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四级结构对水稻血红蛋白 rHb1 六配位平衡的影响:分子动力学模拟的见解。

Quaternary structure effects on the hexacoordination equilibrium in rice hemoglobin rHb1: insights from molecular dynamics simulations.

机构信息

Departamento de Química Inorgánica, Analítica y Química Física/ INQUIMAE-CONICET, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Buenos Aires, Argentina.

出版信息

Proteins. 2013 May;81(5):863-73. doi: 10.1002/prot.24245. Epub 2013 Feb 28.

Abstract

Nonsymbiotic hemoglobins (nsHbs) form a widely distributed class of plant proteins, which function remains unknown. Despite the fact that class 1 plant nonsymbiotic hemoglobins are hexacoordinate (6c) heme proteins (hxHbs), their hexacoordination equilibrium constants are much lower than in hxHbs from animals or bacteria. In addition, they are characterized by having very high oxygen affinities and low oxygen dissociation rate constants. Rice hemoglobin 1 (rHb1) is a class 1 nonsymbiotic hemoglobin. It crystallizes as a fully associated homodimer with both subunits in 6c state, but showing slightly different conformations, thus leading to an asymmetric crystallographic homodimer. The residues that constitute the dimeric interface are conserved among all nsHbs, suggesting that the quaternary structure could be relevant to explain the chemical behavior and biological function of this family of proteins. In this work, we analyze the molecular basis that determine the hexacoordination equilibrium in rHb1. Our results indicate that dynamical features of the quaternary structure significantly affect the hexacoordination process. Specifically, we observe that the pentacoordinate state is stabilized in the dimer with respect to the isolated monomers. Moreover, the dimer behaves asymmetrically, in a negative cooperative scheme. The results presented in this work are fully consistent with our previous hypothesis about the key role played by the nature of the CD region in determining the coordination state of globins.

摘要

非共生血红蛋白(nsHb)是一类广泛分布于植物中的蛋白质,其功能尚不清楚。尽管第一类植物非共生血红蛋白是六配位(6c)血红素蛋白(hxHb),但其六配位平衡常数远低于动物或细菌中的 hxHb。此外,它们的特点是具有非常高的氧亲和力和低的氧离解速率常数。水稻血红蛋白 1(rHb1)是一种第一类非共生血红蛋白。它以完全缔合的同源二聚体形式结晶,两个亚基均处于 6c 状态,但呈现出略微不同的构象,从而导致不对称的晶体学同源二聚体。构成二聚体界面的残基在所有 nsHb 中都保守,这表明四级结构可能与解释该蛋白家族的化学行为和生物学功能有关。在这项工作中,我们分析了决定 rHb1 六配位平衡的分子基础。我们的结果表明,四级结构的动态特征对六配位过程有显著影响。具体来说,我们观察到与单体相比,二聚体中的五配位状态更加稳定。此外,二聚体表现出不对称的负协同效应。这项工作的结果与我们之前关于 CD 区域的性质在决定球蛋白配位状态方面所起的关键作用的假设完全一致。

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