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分子内相互作用增强了加林酰胺A类似物对……的效力。

Intramolecular Interactions Enhance the Potency of Gallinamide A Analogues against .

作者信息

Barbosa Da Silva Elany, Sharma Vandna, Hernandez-Alvarez Lilian, Tang Arthur H, Stoye Alexander, O'Donoghue Anthony J, Gerwick William H, Payne Richard J, McKerrow James H, Podust Larissa M

机构信息

Skaggs School of Pharmacy and Pharmaceutical Sciences, Center for Discovery and Innovation in Parasitic Diseases, University of California San Diego, La Jolla, California 92093, United States.

Departamento de Física, Instituto de Biociências, Letras e Ciências Exatas, Universidade Estadual Paulista Julio de Mesquita Filho, São José do Rio Preto, São Paulo, CEP 15054-000, Brazil.

出版信息

J Med Chem. 2022 Mar 10;65(5):4255-4269. doi: 10.1021/acs.jmedchem.1c02063. Epub 2022 Feb 21.

Abstract

Gallinamide A, a metabolite of the marine cyanobacterium sp., selectively inhibits cathepsin L-like cysteine proteases. We evaluated the potency of gallinamide A and 23 synthetic analogues against intracellular amastigotes and the cysteine protease, cruzain. We determined the co-crystal structures of cruzain with gallinamide A and two synthetic analogues at ∼2 Å. SAR data revealed that the N-terminal end of gallinamide A is loosely bound and weakly contributes in drug-target interactions. At the C-terminus, the intramolecular π-π stacking interactions between the aromatic substituents at P1' and P1 restrict the bioactive conformation of the inhibitors, thus minimizing the entropic loss associated with target binding. Molecular dynamics simulations showed that in the absence of an aromatic group at P1, the substituent at P1' interacts with tryptophan-184. The P1-P1' interactions had no effect on anti-cruzain activity, whereas anti- potency increased by ∼fivefold, likely due to an increase in solubility/permeability of the analogues.

摘要

加林酰胺A是一种海洋蓝藻菌代谢产物,可选择性抑制组织蛋白酶L样半胱氨酸蛋白酶。我们评估了加林酰胺A及其23种合成类似物对细胞内无鞭毛体和半胱氨酸蛋白酶克氏锥虫蛋白酶的效力。我们确定了克氏锥虫蛋白酶与加林酰胺A及两种合成类似物在约2 Å分辨率下的共晶体结构。构效关系(SAR)数据显示,加林酰胺A的N末端结合松散,在药物-靶点相互作用中的贡献较小。在C末端,P1'和P1处芳香取代基之间的分子内π-π堆积相互作用限制了抑制剂的生物活性构象,从而将与靶点结合相关的熵损失降至最低。分子动力学模拟表明,在P1处没有芳香基团的情况下,P1'处的取代基与色氨酸-184相互作用。P1-P1'相互作用对抗克氏锥虫蛋白酶活性没有影响,而抗效力增加了约五倍,这可能是由于类似物的溶解度/渗透性增加所致。

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