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微型肌红蛋白中的蛋白质动力学:肌红蛋白的中央核心是构象结构域吗?

Protein dynamics in minimyoglobin: is the central core of myoglobin the conformational domain?

作者信息

Di Iorio E E, Yu W, Calonder C, Winterhalter K H, De Sanctis G, Falcioni G, Ascoli F, Giardina B, Brunori M

机构信息

Laboratorium für Biochemie I, Eidgenössische Technische Hochschule (ETH), Zurich, Switzerland.

出版信息

Proc Natl Acad Sci U S A. 1993 Mar 1;90(5):2025-9. doi: 10.1073/pnas.90.5.2025.

Abstract

The kinetics of CO binding to the horse myoglobin fragment Mb-(32-139), the so-called "mini-Mb," were investigated by laser flash photolysis in 0.1 M phosphate buffer and in buffer with 75% (vol/vol) glycerol. The reaction displays complex time courses that can be approximated satisfactorily only with a sum of five exponentials. The features of the kinetic components and a comparison of the deoxy-minus-carbonyl difference spectra of mini-Mb and horse Mb obtained under equilibrium conditions, with the kinetic difference spectra resulting from the global analysis of the traces recorded between 400 and 450 nm, show that CO binding to mini-Mb is accompanied by large structural changes. In view of the fact that mini-Mb is an approximation of the Mb-(31-105) fragment encoded by the central exon of the Mb gene, this finding is particularly relevant. On the basis of our data and previous reports [De Sanctis, G., Falcioni, G., Giardina, B., Ascoli, F. & Brunori, M. (1988) J. Mol. Biol. 200, 725-733; De Sanctis, G., Falcioni, G., Grelloni, F., Desideri, A., Polizo, F., Giardina, B., Ascoli, F. & Brunori, M. (1992) J. Mol. Biol. 222, 637-643], we propose that the protein fragment encoded by the central exon of the Mb gene is the domain responsible for ligand-linked conformational transitions, while the two terminal fragments dampen the amplitude of the structural changes that accompany ligand binding, thus rendering the protein stable and kinetically more efficient in its physiological function.

摘要

通过激光闪光光解技术,在0.1 M磷酸盐缓冲液和含75%(体积/体积)甘油的缓冲液中,研究了一氧化碳与马肌红蛋白片段Mb-(32 - 139)(即所谓的“微型肌红蛋白”)的结合动力学。该反应呈现出复杂的时间进程,只有用五个指数之和才能令人满意地近似。动力学成分的特征,以及在平衡条件下获得的微型肌红蛋白和马肌红蛋白的脱氧减去羰基差光谱,与在400至450 nm之间记录的痕量的全局分析所得到的动力学差光谱的比较表明,一氧化碳与微型肌红蛋白的结合伴随着较大的结构变化。鉴于微型肌红蛋白是肌红蛋白基因中央外显子编码的Mb-(31 - 105)片段的近似物,这一发现尤为重要。根据我们的数据和先前的报道[德桑蒂斯,G.,法尔乔尼,G.,贾尔迪纳,B.,阿斯克利,F. & 布鲁诺里,M.(1988年)《分子生物学杂志》200,725 - 733;德桑蒂斯,G.,法尔乔尼,G.,格雷洛尼,F.,德西德里,A.,波利佐,F.,贾尔迪纳,B.,阿斯克利,F. & 布鲁诺里,M.(1992年)《分子生物学杂志》222,637 - 643],我们提出,肌红蛋白基因中央外显子编码的蛋白质片段是负责配体连接的构象转变的结构域,而两个末端片段则减弱了配体结合时伴随的结构变化的幅度,从而使蛋白质在其生理功能中更稳定且动力学效率更高。

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本文引用的文献

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