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拟南芥血红蛋白I的X射线晶体学结构特征及其功能意义

X-ray crystallographic structural characteristics of Arabidopsis hemoglobin I and their functional implications.

作者信息

Mukhi Nitika, Dhindwal Sonali, Uppal Sheetal, Kumar Pravindra, Kaur Jagreet, Kundu Suman

机构信息

Department of Genetics, University of Delhi South Campus, New Delhi, India.

出版信息

Biochim Biophys Acta. 2013 Sep;1834(9):1944-56. doi: 10.1016/j.bbapap.2013.02.024. Epub 2013 Feb 26.

Abstract

Genome of the model dicot flowering plant, Arabidopsis thaliana, a popular tool for understanding molecular biology of plant physiology, encodes all three classes of plant hemoglobins that differ in their sequence, ligand binding and spectral properties. As such these globins are of considerable attention. Crystal structures of few members of plant class I nonsymbiotic hemoglobin have been described earlier. Here we report the crystal structure of Arabidopsis class I hemoglobin (AHb1) to 2.2Ǻ and compare its key features with the structures of similar nonsymbiotic hemoglobin from other species. Crystal structure of AHb1 is homologous to the related members with similar globin fold and heme pocket architecture. The structure is homodimeric in the asymmetric unit with both distal and proximal histidines coordinating to the heme iron atom. Residues lining the dimeric interface are also conserved in AHb1 with the exception of additional electrostatic interaction between H112 and E113 of each subunit and that involving Y119 through two water molecules. In addition, differences in heme pocket non-covalent interactions, a novel Ser residue at F7 position, Xe binding site variability, internal cavity topology differences, CD loop conformation and stability and other such properties might explain kinetic variability in AHb1. Detailed cavity analysis of AHb1 showed the presence of a novel long tunnel connecting the distal pockets of both the monomers. Presence of such tunnel, along with conformational heterogeneity observed in the two chains, might suggest cooperative ligand binding and support its role in NO scavenging. This article is part of a Special Issue entitled: Oxygen Binding and Sensing Proteins.

摘要

模式双子叶开花植物拟南芥的基因组是用于理解植物生理学分子生物学的常用工具,它编码了所有三类植物血红蛋白,这些血红蛋白在序列、配体结合和光谱特性方面存在差异。因此,这些球蛋白备受关注。此前已经描述了植物I类非共生血红蛋白少数成员的晶体结构。在此,我们报道了拟南芥I类血红蛋白(AHb1)的晶体结构,分辨率达到2.2埃,并将其关键特征与其他物种类似非共生血红蛋白的结构进行比较。AHb1的晶体结构与具有相似球蛋白折叠和血红素口袋结构的相关成员同源。该结构在不对称单元中为同型二聚体,远端和近端组氨酸均与血红素铁原子配位。除了每个亚基的H112和E113之间以及涉及Y119通过两个水分子的额外静电相互作用外,二聚体界面处的残基在AHb1中也保守。此外,血红素口袋非共价相互作用的差异、F7位置的一个新的丝氨酸残基、Xe结合位点的变异性、内腔拓扑结构差异、CD环构象和稳定性以及其他此类性质可能解释了AHb1中的动力学变异性。对AHb1的详细腔分析表明存在一条连接两个单体远端口袋的新型长隧道。这种隧道的存在,以及在两条链中观察到的构象异质性,可能表明存在协同配体结合,并支持其在清除NO中的作用。本文是名为:氧结合和传感蛋白的特刊的一部分。

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