide maturation and export from the bacterial cell remain to be fully defined. We and others recently discovered that the membrane peptidase MroQ is required for pheromone maturation. This study builds off the identification of MroQ and considers the attributes of the pheromone pro-peptide that are required for MroQ-mediated processing as well as uncovers features important for peptide stability and export. Overall, the findings in this study have implications for understanding bacterial pheromone maturation and virulence.

摘要

辅助调控 (Agr) 系统对于毒力因子基因表达和 的发病机制是必需的。Agr 系统在响应环状自诱导肽 (AIP) 的积累时被激活,AIP 由细菌成熟并分泌。AIP 的前体 AgrD 由 AIP 两侧的 N 端 [公式:见文本]-螺旋 Leader 和带电荷的 C 端尾部组成。AgrB 和 MroQ 两种蛋白酶将 AgrD 成熟为 AIP。AgrB 切割 C 端尾部并促进硫内酯环的形成,而 MroQ 以依赖于紧靠保守 IG 螺旋断裂基序的四个氨基酸接头的方式切割 N 端 Leader。然而,决定肽成熟过程中事件顺序的 AgrD 属性尚未完全定义。在这里,我们使用工程 AgrD 肽中间产物来确定 MroQ 对 N 端肽切割、肽输出和成熟 AIP 生成的充分性。我们发现 MroQ 促进了线性和环状肽中间产物中 N 端 Leader 肽的去除,而肽环化对于信号传导仍然是必不可少的。单独表达 Leader 肽足以进行 MroQ 依赖的切割,靠近四个氨基酸接头。此外,AgrB 中的活性位点突变使全长 AgrD 和含硫内酯的中间产物不稳定,并阻止 Leader 肽的释放。总之,我们的数据支持涉及 MroQ 和 AgrB 的串联肽成熟事件,该事件似乎将蛋白酶活性和生物活性 AIP 的输出偶联起来。

重要性

辅助调控 (Agr) 系统对于 的发病机制很重要。Agr 系统的激活需要识别环状肽信息素,该信息素必须完全成熟才能发挥其生物学活性。环状肽成熟和从细菌细胞中输出的完整事件仍有待完全定义。我们和其他人最近发现,膜肽酶 MroQ 是成熟信息素所必需的。这项研究建立在 MroQ 的鉴定基础上,并考虑了信息素前肽所需的属性,这些属性是 MroQ 介导的加工所必需的,同时还揭示了对肽稳定性和输出很重要的特征。总的来说,这项研究的结果对于理解细菌信息素成熟和毒力具有重要意义。