FhaA在分枝杆菌极性延伸和不对称生长中起关键作用。

IF 5.1 1区 生物学 Q1 MICROBIOLOGY mBio Pub Date : 2025-03-12 Epub Date: 2025-01-21 DOI:10.1128/mbio.02526-24
Jessica Rossello, Bernardina Rivera, Maximiliano Anzibar Fialho, Ingrid Augusto, Magdalena Gil, Marina Andrea Forrellad, Fabiana Bigi, Azalia Rodríguez Taño, Estefanía Urdániz, Mariana Piuri, Kildare Miranda, Anne Marie Wehenkel, Pedro M Alzari, Leonel Malacrida, Rosario Durán
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引用次数: 0

摘要

分枝杆菌,包括像结核分枝杆菌这样的病原体,表现出独特的生长模式和细胞包膜结构,挑战了我们对细菌生理学的理解。这项研究揭示了分枝杆菌中的一种保守蛋白FhaA,揭示了它在协调细胞包膜生物发生和不对称生长中的关键作用。活分枝杆菌细胞中FhaA相互作用组的阐明揭示了它参与协调细胞包膜生物发生和细胞伸长/分裂的蛋白质网络。通过控制FhaA水平,我们发现了它对细胞形态、细胞包膜组织和肽聚糖生物合成机制定位的影响。值得注意的是,fhaA缺失破坏了分枝杆菌的不对称生长特征,突出了它在维持这种独特特征方面的重要性。我们的研究结果将FhaA定位为复杂蛋白质网络中的关键调节因子,协调细胞包膜生物合成机制的不对称分布和活性。这项工作不仅促进了我们对分枝杆菌生长机制的理解,而且还确定了FhaA作为未来研究细胞包膜生物发生和细菌生长调节的潜在靶点。这些对分枝杆菌基本生物学的见解可能为对抗分枝杆菌感染的新方法铺平道路,解决结核病等疾病在全球卫生中的持续挑战。重要性:结核分枝杆菌,即导致结核病的细菌,仍然是一个全球卫生问题。与大多数研究充分的模式杆菌不同,分枝杆菌具有独特而复杂的细胞包膜,以及不对称的极性生长模式。然而,在这些细菌中驱动细胞不对称伸长的蛋白质和机制仍然没有得到很好的理解。这项研究揭示了FhaA蛋白在这一过程中的作用。我们的研究结果表明,FhaA定位于鼻中隔,与两极不对称,并倾向于快速生长的两极。此外,我们发现FhaA对群体异质性和不对称极性延伸至关重要,并在细胞壁生物合成机制的精确亚细胞定位中发挥作用。分枝杆菌不对称伸长导致生理上异质的细菌种群,这对致病性和对抗生素的反应是重要的,强调了识别这些仍未充分表征的过程中涉及的新因素的相关性。
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FhaA plays a key role in mycobacterial polar elongation and asymmetric growth.

Mycobacteria, including pathogens like Mycobacterium tuberculosis, exhibit unique growth patterns and cell envelope structures that challenge our understanding of bacterial physiology. This study sheds light on FhaA, a conserved protein in Mycobacteriales, revealing its pivotal role in coordinating cell envelope biogenesis and asymmetric growth. The elucidation of the FhaA interactome in living mycobacterial cells reveals its participation in the protein network orchestrating cell envelope biogenesis and cell elongation/division. By manipulating FhaA levels, we uncovered its influence on cell morphology, cell envelope organization, and the localization of peptidoglycan biosynthesis machinery. Notably, fhaA deletion disrupted the characteristic asymmetric growth of mycobacteria, highlighting its importance in maintaining this distinctive feature. Our findings position FhaA as a key regulator in a complex protein network, orchestrating the asymmetric distribution and activity of cell envelope biosynthetic machinery. This work not only advances our understanding of mycobacterial growth mechanisms but also identifies FhaA as a potential target for future studies on cell envelope biogenesis and bacterial growth regulation. These insights into the fundamental biology of mycobacteria may pave the way for novel approaches to combat mycobacterial infections addressing the ongoing challenge of diseases like tuberculosis in global health.

Importance: Mycobacterium tuberculosis, the bacterium responsible for tuberculosis, remains a global health concern. Unlike most well-studied model bacilli, mycobacteria possess a distinctive and complex cell envelope, as well as an asymmetric polar growth mode. However, the proteins and mechanisms that drive cell asymmetric elongation in these bacteria are still not well understood. This study sheds light on the role of the protein FhaA in this process. Our findings demonstrate that FhaA localizes at the septum and asymmetrically to the poles, with a preference for the fast-growing pole. Furthermore, we showed that FhaA is essential for population heterogeneity and asymmetric polar elongation and plays a role in the precise subcellular localization of the cell wall biosynthesis machinery. Mycobacterial asymmetric elongation results in a physiologically heterogeneous bacterial population which is important for pathogenicity and response to antibiotics, stressing the relevance of identifying new factors involved in these still poorly characterized processes.

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来源期刊
mBio
mBio MICROBIOLOGY-
CiteScore
10.50
自引率
3.10%
发文量
762
审稿时长
1 months
期刊介绍: mBio® is ASM''s first broad-scope, online-only, open access journal. mBio offers streamlined review and publication of the best research in microbiology and allied fields.
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