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乙二醛酶I中锌离子位点的X射线吸收研究。

X-ray absorption studies of the Zn2+ site of glyoxalase I.

作者信息

Garcia-Iniguez L, Powers L, Chance B, Sellin S, Mannervik B, Mildvan A S

出版信息

Biochemistry. 1984 Feb 14;23(4):685-9. doi: 10.1021/bi00299a016.

DOI:10.1021/bi00299a016
PMID:6712919
Abstract

X-ray edge and extended absorption fine structure spectra of Zn2+ at the active site of glyoxalase I have been measured. The edge spectrum reveals a simple set of transitions consistent with a 7-coordinate or distorted octahedral Zn2+ model complex. Analysis of the fine structure rules out sulfur ligands to Zn2+ and yields a best fit complex with Zn2+-N (or Zn2+-O) distances of 2.04 and 2.10 A, which are too great for tetrahedral Zn2+ coordination but are appropriate for an octahedral or more highly coordinated complex. Peaks of electron density in the Fourier-transformed region of the higher order shells at distances of 3-4 A from the Zn2+-imidazole model similar to those found with known Zn2+-imidazole model complexes, including carbonic anhydrase [Yachandra, V., Powers, L., & Spiro, T.G. (1983) J. Am. Chem. Soc. 105, 6596-6604], indicating at least two imidazole ligands to Zn2+ on glyoxalase I. Binding of the heavy atom substrate analogue S-(p-bromobenzyl)glutathione did not significantly alter the number of atoms directly bonded to Zn2+ or their distances. No evidence for coordination of the cysteine sulfur of glutathione by the Zn2+ was obtained, and no heavy atom signal from bromine was detected, indicating this atom to be greater than or equal to 4 A from the Zn2+. However, conformational changes of the imidazole ligands of Zn2+ upon binding of the substrate analogue were suggested by changes in the relative intensity of the doublet peaks at 3-4 A from the Zn2+ and assignable to imidazole.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

已测量了乙二醛酶I活性位点处Zn2+的X射线边缘和扩展吸收精细结构光谱。边缘光谱显示出一组简单的跃迁,与七配位或扭曲八面体Zn2+模型配合物一致。精细结构分析排除了硫作为Zn2+的配体,并得出了一个最佳拟合配合物,其Zn2+-N(或Zn2+-O)距离为2.04和2.10埃,对于四面体Zn2+配位来说太大,但对于八面体或更高配位的配合物来说是合适的。在距Zn2+-咪唑模型3-4埃的高阶壳层的傅里叶变换区域中的电子密度峰,类似于在已知的Zn2+-咪唑模型配合物中发现的峰,包括碳酸酐酶[亚钱德拉,V.,鲍尔斯,L.,&斯皮罗,T.G.(1983年)《美国化学会志》105,6596-6604],这表明乙二醛酶I上至少有两个咪唑配体与Zn2+结合。重原子底物类似物S-(对溴苄基)谷胱甘肽的结合并没有显著改变直接与Zn2+键合的原子数量或它们的距离。没有获得Zn2+与谷胱甘肽半胱氨酸硫配位的证据,也没有检测到来自溴的重原子信号,这表明该原子距Zn2+大于或等于4埃。然而,从Zn2+起3-4埃处双峰峰相对强度的变化暗示了底物类似物结合后Zn2+咪唑配体的构象变化,且该变化可归因于咪唑。(摘要截于250字)

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引用本文的文献

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Crystal structure of human glyoxalase I--evidence for gene duplication and 3D domain swapping.人乙二醛酶I的晶体结构——基因复制和三维结构域交换的证据
EMBO J. 1997 Jun 16;16(12):3386-95. doi: 10.1093/emboj/16.12.3386.
2
Evidence that the slow conformation change controlling NADH release from the enzyme is rate-limiting during the oxidation of propionaldehyde by aldehyde dehydrogenase.有证据表明,在丙醛被醛脱氢酶氧化的过程中,控制NADH从该酶释放的缓慢构象变化是限速步骤。
Biochem J. 1987 Mar 15;242(3):803-8. doi: 10.1042/bj2420803.