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鸽肝苹果酸酶催化活性亚基的可逆解离

Reversible dissociation of the catalytically active subunits of pigeon liver malic enzyme.

作者信息

Chang G G, Huang T M, Chang T C

机构信息

Department of Biochemistry, National Defense Medical Center, Taipei, Taiwan, Republic of China.

出版信息

Biochem J. 1988 Aug 15;254(1):123-30. doi: 10.1042/bj2540123.

Abstract

The pH-induced reversible dissociation of pigeon liver malic enzyme (EC 1.1.1.40) was studied by combined use of chemical cross-linking and SDS/polyacrylamide-gel electrophoresis. The tetrameric enzyme showed a pH-dependent dissociation in an acidic environment. At pH values above 8.0 most molecules existed as tetramers. The enzyme was gradually dissociated at lower pH. When the pH was below 5.0 most of the enzyme was present as the monomeric forms. Reassociation of the subunits was accomplished by adjusting the pH to neutrality. The dissociation and reassociation were almost instantaneous. No trimer was detected. The pigeon liver malic enzyme was thus shown to have a double-dimer quaternary structure with D2 symmetry. In the presence of substrates, the monomer-dimer-tetramer equilibrium favours the direction of dissociation. Tartronate, an L-malate analogue, was found to be more effective than L-malate in this process. When the monomeric forms were immobilized, the enzyme subunits were found to be fully active in catalysis. A possible arrangement of the four identical subunits of the enzyme molecule is proposed to account for the results obtained in this investigation. The origin of the half-of-the-sites reactivity of pigeon liver malic enzyme is also discussed.

摘要

通过化学交联和SDS/聚丙烯酰胺凝胶电泳相结合的方法,研究了pH诱导的鸽肝苹果酸酶(EC 1.1.1.40)的可逆解离。四聚体酶在酸性环境中表现出pH依赖性解离。在pH值高于8.0时,大多数分子以四聚体形式存在。在较低pH值下,酶逐渐解离。当pH值低于5.0时,大多数酶以单体形式存在。通过将pH值调至中性实现亚基的重新缔合。解离和重新缔合几乎是瞬间完成的。未检测到三聚体。因此表明鸽肝苹果酸酶具有D2对称性的双二聚体四级结构。在底物存在下,单体-二聚体-四聚体平衡有利于解离方向。发现丙醇二酸(一种L-苹果酸类似物)在此过程中比L-苹果酸更有效。当单体形式被固定化时,发现酶亚基在催化中具有完全活性。提出了酶分子四个相同亚基的一种可能排列方式来解释本研究中获得的结果。还讨论了鸽肝苹果酸酶半位点反应性的起源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8522/1135047/ed589ff671e2/biochemj00225-0134-a.jpg

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