Rose Irwin A, Weaver Todd M
Department of Physiology and Biophysics, University of California, Irvine, CA 92697, USA.
Proc Natl Acad Sci U S A. 2004 Mar 9;101(10):3393-7. doi: 10.1073/pnas.0307524101. Epub 2004 Feb 27.
The role of a malate binding site in a concavity external to the more deeply situated active site has been a major mystery of the fumarase reaction. The malate, within 12 A of the active site, was bound by hydrogen bonds to two main-chain amides and to two basic residues, H129 and R126. Mutation of the His of this so-called B site of Escherichia coli fumarase had little effect on the overall initial rate kinetics of the enzyme, which has obscured an understanding of the critical role of the site. Contrary to the WT enzyme, which is rate-limited in the recycling of free enzyme isoforms that follows product release, the enzyme with both basic residues modified is rate-limited in the product release step itself. A loss of complexity in the mutated, but still functional, step is indicated by a greatly reduced sensitivity of its rate to changes in temperature. Unlike the inhibition by glycerol shown with normal enzyme and attributed to a viscogenic effect on the recycling rate, the product-release step of the B-site mutants is accelerated by glycerol, suggestive of a structural effect on the 12-A space between the A and B sites. It is proposed that the "extra" malate represents a stage in the transfer of substrate and product between the solvent and the "buried" active site of the enzyme.
位于更深层活性位点外部凹陷处的苹果酸结合位点在富马酸酶反应中所起的作用一直是个重大谜团。处于活性位点12埃范围内的苹果酸通过氢键与两个主链酰胺以及两个碱性残基H129和R126结合。大肠杆菌富马酸酶这个所谓B位点的组氨酸发生突变,对该酶的整体初始速率动力学影响很小,这使得人们难以理解该位点的关键作用。与野生型酶不同,野生型酶在产物释放后游离酶异构体的循环利用中受到速率限制,而两个碱性残基都被修饰的酶在产物释放步骤本身就受到速率限制。突变但仍有功能的步骤中复杂性的丧失表现为其速率对温度变化的敏感性大幅降低。与正常酶所表现出的甘油抑制作用(归因于对循环速率的粘滞效应)不同,B位点突变体的产物释放步骤会被甘油加速,这表明甘油对A位点和B位点之间12埃空间有结构影响。有人提出,“额外的”苹果酸代表了底物和产物在溶剂与酶的“埋藏”活性位点之间转移的一个阶段。