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作为β-分泌酶1(BACE1)抑制剂的四唑衍生物的磺酰胺基、酰胺基杂环加合物:计算机模拟研究

Sulfonamido, amido heterocyclic adducts of tetrazole derivatives as BACE1 inhibitors: in silico exploration.

作者信息

Joshi Nachiket, Alavala Rajasekhar Reddy

机构信息

Shobhaben Pratapbhai Patel School of Pharmacy and Technology Management, SVKM's NMIMS, V L Mehta Road, Vile Parle West, Mumbai, Maharashtra, 400056, India.

出版信息

Mol Divers. 2024 Dec;28(6):4017-4049. doi: 10.1007/s11030-023-10792-7. Epub 2024 Jan 25.

Abstract

Alzheimer's disease is a neurodegenerative disorder accounting for 60-80% of dementia cases and is accompanied by a high mortality rate in patients above 70 years of age. The formation of senile plaques composed of amyloid-β protein is a hallmark of Alzheimer's disease. Beta-site APP cleaving enzyme 1 (BACE1) is a proteolytic enzyme involved in the degradation of amyloid precursor protein, which further degrades to form toxic amyloid-β fragments. Hence, inhibition of BACE1 was stated to be an effective strategy for Alzheimer's therapeutics. Keeping in mind the structures of different BACE1 inhibitors that had reached the clinical trials, we designed a library of compounds (total 164) based on a substituted 5-amino tetrazole scaffold which was an isosteric replacement of the cyclic amidine moiety, a common component of the BACE1 inhibitors which reached the clinical trials. The scaffold was linked to different structural moieties with the aid of an amide or sulfonamide bond to design some novel molecules. Molecular docking was initially performed and the top 5 molecules were selected based on docking scores and protein-ligand interactions. Furthermore, molecular dynamic simulations were performed for these molecules (3g, 7k, 8n, 9d, 9g) for 100 ns and MM-GBSA calculations were performed for each of these complexes. After critical evaluation of the obtained results, three potential molecules (9d, 8n, and 7k) were forwarded for prolonged stability studies by performing molecular dynamic simulations for 250 ns and simultaneous MM-GBSA calculations. It was observed that the compounds (9d, 8n, and 7k) were forming good interactions with the amino acid residues of the catalytic site of the enzyme with multiple non-covalent interactions. In MD simulations, the compounds have shown better stability and better binding energy throughout the runtime.

摘要

阿尔茨海默病是一种神经退行性疾病,占痴呆病例的60 - 80%,并且70岁以上患者的死亡率很高。由β-淀粉样蛋白组成的老年斑的形成是阿尔茨海默病的一个标志。β-位点淀粉样前体蛋白裂解酶1(BACE1)是一种参与淀粉样前体蛋白降解的蛋白水解酶,该蛋白进一步降解形成有毒的β-淀粉样片段。因此,抑制BACE1被认为是治疗阿尔茨海默病的有效策略。考虑到已进入临床试验的不同BACE1抑制剂的结构,我们基于取代的5-氨基四唑支架设计了一个化合物库(共164个),该支架是环脒部分的等电子体替代物,环脒部分是已进入临床试验的BACE1抑制剂的常见组成部分。该支架通过酰胺或磺酰胺键与不同的结构部分相连,以设计一些新型分子。最初进行了分子对接,并根据对接分数和蛋白质-配体相互作用选择了前5个分子。此外,对这些分子(3g、7k、8n、9d、9g)进行了100纳秒的分子动力学模拟,并对每个复合物进行了MM-GBSA计算。在对所得结果进行严格评估后,通过进行250纳秒的分子动力学模拟和同时进行MM-GBSA计算,挑选出三个潜在分子(9d、8n和7k)进行延长稳定性研究。观察到化合物(9d、8n和7k)通过多种非共价相互作用与酶催化位点的氨基酸残基形成良好的相互作用。在分子动力学模拟中,这些化合物在整个运行过程中表现出更好的稳定性和更好的结合能。

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