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来自人肝脏的钴(II)取代的III类醇脱氢酶和山梨醇脱氢酶。

Cobalt(II)-substituted class III alcohol and sorbitol dehydrogenases from human liver.

作者信息

Maret W

机构信息

Center for Biochemical and Biophysical Sciences and Medicine, Harvard Medical School, Brigham and Women's Hospital, Boston, Massachusetts 02115.

出版信息

Biochemistry. 1989 Dec 26;28(26):9944-9. doi: 10.1021/bi00452a011.

Abstract

The catalytic zinc atoms in class III (chi) alcohol dehydrogenase (ADH) and sorbitol dehydrogenase (SDH) from human liver have been specifically removed and replaced by cobalt(II) with a new ultrafiltration technique. The electronic absorption spectrum of class III cobalt ADH (epsiolon 638 = 870 M-1 cm-1) is nearly identical with those of active site substituted horse EE and human class I (beta 1 beta 1) cobalt ADH. Thus, the coordination environment of the catalytic metal is strictly conserved in these enzymes. However, significant differences are noted when the spectra of class III ADH-coenzyme complexes are compared to the corresponding spectra of the horse enzyme. The spectrum of class III ADH.NADH is split into three bands, centered at 680, 638, and 562 nm. The class III ADH.NAD+ species resembles the alkaline form of the corresponding horse enzyme complex but without exhibiting the pH dependence of the latter. These spectral changes underscore the role of the coenzymes in differentially fine tuning the catalytic metal for its particular function in each ADH. The noncatalytic zinc of class III ADH exchanges with cobalt at pH 7.0. While 9 residues out of 15 in the loop surrounding the noncatalytic zinc of class III ADH differ from those of the class I ADH, the electronic absorption spectra of cobalt in the noncatalytic metal site of class III ADH establish that the coordination environment of this site is conserved as well. The spectrum of cobalt SDH differs significantly from those of cobalt ADHs.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

利用一种新的超滤技术,已特异性去除人肝脏中III类(χ)乙醇脱氢酶(ADH)和山梨醇脱氢酶(SDH)中的催化锌原子,并用钴(II)取而代之。III类钴ADH的电子吸收光谱(ε638 = 870 M-1 cm-1)与活性位点取代的马乙醇脱氢酶和人I类(β1β1)钴ADH的光谱几乎相同。因此,这些酶中催化金属的配位环境严格保守。然而,当将III类ADH - 辅酶复合物的光谱与马酶的相应光谱进行比较时,会发现显著差异。III类ADH·NADH的光谱分裂为三个峰,中心分别在680、638和562 nm处。III类ADH·NAD+物种类似于相应马酶复合物的碱性形式,但不表现出后者对pH的依赖性。这些光谱变化突出了辅酶在针对每种ADH中催化金属的特定功能进行差异微调方面的作用。III类ADH的非催化锌在pH 7.0时与钴发生交换。虽然III类ADH非催化锌周围环中的15个残基中有9个与I类ADH的不同,但III类ADH非催化金属位点中钴的电子吸收光谱表明该位点的配位环境也得以保留。钴SDH的光谱与钴ADH的光谱有显著差异。(摘要截短于250字)

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