Wag31, a membrane tether, is crucial for lipid homeostasis in mycobacteria.

IF 6.4 1区 生物学 Q1 BIOLOGY
eLife Pub Date : 2025-05-22 DOI:10.7554/eLife.104268
Yogita Kapoor, Himani Khurana, Debatri Dutta, Arnab Chakraborty, Anshu Priya, Archana Singh, Siddhesh S Kamat, Neeraj Dhar, Thomas John Pucadyil, Vinay Kumar Nandicoori
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引用次数: 0

Abstract

The mycobacterial cytoskeletal protein Wag31 is necessary for maintaining cell shape and directing cellular growth and elongation. Wag31 has a characteristic N-terminal DivIVA-domain and a C-terminal coiled-coil domain. While the role of Wag31 in polar elongation is known, there is limited mechanistic insight on how it orchestrates growth and elongation. In this report, we delineate roles of the N- and C-terminal domains of Wag31 using genetics, state-of-the-art multi-omics, biochemical, and imaging approaches. We show that Wag31 predominantly interacts with several membrane-associated proteins involved in lipid metabolism, cell wall synthesis, and division. Native levels of Wag31 are critical for the maintenance and distribution of membrane lipids. Both depletion and overexpression of Wag31 perturb lipid homeostasis, leading to the formation of intracellular lipid inclusions (ILIs). Protein-lipid crosslinking and imaging studies reveal that purified Wag31 can bind and effectively tether cardiolipin (CL)-containing liposomes. We further show that the tethering activity lies in the DivIVA-domain containing N-terminal of Wag31 while the C-terminal mediates protein-protein interactions of Wag31. Despite retaining its ability to interact with partner proteins, the DivIVA-domain-deleted Wag31 mutant shows defects in liposome tethering in vitro and non-polar localization of CL in vivo, which eventually causes lethality. Our study suggests that membrane tethering 'licenses' Wag31 to form scaffolds that help orchestrate protein-lipid and protein-protein interactions necessary for mycobacterial growth and survival.

Wag31是一种膜系链,对分枝杆菌的脂质稳态至关重要。
分枝杆菌细胞骨架蛋白Wag31是维持细胞形状和指导细胞生长和伸长所必需的。Wag31具有特征性的n端divva结构域和c端coil -coil结构域。虽然Wag31在极性延伸中的作用是已知的,但对其如何协调生长和延伸的机制了解有限。在本报告中,我们使用遗传学、最先进的多组学、生化和成像方法描述了Wag31的N-和c -末端结构域的作用。我们发现Wag31主要与参与脂质代谢、细胞壁合成和分裂的几种膜相关蛋白相互作用。天然水平的Wag31对膜脂的维持和分布至关重要。Wag31的缺失和过表达都会扰乱脂质稳态,导致细胞内脂质包裹体(ILIs)的形成。蛋白-脂质交联和影像学研究表明,纯化的Wag31可以结合并有效地拴住含心磷脂(CL)的脂质体。我们进一步表明,系带活性位于含有Wag31 n端的divva结构域,而c端介导Wag31的蛋白-蛋白相互作用。尽管保留了与伴侣蛋白相互作用的能力,但diviva结构域缺失的Wag31突变体在体外脂质体系结和体内CL的非极性定位方面存在缺陷,最终导致死亡。我们的研究表明,膜系留“许可”Wag31形成支架,帮助协调分枝杆菌生长和存活所必需的蛋白-脂质和蛋白-蛋白相互作用。
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
eLife
eLife BIOLOGY-
CiteScore
12.90
自引率
3.90%
发文量
3122
审稿时长
17 weeks
期刊介绍: eLife is a distinguished, not-for-profit, peer-reviewed open access scientific journal that specializes in the fields of biomedical and life sciences. eLife is known for its selective publication process, which includes a variety of article types such as: Research Articles: Detailed reports of original research findings. Short Reports: Concise presentations of significant findings that do not warrant a full-length research article. Tools and Resources: Descriptions of new tools, technologies, or resources that facilitate scientific research. Research Advances: Brief reports on significant scientific advancements that have immediate implications for the field. Scientific Correspondence: Short communications that comment on or provide additional information related to published articles. Review Articles: Comprehensive overviews of a specific topic or field within the life sciences.
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