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Getting the adrenaline going: Crystal structure of the adrenaline-synthesizing enzyme PNMT

机译:推动肾上腺素:肾上腺素合成酶PNMT的晶体结构

摘要

Background: Adrenaline is localized to specific regions of the central nervous system (CNS), but its role therein is unclear because of a lack of suitable pharmacologic agents. Ideally, a chemical is required that crosses the blood-brain barrier, potently inhibits the adrenaline-synthesizing enzyme PNMT, and does not affect other catecholamine processes. Currently available PNMT inhibitors do not meet these criteria. We aim to produce potent, selective, and CNS-active PNMT inhibitors by structure-based design methods. The first step is the structure determination of PNMT.Results: We have solved the crystal structure of human PNMT complexed with a cofactor product and a submicromolar inhibitor at a resolution of 2.4 Å. The structure reveals a highly decorated methyltransferase fold, with an active site protected from solvent by an extensive cover formed from several discrete structural motifs. The structure of PNMT shows that the inhibitor interacts with the enzyme in a different mode from the (modeled) substrate noradrenaline. Specifically, the position and orientation of the amines is not equivalent.Conclusions: An unexpected finding is that the structure of PNMT provides independent evidence of both backward evolution and fold recruitment in the evolution of a complex enzyme from a simple fold. The proposed evolutionary pathway implies that adrenaline, the product of PNMT catalysis, is a relative newcomer in the catecholamine family. The PNMT structure reported here enables the design of potent and selective inhibitors with which to characterize the role of adrenaline in the CNS. Such chemical probes could potentially be useful as novel therapeutics.
机译:背景:肾上腺素位于中枢神经系统(CNS)的特定区域,但由于缺乏合适的药理作用,其作用尚不清楚。理想地,需要一种穿过血脑屏障,有效抑制肾上腺素合成酶PNMT且不影响其他儿茶酚胺过程的化学物质。当前可用的PNMT抑制剂不符合这些标准。我们旨在通过基于结构的设计方法来生产有效,选择性和具有CNS活性的PNMT抑制剂。第一步是确定PNMT的结构。结果:我们已经解决了人PNMT的晶体结构,该晶体与辅因子产物和亚微摩尔抑制剂复合的分辨率为2.4。该结构揭示了高度修饰的甲基转移酶折叠,其活性位通过由数个离散的结构基序形成的广泛覆盖物保护而不受溶剂的影响。 PNMT的结构表明,该抑制剂与酶的相互作用不同于(模拟的)底物去甲肾上腺素。具体而言,胺的位置和方向不相等。结论:一个意外发现是PNMT的结构为复杂酶从简单折叠的进化提供了反向进化和折叠募集的独立证据。拟议的进化途径表明,PNMT催化产物肾上腺素在儿茶酚胺家族中是一个相对较新的事物。此处报道的PNMT结构使设计出有效和选择性的抑制剂成为可能,以表征肾上腺素在中枢神经系统中的作用。这样的化学探针可能潜在地用作新型治疗剂。

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