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丙烯酰胺共价反应性预估的快速从头预测工具。

A Fast Ab Initio Predictor Tool for Covalent Reactivity Estimation of Acrylamides.

机构信息

Medicinal Chemistry , Boehringer Ingelheim Pharma GmbH & Co. KG , Birkendorfer Strasse 65 , 88397 Biberach an der Riss , Germany.

出版信息

J Chem Inf Model. 2019 Aug 26;59(8):3565-3571. doi: 10.1021/acs.jcim.9b00316. Epub 2019 Jul 15.

Abstract

Thanks to their unique mode of action, covalent drugs represent an exceptional opportunity for drug design. After binding to a biologically relevant target system, covalent compounds form a reversible or irreversible covalent bond with a nucleophilic amino acid. Due to the inherently large binding energy of a covalent bond, covalent binders exhibit higher potencies and thus allow potentially lower drug dosages. However, a proper balancing of compound reactivity is key for the design of covalent binders, to achieve high levels of target inhibition while minimizing promiscuous covalent binding to nontarget proteins. In this work, we demonstrated the possibility to apply the electrophilicity index concept to estimate covalent compound reactivity. We tested this approach on acrylamides, one of the most prominent classes of covalent warheads. Our study clearly demonstrated that, for compounds with molecular weight (MW) below 250 Da, the electrophilicity index can be directly used to estimate compound reactivity. On the other hand, for leadlike molecules (MW > 250 Da) we implemented a new truncation algorithm that has to be applied before reactivity calculations. This algorithm can ensure the localization of HOMO/LUMO orbitals on the compound warhead and thus a correct estimation of its reactivity. Our results also indicate that caution should be used when employing the electrophilicity index to estimate the reactivity of nonterminal acrylamides. The nonparametric nature of this method and its reasonable computational cost make it a suitable tool to support covalent drug design.

摘要

由于其独特的作用模式,共价药物代表了药物设计的一个特殊机会。共价化合物与生物相关的靶系统结合后,与亲核氨基酸形成可逆或不可逆的共价键。由于共价键固有的大结合能,共价配体表现出更高的效力,因此允许潜在的更低的药物剂量。然而,为了设计共价配体,化合物反应性的适当平衡是关键,以实现高水平的靶抑制,同时最小化对非靶蛋白的随意共价结合。在这项工作中,我们证明了可以应用电负性指数概念来估计共价化合物的反应性。我们在丙烯酰胺上测试了这种方法,丙烯酰胺是最突出的一类共价弹头之一。我们的研究清楚地表明,对于分子量(MW)低于 250 Da 的化合物,电负性指数可以直接用于估计化合物的反应性。另一方面,对于类先导化合物(MW>250 Da),我们实现了一种新的截断算法,该算法在进行反应性计算之前必须应用。该算法可以确保 HOMO/LUMO 轨道在化合物弹头上的定位,从而正确估计其反应性。我们的结果还表明,在使用电负性指数估计非末端丙烯酰胺的反应性时应谨慎。该方法的非参数性质及其合理的计算成本使其成为支持共价药物设计的合适工具。

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