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细菌对低温的适应:环境中变形菌门细菌中一种短J结构域共伴侣蛋白及其蛋白质伙伴的保守性

Bacterial adaptation to cold: Conservation of a short J-domain co-chaperone and its protein partners in environmental proteobacteria.

作者信息

Weber Lana, Gilat Atar, Maillot Nathanael, Byrne Deborah, Arnoux Pascal, Giudici-Orticoni Marie-Thérèse, Méjean Vincent, Ilbert Marianne, Genest Olivier, Rosenzweig Rina, Dementin Sébastien

机构信息

Laboratory of Bioenergetics and Protein Engineering (BIP UMR 7281), Aix-Marseille University, French National Center for Scientific Research (CNRS), Marseille, France.

Department of Chemical and Structural Biology, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Environ Microbiol. 2023 Nov;25(11):2447-2464. doi: 10.1111/1462-2920.16478. Epub 2023 Aug 7.

Abstract

Bacterial genomes are a huge reservoir of genes encoding J-domain protein co-chaperones that recruit the molecular chaperone DnaK to assist protein substrates involved in survival, adaptation, or fitness. The atc operon of the aquatic mesophilic bacterium Shewanella oneidensis encodes the proteins AtcJ, AtcA, AtcB, and AtcC, and all of them, except AtcA, are required for growth at low temperatures. AtcJ is a short J-domain protein that interacts with DnaK, but also with AtcC through its 21 amino acid C-terminal domain. This interaction network is critical for cold growth. Here, we show that AtcJ represents a subfamily of short J-domain proteins that (i) are found in several environmental, mostly aquatic, β- or ɣ-proteobacteria and (ii) contain a conserved PX W motif in their C-terminal extension. Using a combination of NMR, biochemical and genetic approaches, we show that the hydrophobic nature of the tryptophan of the S. oneidensis AtcJ PX W motif determines the strong AtcJ-AtcC interaction essential for cold growth. The AtcJ homologues are encoded by operons containing at least the S. oneidensis atcA, atcB, and atcC homologues. These findings suggest a conserved network of DnaK and Atc proteins necessary for low-temperature growth and, given the variation in the atc operons, possibly for other biological functions.

摘要

细菌基因组是编码J结构域蛋白共伴侣的基因的巨大储存库,这些共伴侣招募分子伴侣DnaK来协助参与生存、适应或健康的蛋白质底物。嗜温水生细菌希瓦氏菌属的atc操纵子编码AtcJ、AtcA、AtcB和AtcC蛋白,除AtcA外,所有这些蛋白都是低温生长所必需的。AtcJ是一种短J结构域蛋白,它与DnaK相互作用,也通过其21个氨基酸的C末端结构域与AtcC相互作用。这种相互作用网络对低温生长至关重要。在这里,我们表明AtcJ代表短J结构域蛋白的一个亚家族,(i)在几种环境中,主要是水生的β-或γ-变形杆菌中发现,(ii)在其C末端延伸中含有保守的PXW基序。使用核磁共振、生化和遗传方法的组合,我们表明希瓦氏菌属AtcJ PXW基序中色氨酸的疏水性决定了对低温生长至关重要的AtcJ-AtcC强相互作用。AtcJ同源物由至少包含希瓦氏菌属atcA、atcB和atcC同源物的操纵子编码。这些发现表明存在一个保守的DnaK和Atc蛋白网络,这对于低温生长是必需的,并且鉴于atc操纵子的变化,可能对于其他生物学功能也是必需的。

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