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非典型孤儿应答调节蛋白幽门螺杆菌1043的主链动力学

Backbone dynamics of an atypical orphan response regulator protein, Helicobacter pylori 1043.

作者信息

Jeong Ki-Woong, Ko Hyunsook, Lee Sung-Ah, Hong Eunmi, Ko Sunggeon, Cho Hyun-Soo, Lee Weontae, Kim Yangmee

机构信息

Department of Bioscience and Biotechnology, Bio/Molecular Informatics Center, Institute of SMART Biotechnology, Konkuk University, Seoul 143-701, Korea.

出版信息

Mol Cells. 2013 Feb;35(2):158-65. doi: 10.1007/s10059-013-2303-z. Epub 2013 Feb 21.

Abstract

An atypical orphan response regulator protein, HP1043 (HP-RR) in Helicobacter pylori, is proven to be essential for cell growth and does not require the well known phosphorelay scheme. HP-RR was identified as a symmetric dimer with two functional domains, an N-terminal regulatory domain (HP-RR(r)) and a C-terminal effector domain (HP-RR(e)). HP-RR is a new class of response regulator, as a phosphorylation-independent regulator. Previously, we have presented a detailed three-dimensional structure of HP-RR using NMR spectroscopy and X-ray crystallography. In this study, in order to understand the functional importance of flexibilities in HP-RR(r) and HP-RR(e), T1, T2, heteronuclear NOE experiments have been performed and backbone dynamics of HP-RR(r) and HP-RR(e) were investigated. HP-RR(r) is a symmetric dimer and the interface region, α4-β5-α5 of dimer, showed high rigidity (high S (2) values). Site of rearrangements associated with phosphorylation of HP-RR(r) (Ser(75): R ex = 3.382, Ile(95): R ex = 5.228) showed slow chemical exchanges. HP-RR(e) is composed of three α-helices flanked on two sides by anti-parallel β-sheets. Low order parameters as well as conformational exchanges in the centers of loop regions known as the DNA binding site and transcription site of HP-RR(e) suggested that flexibility of HP-RR(e) is essential for interaction with DNA. In conclusion, backbone dynamics information for HP-RR implies that structural flexibilities in HP-RR(r) are necessary for the phosphorylation site and the dynamic nature of HP-RR(e) is essential for the regulation of interaction between protein and DNA.

摘要

幽门螺杆菌中的一种非典型孤儿应答调节蛋白HP1043(HP-RR),已被证明对细胞生长至关重要,且不需要众所周知的磷酸化中继机制。HP-RR被鉴定为具有两个功能域的对称二聚体,一个N端调节域(HP-RR(r))和一个C端效应域(HP-RR(e))。HP-RR是一类新型的应答调节因子,作为一种非磷酸化依赖性调节因子。此前,我们利用核磁共振光谱和X射线晶体学给出了HP-RR详细的三维结构。在本研究中,为了了解HP-RR(r)和HP-RR(e)中灵活性的功能重要性,进行了T1、T2、异核NOE实验,并研究了HP-RR(r)和HP-RR(e)的主链动力学。HP-RR(r)是一个对称二聚体,二聚体的界面区域α4-β5-α5显示出高刚性(高S(2)值)。与HP-RR(r)磷酸化相关的重排位点(Ser(75):Rex = 3.382,Ile(95):Rex = 5.228)显示出缓慢的化学交换。HP-RR(e)由三个α螺旋组成,两侧为反平行β折叠。HP-RR(e)的DNA结合位点和转录位点所在的环区域中心的低序参数以及构象交换表明,HP-RR(e)的灵活性对于与DNA的相互作用至关重要。总之,HP-RR的主链动力学信息表明,HP-RR(r)中的结构灵活性对于磷酸化位点是必要的,而HP-RR(e)的动态性质对于调节蛋白质与DNA之间的相互作用至关重要。

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