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毒素-抗毒素系统交叉反应的分子和结构基础。

Molecular and Structural Basis of Cross-Reactivity in Toxin-Antitoxin Systems.

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560012, India.

Biologie Intégrée du Globule Rouge UMR_S1134, INSERM, Université Paris, Université de la Réunion, Université des Antilles, F-75739 Paris, France.

出版信息

Toxins (Basel). 2020 Jul 29;12(8):481. doi: 10.3390/toxins12080481.

Abstract

genome encodes over 80 toxin-antitoxin (TA) systems. While each toxin interacts with its cognate antitoxin, the abundance of TA systems presents an opportunity for potential non-cognate interactions. TA systems mediate manifold interactions to manage pathogenicity and stress response network of the cell and non-cognate interactions may play vital roles as well. To address if non-cognate and heterologous interactions are feasible and to understand the structural basis of their interactions, we have performed comprehensive computational analyses on the available 3D structures and generated structural models of paralogous VapBC and MazEF TA systems. For a majority of the TA systems, we show that non-cognate toxin-antitoxin interactions are structurally incompatible except for complexes like VapBC15 and VapBC11, which show similar interfaces and potential for cross-reactivity. For TA systems which have been experimentally shown earlier to disfavor non-cognate interactions, we demonstrate that they are structurally and stereo-chemically incompatible. For selected TA systems, our detailed structural analysis identifies specificity conferring residues. Thus, our work improves the current understanding of TA interfaces and generates a hypothesis based on congenial binding site, geometric complementarity, and chemical nature of interfaces. Overall, our work offers a structure-based explanation for non-cognate toxin-antitoxin interactions in .

摘要

基因组编码了超过 80 个毒素-抗毒素(TA)系统。虽然每个毒素都与相应的抗毒素相互作用,但 TA 系统的丰富度为潜在的非同源相互作用提供了机会。TA 系统介导多种相互作用来管理细胞的致病性和应激反应网络,非同源相互作用也可能发挥重要作用。为了确定非同源和异源相互作用是否可行,并了解它们相互作用的结构基础,我们对现有 3D 结构进行了全面的计算分析,并生成了同源 VapBC 和 MazEF TA 系统的结构模型。对于大多数 TA 系统,我们表明除了像 VapBC15 和 VapBC11 这样的复合物之外,非同源毒素-抗毒素相互作用在结构上是不兼容的,这些复合物显示出相似的界面和潜在的交叉反应性。对于先前已经实验表明不支持非同源相互作用的 TA 系统,我们证明它们在结构和立体化学上是不兼容的。对于选定的 TA 系统,我们详细的结构分析确定了赋予特异性的残基。因此,我们的工作提高了对 TA 界面的现有理解,并基于合适的结合位点、界面的几何互补性和化学性质提出了一个假设。总的来说,我们的工作为 中的非同源毒素-抗毒素相互作用提供了基于结构的解释。

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