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鉴定布鲁氏菌 abortus MucR 高阶寡聚体形成的区域,并研究其在基因调控中的作用。

Identifying the region responsible for Brucella abortus MucR higher-order oligomer formation and examining its role in gene regulation.

机构信息

Institute of Biostructures and Bioimaging, C.N.R, Naples, 80134, Italy.

Department of Microbiology and Immunology, Brody School of Medicine, East Carolina University, Greenville, NC, USA.

出版信息

Sci Rep. 2018 Nov 22;8(1):17238. doi: 10.1038/s41598-018-35432-1.

Abstract

MucR is a member of the Ros/MucR family of prokaryotic zinc-finger proteins found in the α-proteobacteria which regulate the expression of genes required for the successful pathogenic and symbiotic interactions of these bacteria with the eukaryotic hosts. The structure and function of their distinctive zinc-finger domain has been well-studied, but only recently the quaternary structure of the full length proteins was investigated demonstrating their ability to form higher-order oligomers. The aim of this study was to identify the region of MucR involved in higher-order oligomer formation by analysing deletion and point mutants of this protein by Light Scattering, and to determine the role that MucR oligomerization plays in the regulatory function of this protein. Here we demonstrate that a conserved hydrophobic region at the N-terminus of MucR is responsible for higher-order oligomer formation and that MucR oligomerization is essential for its regulatory function in Brucella. All these features of MucR are shared by the histone-like nucleoid structuring protein, (H-NS), leading us to propose that the prokaryotic zinc-finger proteins in the MucR/Ros family control gene expression employing a mechanism similar to that used by the H-NS proteins, rather than working as classical transcriptional regulators.

摘要

MucR 是α-变形菌中 Ros/MucR 家族的原核锌指蛋白成员,该家族蛋白参与调控细菌与真核宿主成功进行致病和共生相互作用所需基因的表达。其独特锌指结构域的结构和功能已得到充分研究,但直到最近才研究了全长蛋白的四级结构,证明了它们能够形成更高阶的寡聚体。本研究旨在通过分析该蛋白的缺失和点突变,通过光散射来确定 MucR 中参与高阶寡聚体形成的区域,并确定 MucR 寡聚化在该蛋白调节功能中的作用。在这里,我们证明 MucR 的 N 端保守疏水区负责高阶寡聚体形成,并且 MucR 寡聚化对于其在布氏菌中的调节功能至关重要。MucR 的所有这些特征都与组蛋白样核结构蛋白(H-NS)共享,这使我们提出 MucR/Ros 家族中的原核锌指蛋白通过类似于 H-NS 蛋白使用的机制来控制基因表达,而不是作为经典的转录调节剂发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b5d/6250670/75b4958c947f/41598_2018_35432_Fig1_HTML.jpg

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