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苹果酸脱氢酶、猪心脏线粒体酶和上清液酶的圆二色性差光谱、二元酶 - 辅酶以及三元酶 - 辅酶 - 底物类似物复合物。

Malate dehydrogenase, circular dichroism difference spectra of porcine heart mitochondrial and supernatant enzymes, binary enzyme-coenzyme, and ternary enzyme-coenzyme-substrate analog complexes.

作者信息

Eberhardt N L, Wolfe R G

出版信息

J Biol Chem. 1975 Apr 25;250(8):2987-92.

PMID:235534
Abstract

Circular dichroism spectra and circular dichroism difference spectra, generated when porcine heart mitochondrial and supernatant malate dehydrogenase bind coenzymes or when enzyme dihydroincotinamide nucleotide binary complexes bind substrate analogs, are presented. No significant changes are observed in protein chromophores in the 200- to 240-nm spectral range indicating that there is apparently little or no perturbation of the alpha helix or peptide backbone when binary or ternary complexes are formed. Quite different spectral perturbances occur in the two enzymes with reduced coenzyme binding as well as with substrate-analog binding by enzyme-reduced coenzyme binding. Comparison of spectral perturbations in both enzymes with oxidized or reduced coenzyme binding suggests that the dihydronicotinamide moiety of the coenzyme interacts with or perturbs indirectly the environment of aromatic amino acid residues. Reduced coenzyme binding apparently perturbs tyrosine residues in both mitochondrial malate dehydrogenase and lactic dehydrogenase. Reduced coenzyme binding perturbs tyrosine and tryptophan residues in supernatant malate dehydrogenase. The number of reduced coenzyme binding sites was determined to be two per 70,000 daltons in the mitochondrial enzyme, and the reduced coenzyme dissociation constants, determined through the change in ellipticity at 260 nm, with dihydronicotinamide adenine dinucleotide binding, were found to be good agreement with published values (Holbrook, J. J., and Wolfe, R. G. (1972) Biochemistry 11, 2499-2502) obtained through fluorescence-binding studies and indicate no apparent extra coenzyme binding sites. When D-malate forms a ternary complex with malate dehydrogenase-reduced coenzyme complexes, perturbation of both adenine and dihydronicotinamide chromophores is evident. L-Malate binding, however, apparently produces only a perturbation of the adenine chromophore in such complexes. Since the coenzyme has been found to bind in an open conformation on the surface of the enzyme and the substrate analogs bind at or very near the dihydronicotinamide moiety binding site, protein conformational changes are implicated during ternary complex formation with D-malate which can effect the adenine chromophore at some distance from the substrate binding site.

摘要

本文展示了猪心线粒体和上清液苹果酸脱氢酶结合辅酶时,以及酶 - 二氢烟酰胺核苷酸二元复合物结合底物类似物时产生的圆二色光谱和圆二色差光谱。在200至240纳米光谱范围内,蛋白质发色团未观察到显著变化,这表明当形成二元或三元复合物时,α螺旋或肽主链显然很少或没有受到扰动。两种酶在辅酶结合减少以及酶 - 还原辅酶结合底物类似物时会出现截然不同的光谱扰动。对两种酶在氧化或还原辅酶结合时的光谱扰动进行比较表明,辅酶的二氢烟酰胺部分与芳香族氨基酸残基的环境相互作用或间接扰动该环境。还原辅酶结合显然会扰动线粒体苹果酸脱氢酶和乳酸脱氢酶中的酪氨酸残基。还原辅酶结合会扰动上清液苹果酸脱氢酶中的酪氨酸和色氨酸残基。在线粒体酶中,每70,000道尔顿的还原辅酶结合位点数量被确定为两个,通过260纳米处椭圆率的变化测定的还原辅酶解离常数,与通过荧光结合研究获得的已发表值(霍尔布鲁克,J. J.,和沃尔夫,R. G.(1972年)《生物化学》11,2499 - 2502)良好吻合,且未表明存在明显的额外辅酶结合位点。当D - 苹果酸与苹果酸脱氢酶 - 还原辅酶复合物形成三元复合物时,腺嘌呤和二氢烟酰胺发色团的扰动都很明显。然而,L - 苹果酸结合在此类复合物中显然仅产生腺嘌呤发色团的扰动。由于已发现辅酶以开放构象结合在酶表面,且底物类似物在二氢烟酰胺部分结合位点或非常接近该位点处结合,所以在与D - 苹果酸形成三元复合物的过程中涉及蛋白质构象变化,这可能会影响距底物结合位点有一定距离的腺嘌呤发色团。

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