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cpSRP43染色质结构域的三维溶液结构

Three-dimensional solution structures of the chromodomains of cpSRP43.

作者信息

Sivaraja Vaithiyalingam, Kumar Thallapuranam Krishnaswamy Suresh, Leena Philominathan Sagaya Theresa, Chang An-ni, Vidya Chitturi, Goforth Robyn L, Rajalingam Dakshinamurthy, Arvind Kannan, Ye Jiang-Liang, Chou Jonathan, Henry Ralph, Yu Chin

机构信息

Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville, Arkansas 72701, USA.

出版信息

J Biol Chem. 2005 Dec 16;280(50):41465-71. doi: 10.1074/jbc.M507077200. Epub 2005 Sep 23.

Abstract

Chloroplasts contain a unique signal recognition particle (cpSRP). Unlike the cytoplasmic forms, the cpSRP lacks RNA but contains a conserved 54-kDa GTPase and a novel 43-kDa subunit (cpSRP43). Recently, three functionally distinct chromodomains (CDs) have been identified in cpSRP43. In the present study, we report the three-dimensional solution structures of the three CDs (CD1, CD2, and CD3) using a variety of triple resonance NMR experiments. The structure of CD1 consists of a triple-stranded beta-sheet segment. The C-terminal helical segment typically found in the nuclear chromodomains is absent in CD1. The secondary structural elements in CD2 and CD3 include a triple-stranded antiparallel beta-sheet and a C-terminal helix. Interestingly, the orientation of the C-terminal helix is significantly different in the structures of CD2 and CD3. Critical comparison of the structures of the chromodomains of cpSRP43 with those found in nuclear chromodomain proteins revealed that the diverse protein-protein interactions mediated by the CDs appear to stem from the differences that exist in the surface charge potentials of each CD. Results of isothermal titration calorimetry experiments confirmed that only CD2 is involved in binding to cpSRP54. The negatively charged C-terminal helix in CD2 possibly plays a crucial role in the cpSRP54-cpSRP43 interaction.

摘要

叶绿体含有一种独特的信号识别颗粒(cpSRP)。与细胞质形式不同,cpSRP缺乏RNA,但含有一个保守的54 kDa GTP酶和一个新的43 kDa亚基(cpSRP43)。最近,在cpSRP43中鉴定出了三个功能不同的染色质结构域(CDs)。在本研究中,我们使用各种三重共振核磁共振实验报告了这三个CDs(CD1、CD2和CD3)的三维溶液结构。CD1的结构由一个三链β-折叠片段组成。在核染色质结构域中通常发现的C末端螺旋片段在CD1中不存在。CD2和CD3中的二级结构元件包括一个三链反平行β-折叠和一个C末端螺旋。有趣的是,C末端螺旋在CD2和CD3结构中的取向明显不同。将cpSRP43的染色质结构域结构与核染色质结构域蛋白中的结构进行关键比较后发现,由CDs介导的不同蛋白质-蛋白质相互作用似乎源于每个CD表面电荷电位的差异。等温滴定量热法实验结果证实,只有CD2参与与cpSRP54的结合。CD2中带负电荷的C末端螺旋可能在cpSRP54-cpSRP43相互作用中起关键作用。

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