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霉酚酸对肌苷单磷酸脱氢酶的抑制作用:利用毛细管电泳剖析正向和反向途径

Inhibition of IMPDH by mycophenolic acid: dissection of forward and reverse pathways using capillary electrophoresis.

作者信息

Fleming M A, Chambers S P, Connelly P R, Nimmesgern E, Fox T, Bruzzese F J, Hoe S T, Fulghum J R, Livingston D J, Stuver C M, Sintchak M D, Wilson K P, Thomson J A

机构信息

Vertex Pharmaceuticals Incorporated, Cambridge, Massachusetts 02139-4211, USA.

出版信息

Biochemistry. 1996 Jun 4;35(22):6990-7. doi: 10.1021/bi9607416.

Abstract

The objective of this work was to contribute to the understanding of mechanisms for IMPDH inhibition. We over-expressed hamster type II IMPDH in Escherichia coli, purified the protein to apparent homogeneity, and used capillary electrophoresis to quantify enzyme turnover events accompanying inhibition by mycophenolic acid (MPA). We dissected two convergent pathways leading to MPA-inhibition; a rapid "forward" pathway beginning with substrates and linked to enzyme catalysis, and a slower "reverse" pathway apparently not involving catalysis. MPA-inhibition occurred rapidly in the forward direction by interrupting the enzyme turnover cycle, after IMP and NAD+ binding, after hydride transfer, and after NADH release. Slow inhibition, without substrate turnover, was achieved by incubating free enzyme with excess XMP and MPA. We propose that mycophenolic acid inhibits IMPDH by trapping a transient covalent product of the hydride transfer reaction (IMPDH approximately XMP*) before a final hydrolysis step that precedes XMP and enzyme release in the forward reaction pathway. Understanding the ligand occupancy of the protein has also proven important for producing homogeneous, chemically defined complexes for structural studies. IMPDH samples inhibited by MPA in the forward and reverse pathways yielded similar, high-quality crystals that are currently undergoing X-ray diffraction analyses.

摘要

这项工作的目的是促进对肌苷酸脱氢酶(IMPDH)抑制机制的理解。我们在大肠杆菌中过表达仓鼠II型IMPDH,将该蛋白纯化至表观均一,并使用毛细管电泳来量化伴随霉酚酸(MPA)抑制作用的酶周转事件。我们剖析了导致MPA抑制的两条汇聚途径;一条快速的“正向”途径,从底物开始并与酶催化相关联,以及一条较慢的“反向”途径,显然不涉及催化作用。在正向反应中,MPA通过在IMP和NAD⁺结合后、氢化物转移后以及NADH释放后中断酶周转循环,从而迅速发生抑制作用。通过将游离酶与过量的XMP和MPA孵育,可实现无底物周转的缓慢抑制。我们提出,霉酚酸通过在正向反应途径中XMP和酶释放之前的最终水解步骤之前捕获氢化物转移反应的瞬时共价产物(IMPDH≈XMP*)来抑制IMPDH。事实证明,了解蛋白质的配体占据情况对于制备用于结构研究的均一、化学定义明确的复合物也很重要。在正向和反向途径中被MPA抑制的IMPDH样品产生了类似的高质量晶体,目前正在进行X射线衍射分析。

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