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从家禽产品中分离出的可传播质粒编码的IV型ATP酶VirD4的结构分析。

Structural analysis of VirD4 a type IV ATPase encoded by transmissible plasmids of isolated from poultry products.

作者信息

Gokulan Kuppan, Khare Sangeeta, Foley Steven L

机构信息

Division of Microbiology, National Center for Toxicological Research, U.S. Food and Drug Administration, Jefferson, AR, United States.

出版信息

Front Artif Intell. 2022 Sep 13;5:952997. doi: 10.3389/frai.2022.952997. eCollection 2022.

Abstract

Bacterial species have evolved with a wide variety of cellular devices, and they employ these devices for communication and transfer of genetic materials and toxins. They are classified into secretory system types I to VI based on their structure, composition, and functional activity. Specifically, the bacterial type IV secretory system (T4SS) is a more versatile system than the other secretory systems because it is involved in the transfer of genetic materials, proteins, and toxins to the host cells or other bacterial species. The T4SS machinery is made up of several proteins with distinct functions and forms a complex which spans the inner and outer membranes. This secretory machinery contains three ATPases that are the driving force for the functionality of this apparatus. At the initial stage of the secretion process, the selection of substrate molecules and processing occurs at the cytoplasmic region (also known as relaxosome), and then transfer mechanisms occur through the secretion complex. In this process, the VirD4 ATPase is the first molecule that initiates substrate selection, which is subsequently delivered to the secretory machinery. In the protein data bank (PDB), no structural information is available for the VirD4 ATPase to understand the functional property. In this manuscript, we have modeled VirD4 structure in the Gram-negative bacterium and described the predicted functional importance. The sequence alignment shows that VirD4 of contains several insertion regions as compared with the template structure (pdb:1E9R) used for homology modeling. In this study, we hypothesized that the insertion regions could play a role in the flexible movement of the hexameric unit during the relaxosome processing or transfer of the substrate.

摘要

细菌物种进化出了各种各样的细胞装置,它们利用这些装置进行遗传物质和毒素的交流与转移。根据其结构、组成和功能活性,它们被分为I型至VI型分泌系统。具体而言,细菌IV型分泌系统(T4SS)比其他分泌系统更为通用,因为它参与将遗传物质、蛋白质和毒素转移到宿主细胞或其他细菌物种。T4SS机制由几种具有不同功能的蛋白质组成,形成一个跨越内膜和外膜的复合体。这种分泌机制包含三种ATP酶,它们是该装置功能的驱动力。在分泌过程的初始阶段,底物分子的选择和加工在细胞质区域(也称为松弛体)进行,然后通过分泌复合体发生转移机制。在这个过程中,VirD4 ATP酶是启动底物选择的第一个分子,随后被递送到分泌机制。在蛋白质数据库(PDB)中,没有关于VirD4 ATP酶的结构信息来了解其功能特性。在本手稿中,我们对革兰氏阴性细菌中的VirD4结构进行了建模,并描述了预测的功能重要性。序列比对显示,与用于同源建模的模板结构(pdb:1E9R)相比,[细菌名称]的VirD4包含几个插入区域。在本研究中,我们假设这些插入区域可能在松弛体加工或底物转移过程中六聚体单元的灵活运动中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69e5/9513038/f31378e39354/frai-05-952997-g0001.jpg

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