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异柠檬酸在酵母NAD⁺特异性异柠檬酸脱氢酶中两个功能不同的位点上的结合。

Isocitrate binding at two functionally distinct sites in yeast NAD+-specific isocitrate dehydrogenase.

作者信息

Lin An-Ping, McAlister-Henn Lee

机构信息

Department of Biochemistry, University of Texas Health Science Center, San Antonio, Texas 78229-3900, USA.

出版信息

J Biol Chem. 2002 Jun 21;277(25):22475-83. doi: 10.1074/jbc.M202534200. Epub 2002 Apr 12.

Abstract

Yeast NAD(+)-specific isocitrate dehydrogenase (IDH) is an octamer containing two types of homologous subunits. Ligand-binding analyses were conducted to examine effects of residue changes in putative catalytic and regulatory isocitrate-binding sites respectively contained in IDH2 and IDH1 subunits. Replacement of homologous serine residues in either subunit site, S98A in IDH2 or S92A in IDH1, was found to reduce by half the total number of holoenzyme isocitrate-binding sites, confirming a correlation between detrimental effects on isocitrate binding and respective kinetic defects in catalysis and allosteric activation by AMP. Replacement of both serine residues eliminates isocitrate binding and measurable catalytic activity. The putative isocitrate-binding sites of IDH1 and IDH2 contain five identical and four nonidentical residues. Reciprocal replacement of the four nonidentical residues in either or both subunits (A108R, F136Y, T241D, and N245D in IDH1 and/or R114A, Y142F, D248T, and D252N in IDH2) was found to be permissive for isocitrate binding. This provides further evidence for two types of binding sites in IDH, although the authentic residues have been shown to be necessary for normal kinetic contributions. Finally, the mutant enzymes with residue replacements in the IDH1 site were found to be unable to bind AMP, suggesting that allosteric activation is dependent both upon binding of isocitrate at the IDH1 site and upon the changes in the enzyme normally elicited by this binding.

摘要

酵母NAD⁺特异性异柠檬酸脱氢酶(IDH)是一种由两种同源亚基组成的八聚体。进行配体结合分析以分别检测IDH2和IDH1亚基中假定的催化和调节性异柠檬酸结合位点中残基变化的影响。发现替换任一亚基位点中的同源丝氨酸残基,即IDH2中的S98A或IDH1中的S92A,会使全酶异柠檬酸结合位点的总数减少一半,这证实了对异柠檬酸结合的有害影响与催化和AMP变构激活中的各自动力学缺陷之间存在相关性。同时替换两个丝氨酸残基会消除异柠檬酸结合和可测量的催化活性。IDH1和IDH2的假定异柠檬酸结合位点包含五个相同和四个不同的残基。发现对任一或两个亚基中的四个不同残基进行相互替换(IDH1中的A108R、F136Y、T241D和N245D,和/或IDH2中的R114A、Y142F、D248T和D252N)允许异柠檬酸结合。这为IDH中的两种结合位点提供了进一步的证据,尽管已证明真实的残基对于正常的动力学贡献是必需的。最后,发现IDH1位点有残基替换的突变酶无法结合AMP,这表明变构激活既依赖于IDH1位点上异柠檬酸的结合,也依赖于这种结合通常引起的酶的变化。

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