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如何将激酶抑制与不希望的单胺氧化酶 A 抑制分离——生物碱哈林的 DYRK1A 抑制剂 AnnH75 的开发。

How to Separate Kinase Inhibition from Undesired Monoamine Oxidase A Inhibition-The Development of the DYRK1A Inhibitor AnnH75 from the Alkaloid Harmine.

机构信息

Department of Pharmacy-Center for Drug Research, Ludwig-Maximilians University, 81377 Munich, Germany.

Institute of Pharmacology and Toxicology, RWTH Aachen University, 52074 Aachen, Germany.

出版信息

Molecules. 2020 Dec 16;25(24):5962. doi: 10.3390/molecules25245962.

Abstract

The β-carboline alkaloid harmine is a potent DYRK1A inhibitor, but suffers from undesired potent inhibition of MAO-A, which strongly limits its application. We synthesized more than 60 analogues of harmine, either by direct modification of the alkaloid or by de novo synthesis of β-carboline and related scaffolds aimed at learning about structure-activity relationships for inhibition of both DYRK1A and MAO-A, with the ultimate goal of separating desired DYRK1A inhibition from undesired MAO-A inhibition. Based on evidence from published crystal structures of harmine bound to each of these enzymes, we performed systematic structure modifications of harmine yielding DYRK1A-selective inhibitors characterized by small polar substituents at N-9 (which preserve DYRK1A inhibition and eliminate MAO-A inhibition) and beneficial residues at C-1 (methyl or chlorine). The top compound remains a potent DYRK1A inhibitor, and it is devoid of MAO-A inhibition. Its binding mode to DYRK1A was elucidated by crystal structure analysis, and docking experiments provided additional insights for this attractive series of DYRK1A and MAO-A inhibitors.

摘要

β-咔啉生物碱哈尔明是一种强效的 DYRK1A 抑制剂,但对 MAO-A 的抑制作用过强,这强烈限制了它的应用。我们合成了 60 多种哈尔明类似物,要么通过直接修饰生物碱,要么通过从头合成β-咔啉和相关支架来了解抑制 DYRK1A 和 MAO-A 的构效关系,最终目标是将所需的 DYRK1A 抑制与不想要的 MAO-A 抑制分开。基于发表的关于与每种酶结合的哈尔明的晶体结构的证据,我们对哈尔明进行了系统的结构修饰,得到了 DYRK1A 选择性抑制剂,其特征是 N-9 上具有小的极性取代基(保留 DYRK1A 抑制并消除 MAO-A 抑制)和 C-1 上的有益残基(甲基或氯)。顶级化合物仍然是一种有效的 DYRK1A 抑制剂,并且没有 MAO-A 抑制。通过晶体结构分析阐明了它与 DYRK1A 的结合模式,对接实验为这一系列有吸引力的 DYRK1A 和 MAO-A 抑制剂提供了更多的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fef/7765920/70dac211e72d/molecules-25-05962-g001.jpg

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