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人类线粒体单胺氧化酶B的结构:对神经保护药物设计的新化学启示

Structure of the human mitochondrial monoamine oxidase B: new chemical implications for neuroprotectant drug design.

作者信息

Binda C, Hubálek F, Li M, Castagnoli N, Edmondson D E, Mattevi A

机构信息

Department of Genetics, University of Pavia, Italy.

出版信息

Neurology. 2006 Oct 10;67(7 Suppl 2):S5-7. doi: 10.1212/wnl.67.7_suppl_2.s5.

DOI:10.1212/wnl.67.7_suppl_2.s5
PMID:17030739
Abstract

Monoamine oxidase B (MAO-B) is an outer mitochondrial membrane-bound flavoenzyme that is a well-known target for antidepressant and neuroprotective drugs. The 3A resolution structure of recombinant human MAO-B originally determined was of the enzyme complexed with pargyline, an irreversible inhibitor covalently bound to the N5 atom of the flavin coenzyme. The crystal structure shows that the enzyme is dimeric. Each monomer binds to the membrane via a C-terminal transmembrane helix and by apolar loops located at various positions in the sequence. Substrate binding to the enzyme involves negotiating a loop covering a 290A3 entrance apolar cavity before reaching an apolar 420A3 substrate cavity where the flavin coenzyme is located. The 1.7A isatin-MAO-B structure allowed a detailed examination of the enzyme's active site. A novel specific reversible MAO-B inhibitor, which is found as a contaminant in polystyrene plastics (1,4-diphenyl-2-butene), binds in both the entrance and the substrate cavity. Analogous MAO-B-specific inhibitors that bind in a manner traversing both cavities include trans-trans farnesol and chlorostyrylcaffeine. The rotation of the Ile199 side chain to an "open" conformation plays an essential role in this specificity. These results form a molecular basis for the design of new human MAO-B-specific reversible inhibitors.

摘要

单胺氧化酶B(MAO - B)是一种线粒体外膜结合的黄素酶,是抗抑郁药和神经保护药物的著名靶点。最初确定的重组人MAO - B的3A分辨率结构是该酶与帕吉林(一种与黄素辅酶的N5原子共价结合的不可逆抑制剂)形成的复合物的结构。晶体结构表明该酶是二聚体。每个单体通过C端跨膜螺旋和位于序列中不同位置的非极性环与膜结合。底物与酶的结合需要穿过一个覆盖290ų入口非极性腔的环,然后到达一个非极性的420ų底物腔,黄素辅酶位于该腔中。1.7Å的异吲哚酮 - MAO - B结构使得能够对该酶的活性位点进行详细研究。一种新型的特异性可逆MAO - B抑制剂(在聚苯乙烯塑料中作为污染物被发现,即1,4 - 二苯基 - 2 - 丁烯)结合在入口腔和底物腔中。以同时穿过两个腔的方式结合的类似MAO - B特异性抑制剂包括反式 - 反式法尼醇和氯苯乙烯基咖啡因。Ile199侧链向“开放”构象的旋转在这种特异性中起重要作用。这些结果为设计新的人MAO - B特异性可逆抑制剂奠定了分子基础。

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