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铝-酵母己糖激酶相互作用分析:对蛋白质结构和功能的修饰

Analysis of aluminum-yeast hexokinase interaction: modifications on protein structure and functionality.

作者信息

Socorro J M, Olmo R, Teijón C, Blanco M D, Teijón J M

机构信息

Departamento de Bioquímica y Biología Molecular, Facultad de Medicina, Universidad Complutense de Madrid, Spain.

出版信息

J Protein Chem. 2000 Apr;19(3):199-208. doi: 10.1023/a:1007055719926.

Abstract

The aluminum and yeast hexokinase interaction was studied. Structural changes were correlated with variations in protein functionality. Results show two different behaviors: At low metal concentrations preferential adsorption of metal (and water exclusion) induces aggregate formation. No significant changes in the protein structure occur, but there is a continuous loss of activity (from the first concentration). At large salt concentrations a monomerization process and a conformational change in the secondary structure as well as in the three-dimensional structure take place. This change reduces the percentage of alpha-helix conformation, gives thermal stability to the protein, and allows the exposure of some tryptophan residue and hydrophobic regions. The protein inhibition increases. Conformational change and monomerization may allow access of the metal to the substrate site, mainly the ATP site. The inhibition in any case is of mixed type with a competitive component.

摘要

研究了铝与酵母己糖激酶的相互作用。结构变化与蛋白质功能的变化相关。结果显示出两种不同的行为:在低金属浓度下,金属的优先吸附(以及水的排斥)会诱导聚集体形成。蛋白质结构没有发生显著变化,但活性持续丧失(从第一个浓度开始)。在高盐浓度下,会发生单体化过程以及二级结构和三维结构的构象变化。这种变化降低了α-螺旋构象的百分比,赋予蛋白质热稳定性,并使一些色氨酸残基和疏水区域暴露出来。蛋白质抑制作用增强。构象变化和单体化可能使金属能够进入底物位点,主要是ATP位点。在任何情况下,抑制作用都是混合型的,具有竞争成分。

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