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类核阻隔蛋白SlmA可加速FtsZ蛋白聚合物的解体,而不影响其GTP酶活性。

The Nucleoid Occlusion SlmA Protein Accelerates the Disassembly of the FtsZ Protein Polymers without Affecting Their GTPase Activity.

作者信息

Cabré Elisa J, Monterroso Begoña, Alfonso Carlos, Sánchez-Gorostiaga Alicia, Reija Belén, Jiménez Mercedes, Vicente Miguel, Zorrilla Silvia, Rivas Germán

机构信息

Centro de Investigaciones Biológicas, Consejo Superior de Investigaciones Científicas (CSIC), Madrid, Spain.

Centro Nacional de Biotecnología, Consejo Superior de Investigaciones Científicas (CSIC), Madrid, Spain.

出版信息

PLoS One. 2015 May 7;10(5):e0126434. doi: 10.1371/journal.pone.0126434. eCollection 2015.

Abstract

Division site selection is achieved in bacteria by different mechanisms, one of them being nucleoid occlusion, which prevents Z-ring assembly nearby the chromosome. Nucleoid occlusion in E. coli is mediated by SlmA, a sequence specific DNA binding protein that antagonizes FtsZ assembly. Here we show that, when bound to its specific target DNA sequences (SBS), SlmA reduces the lifetime of the FtsZ protofilaments in solution and of the FtsZ bundles when located inside permeable giant vesicles. This effect appears to be essentially uncoupled from the GTPase activity of the FtsZ protofilaments, which is insensitive to the presence of SlmA·SBS. The interaction of SlmA·SBS with either FtsZ protofilaments containing GTP or FtsZ oligomers containing GDP results in the disassembly of FtsZ polymers. We propose that SlmA·SBS complexes control the polymerization state of FtsZ by accelerating the disassembly of the FtsZ polymers leading to their fragmentation into shorter species that are still able to hydrolyze GTP at the same rate. SlmA defines therefore a new class of inhibitors of the FtsZ ring different from the SOS response regulator SulA and from the moonlighting enzyme OpgH, inhibitors of the GTPase activity. SlmA also shows differences compared with MinC, the inhibitor of the division site selection Min system, which shortens FtsZ protofilaments by interacting with the GDP form of FtsZ.

摘要

细菌通过不同机制实现分裂位点的选择,其中之一是类核阻隔,它可防止Z环在染色体附近组装。大肠杆菌中的类核阻隔由SlmA介导,SlmA是一种序列特异性DNA结合蛋白,可拮抗FtsZ组装。在此我们表明,当与特定靶DNA序列(SBS)结合时,SlmA会缩短溶液中FtsZ原丝以及位于可渗透巨型囊泡内时FtsZ束的寿命。这种效应似乎与FtsZ原丝的GTPase活性基本无关,FtsZ原丝的GTPase活性对SlmA·SBS的存在不敏感。SlmA·SBS与含有GTP的FtsZ原丝或含有GDP的FtsZ寡聚体相互作用会导致FtsZ聚合物解聚。我们提出,SlmA·SBS复合物通过加速FtsZ聚合物的解聚来控制FtsZ的聚合状态,导致其断裂成仍能以相同速率水解GTP的更短片段。因此,SlmA定义了一类不同于SOS反应调节因子SulA和兼职酶OpgH(GTPase活性抑制剂)的新型FtsZ环抑制剂。与分裂位点选择Min系统的抑制剂MinC相比,SlmA也存在差异,MinC通过与FtsZ的GDP形式相互作用来缩短FtsZ原丝。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/438b/4423959/092ed2583943/pone.0126434.g001.jpg

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