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新月柄杆菌VapBC1中的毒素抑制作用由一个灵活的假回文蛋白质基序介导,并受DNA结合调控。

Toxin inhibition in C. crescentus VapBC1 is mediated by a flexible pseudo-palindromic protein motif and modulated by DNA binding.

作者信息

Bendtsen Kirstine L, Xu Kehan, Luckmann Majbritt, Winther Kristoffer S, Shah Shiraz A, Pedersen Christian N S, Brodersen Ditlev E

机构信息

Centre for Bacterial Stress Response and Persistence.

Department of Molecular Biology and Genetics, Aarhus University, Gustav Wieds Vej 10c, DK-8000 Aarhus C, Denmark.

出版信息

Nucleic Acids Res. 2017 Mar 17;45(5):2875-2886. doi: 10.1093/nar/gkw1266.

Abstract

Expression of bacterial type II toxin-antitoxin (TA) systems is regulated at the transcriptional level through direct binding of the antitoxin to pseudo-palindromic sequences on operator DNA. In this context, the toxin functions as a co-repressor by stimulating DNA binding through direct interaction with the antitoxin. Here, we determine crystal structures of the complete 90 kDa heterooctameric VapBC1 complex from Caulobacter crescentus CB15 both in isolation and bound to its cognate DNA operator sequence at 1.6 and 2.7 Å resolution, respectively. DNA binding is associated with a dramatic architectural rearrangement of conserved TA interactions in which C-terminal extended structures of the antitoxin VapB1 swap positions to interlock the complex in the DNA-bound state. We further show that a pseudo-palindromic protein sequence in the antitoxin is responsible for this interaction and required for binding and inactivation of the VapC1 toxin dimer. Sequence analysis of 4127 orthologous VapB sequences reveals that such palindromic protein sequences are widespread and unique to bacterial and archaeal VapB antitoxins suggesting a general principle governing regulation of VapBC TA systems. Finally, a structure of C-terminally truncated VapB1 bound to VapC1 reveals discrete states of the TA interaction that suggest a structural basis for toxin activation in vivo.

摘要

细菌II型毒素-抗毒素(TA)系统的表达在转录水平上受到调控,即抗毒素直接与操纵子DNA上的假回文序列结合。在这种情况下,毒素通过与抗毒素直接相互作用刺激DNA结合,从而起到共阻遏物的作用。在此,我们分别以1.6 Å和2.7 Å的分辨率测定了来自新月柄杆菌CB15的完整90 kDa异源八聚体VapBC1复合物的晶体结构,一种是分离状态的,另一种是与同源DNA操纵序列结合的状态。DNA结合与保守的TA相互作用的显著结构重排相关,其中抗毒素VapB1的C端延伸结构交换位置,在DNA结合状态下使复合物互锁。我们进一步表明,抗毒素中的一个假回文蛋白序列负责这种相互作用,并且是VapC1毒素二聚体结合和失活所必需的。对4127个直系同源VapB序列的序列分析表明,这种回文蛋白序列广泛存在,并且是细菌和古细菌VapB抗毒素所特有的,这表明存在一种调控VapBC TA系统的普遍原则。最后,与VapC1结合的C端截短的VapB1的结构揭示了TA相互作用的离散状态,这为体内毒素激活提供了结构基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d92f/5389673/1ea60b0104fb/gkw1266fig1.jpg

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