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编码在质粒pCAR1上的一种H-NS家族蛋白Pmr的寡聚化机制为H-NS家族成员的功能提供了分子基础。

Oligomerization mechanisms of an H-NS family protein, Pmr, encoded on the plasmid pCAR1 provide a molecular basis for functions of H-NS family members.

作者信息

Suzuki Chiho, Kawazuma Kohei, Horita Shoichiro, Terada Tohru, Tanokura Masaru, Okada Kazunori, Yamane Hisakazu, Nojiri Hideaki

机构信息

Biotechnology Research Center, The University of Tokyo, Tokyo, Japan.

Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo, Japan.

出版信息

PLoS One. 2014 Aug 19;9(8):e105656. doi: 10.1371/journal.pone.0105656. eCollection 2014.

Abstract

Enterobacterial H-NS-like proteins and Pseudomonas MvaT-like proteins share low homology at the amino acid sequence level, but both can function as xenogeneic silencers and are included in the H-NS family of proteins. H-NS family members have dimerization/oligomerization and DNA-binding domains connected by a flexible linker and form large nucleoprotein complexes using both domains. Pmr, an MvaT-like protein encoded on the IncP-7 carbazole-degradative plasmid pCAR1, is a key regulator of an interaction between pCAR1 and its host Pseudomonas putida KT2440. KT2440 has two transcribed genes that encode the MvaT-like proteins TurA and TurB. Our previous transcriptome analyses suggested that the functions of Pmr, TurA and TurB are non-equivalent, although the detailed underlying mechanisms remain unclear. In this study, we focused on the protein-protein interactions of Pmr, and assessed the homo-oligomerization capacity of various substituted and truncated Pmr derivatives by protein-protein cross-linking analysis. Six of the seven residues identified as important for homo-oligomerization in Pmr were located near the N-terminus, and the putative flexible linker or the region near that was not involved in homo-oligomerization, suggesting that Pmr homo-oligomerization is different from that of enterobacterial H-NS and that the functional mechanism differs between H-NS-like and MvaT-like proteins. In addition, we assessed homo- and hetero-oligomerization of Pmr by surface plasmon resonance analysis and found that the coupling ratio of TurB-Pmr oligomers is smaller than that of Pmr-Pmr or TurA-Pmr oligomers. These results raised the possibility that composition of the hetero-oligomers of Pmr, TurA, and TurB could explain why the different gene sets were affected by either pmr, turA, or turB disruption in our previous studies.

摘要

肠杆菌科细菌的H-NS样蛋白和假单胞菌的MvaT样蛋白在氨基酸序列水平上具有较低的同源性,但二者均可作为异源沉默子发挥作用,且都属于H-NS蛋白家族。H-NS家族成员具有通过柔性接头连接的二聚化/寡聚化结构域和DNA结合结构域,并利用这两个结构域形成大型核蛋白复合物。Pmr是位于IncP-7咔唑降解质粒pCAR1上编码的一种MvaT样蛋白,是pCAR1与其宿主恶臭假单胞菌KT2440之间相互作用的关键调节因子。KT2440有两个转录基因,分别编码MvaT样蛋白TurA和TurB。我们之前进行的转录组分析表明,尽管具体的潜在机制尚不清楚,但Pmr、TurA和TurB的功能并不等同。在本研究中,我们聚焦于Pmr的蛋白质-蛋白质相互作用,并通过蛋白质-蛋白质交联分析评估了各种取代和截短的Pmr衍生物的同源寡聚化能力。在Pmr中鉴定出的对同源寡聚化重要的七个残基中的六个位于N端附近,推测的柔性接头或其附近区域不参与同源寡聚化,这表明Pmr的同源寡聚化不同于肠杆菌科细菌的H-NS,且H-NS样蛋白和MvaT样蛋白之间的功能机制有所不同。此外,我们通过表面等离子体共振分析评估了Pmr的同源和异源寡聚化,发现TurB-Pmr寡聚体的偶联率小于Pmr-Pmr或TurA-Pmr寡聚体的偶联率。这些结果增加了一种可能性,即Pmr、TurA和TurB的异源寡聚体组成可以解释为什么在我们之前的研究中不同的基因集受到pmr、turA或turB破坏的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fc7/4138198/382bd0e3f644/pone.0105656.g001.jpg

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