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结核分枝杆菌中锚定尾部蛋白 3 同源物的导向进入特性研究。

Characterization of Guided Entry of Tail-Anchored Proteins 3 Homologues in Mycobacterium tuberculosis.

机构信息

Structural Biology Program, Van Andel Research Institute, Grand Rapids, Michigan, USA.

Department of Microbiology, New York University School of Medicine, New York, New York, USA.

出版信息

J Bacteriol. 2019 Jun 21;201(14). doi: 10.1128/JB.00159-19. Print 2019 Jul 15.

Abstract

We characterized an operon in , Rv3679-Rv3680, in which each open reading frame is annotated to encode "anion transporter ATPase" homologues. Using structure prediction modeling, we found that Rv3679 and Rv3680 more closely resemble the uided ntry of ail-anchored proteins (Get3) chaperone in eukaryotes. Get3 delivers proteins into the membranes of the endoplasmic reticulum and is essential for the normal growth and physiology of some eukaryotes. We sought to characterize the structures of Rv3679 and Rv3680 and test if they have a role in pathogenesis. We solved crystal structures of the nucleotide-bound Rv3679-Rv3680 complex at 2.5 to 3.2 Å and show that while it has some similarities to Get3 and ArsA, there are notable differences, including that these proteins are unlikely to be involved in anion transport. Deletion of both genes did not reveal any conspicuous growth defects or in mice. Collectively, we identified a new class of proteins in bacteria with similarity to Get3 complexes, the functions of which remain to be determined. Numerous bacterial species encode proteins predicted to have similarity with Get3- and ArsA-type anion transporters. Our studies provide evidence that these proteins, which we named BagA and BagB, are unlikely to be involved in anion transport. In addition, BagA and BagB are conserved in all mycobacterial species, including the causative agent of leprosy, which has a highly decayed genome. This conservation suggests that BagAB constitutes a part of the core mycobacterial genome and is needed for some yet-to-be-determined part of the life cycle of these organisms.

摘要

我们对 中的一个操纵子,Rv3679-Rv3680 进行了特征描述,其中每个开放阅读框都被注释为编码“阴离子转运 ATP 酶”同源物。使用结构预测建模,我们发现 Rv3679 和 Rv3680 更类似于真核生物的指导入口的锚定蛋白 (Get3) 伴侣。Get3 将蛋白质递送到内质网膜中,对于一些真核生物的正常生长和生理至关重要。我们试图表征 Rv3679 和 Rv3680 的结构,并测试它们是否在 发病机制中起作用。我们解决了核苷酸结合的 Rv3679-Rv3680 复合物的晶体结构,分辨率为 2.5 至 3.2 Å,结果表明,尽管它与 Get3 和 ArsA 有些相似,但也有明显的差异,包括这些蛋白质不太可能参与阴离子转运。缺失这两个基因并没有显示出任何明显的生长缺陷 或在小鼠中。总的来说,我们在细菌中发现了一类与 Get3 复合物具有相似性的新蛋白,其功能仍有待确定。许多细菌物种编码的蛋白质被预测具有与 Get3 和 ArsA 型阴离子转运蛋白相似的功能。我们的研究提供了证据表明,这些我们称为 BagA 和 BagB 的蛋白质不太可能参与阴离子转运。此外,BagA 和 BagB 在所有分枝杆菌物种中都保守,包括麻风分枝杆菌的病原体,其基因组高度退化。这种保守性表明,BagAB 构成了核心分枝杆菌基因组的一部分,并且是这些生物体生命周期中某些尚未确定的部分所必需的。

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