串联重复的信息素肽的胞外蛋白水解为细菌的法定人数感应提供了更多的复杂性。

IF 9.8 1区 生物学 Q1 Agricultural and Biological Sciences PLoS Biology Pub Date : 2024-08-13 eCollection Date: 2024-08-01 DOI:10.1371/journal.pbio.3002744
Alonso Felipe-Ruiz, Sara Zamora-Caballero, Shira Omer Bendori, José R Penadés, Avigdor Eldar, Alberto Marina
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引用次数: 0

摘要

细菌之间的相互作用对于适应不断变化的环境至关重要,而法定量感应(QS)系统在通过小信号分子协调行为方面发挥着核心作用。RRNPPA家族是芽孢杆菌中最普遍的QS系统,通过分泌的寡肽介导交流,寡肽被胞外蛋白酶加工成活性信息素。值得注意的是,有几种情况下,前肽的序列中存在多种假定的信息素,这被认为是肽-受体特异性多样化的一种机制,有可能促进新功能的实现。然而,无论是含有多种信息素的肽的成熟过程,还是其功能意义,都没有得到评估。在这里,我们利用感染枯草芽孢杆菌的噬菌体的两个 Rap 系统,研究了在它们的丙肽中表现出不同类型的信息素复制的成熟过程以及所产生的信息素的分子和功能活性。我们的研究结果表明,不同的成熟过程会产生多种成熟的信息素,它们与受体的结合亲和力各不相同,但产生的结构和生物反应却完全相同。这些发现增加了 QS 交流和调控的复杂性,为微生物的社会行为提供了新的可能性,突出了细菌相互作用和适应的复杂性。
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Extracellular proteolysis of tandemly duplicated pheromone propeptides affords additional complexity to bacterial quorum sensing.

Bacterial interactions are vital for adapting to changing environments, with quorum sensing (QS) systems playing a central role in coordinating behaviors through small signaling molecules. The RRNPPA family is the prevalent QS systems in Bacillota and mediating communication through secreted oligopeptides, which are processed into active pheromones by extracellular proteases. Notably, in several cases the propeptides show the presence of multiple putative pheromones within their sequences, which has been proposed as a mechanism to diversify peptide-receptor specificity and potentially facilitate new functions. However, neither the processes governing the maturation of propeptides containing multiple pheromones, nor their functional significance has been evaluated. Here, using 2 Rap systems from bacteriophages infecting Bacillus subtilis that exhibit different types of pheromone duplication in their propeptides, we investigate the maturation process and the molecular and functional activities of the produced pheromones. Our results reveal that distinct maturation processes generate multiple mature pheromones, which bind to receptors with varying affinities but produce identical structural and biological responses. These findings add additional layers in the complexity of QS communication and regulation, opening new possibilities for microbial social behaviors, highlighting the intricate nature of bacterial interactions and adaptation.

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来源期刊
PLoS Biology
PLoS Biology BIOCHEMISTRY & MOLECULAR BIOLOGY-BIOLOGY
CiteScore
15.40
自引率
2.00%
发文量
359
审稿时长
3-8 weeks
期刊介绍: PLOS Biology is the flagship journal of the Public Library of Science (PLOS) and focuses on publishing groundbreaking and relevant research in all areas of biological science. The journal features works at various scales, ranging from molecules to ecosystems, and also encourages interdisciplinary studies. PLOS Biology publishes articles that demonstrate exceptional significance, originality, and relevance, with a high standard of scientific rigor in methodology, reporting, and conclusions. The journal aims to advance science and serve the research community by transforming research communication to align with the research process. It offers evolving article types and policies that empower authors to share the complete story behind their scientific findings with a diverse global audience of researchers, educators, policymakers, patient advocacy groups, and the general public. PLOS Biology, along with other PLOS journals, is widely indexed by major services such as Crossref, Dimensions, DOAJ, Google Scholar, PubMed, PubMed Central, Scopus, and Web of Science. Additionally, PLOS Biology is indexed by various other services including AGRICOLA, Biological Abstracts, BIOSYS Previews, CABI CAB Abstracts, CABI Global Health, CAPES, CAS, CNKI, Embase, Journal Guide, MEDLINE, and Zoological Record, ensuring that the research content is easily accessible and discoverable by a wide range of audiences.
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