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含嘧啶环的d-葡萄糖共轭硫脲作为2型糖尿病中α-淀粉酶、α-葡萄糖苷酶、二肽基肽酶-4和蛋白酪氨酸磷酸酶1B多靶点抑制剂的设计、合成、抑制活性及分子模拟研究

Design, synthesis, inhibitory activity, and molecular simulations study for d-glucose-conjugated thioureas containing pyrimidine ring as multitarget inhibitors against α-amylase, α-glucosidase, DDP-4, and PTP1B in Type 2 diabetes mellitus.

作者信息

Ngoc Toan Vu, Son Hai Do, Thi Kim Van Hoang, Minh Tri Nguyen, Ngoc Toan Duong, Thi Thanh Mai Nguyen, Dinh Thanh Nguyen

机构信息

Faculty of Chemistry, University of Science (Vietnam National University, Hanoi) 19 Le Thanh Tong, Hoan Kiem Hanoi Vietnam

Academy of Military Science and Technology, Ministry of Defence, Institute of New Technology 17 Hoang Sam, Cau Giay Hanoi Vietnam.

出版信息

RSC Med Chem. 2024 Jun 28;15(10):3395-417. doi: 10.1039/d4md00334a.

Abstract

A series of tetra--acetyl-α-d-glucopyranosyl thioureas 8a-l of substituted 2-aminopyrimidines 4a-l have been designed and synthesized. The latter were prepared from corresponding chalcones 3a-l of -bromoacetophenone and appropriate substituted benzaldehydes by their reaction with guanidine. The target thiourea compounds 8a-l exhibited significant inhibitory activity against enzymes that were related to type 2 diabetes mellitus, including α-amylase, α-glucosidase, DPP-4, and PTP1B. Amongst these thioureas, compound 8k with an -methoxy group was the most potential enzyme inhibitor against α-amylase with an IC value of 9.72 ± 0.34 μM. Its -isomer 8j was the strongest inhibitor against α-glucosidase with IC = 9.73 ± 0.72 μM. In the inhibition against DPP-4, compound 8f with a -bromo substituent exhibited the strongest activity with an IC value of 2.53 ± 0.03 nM. In the inhibition against PTP1B, compound 8h with a -isopropyl substituent had the strongest inhibitory activity with an IC value of 2.74 ± 0.03 μM. The enzyme kinetics of the most active compounds, including 8j, 8f and 8h against α-glucosidase, DPP-4, and PTP1B, respectively, were studied. The obtained results showed that 8j was a competitive α-glucosidase inhibitor with an inhibitory constant value of 9.31 μM. Compound 8f was a non-competitive inhibitor for DDP-4 with an inhibitory constant value of 12.57 μM. Compound 8h was also a non-competitive inhibitor for DDP-4 with an inhibitory constant value of 12.41 μM. The cytotoxicity of the most active compounds, including 8f and 8k (against α-amylase), 8i and 8j (against α-glucosidase), 8a, 8f, and 8g (against DPP-4), and 8d, 8f, and 8h (against PTP1B) was screened. The obtained cytotoxicity showed that all tested inhibitors were noncytotoxic to human normal cell line 3T3. Induced fit docking simulations of all synthesized compounds 8a-l were performed on four enzymes 4W93 (for α-amylase), 3TOP (for α-glucosidase), 3W2T (for DPP-4), and 1NNY (for PTP1B). Key interactions of each of these ligands with residues in the active pocket of each studied enzyme have been shown.

摘要

设计并合成了一系列由取代的2-氨基嘧啶4a-l衍生的四乙酰基-α-D-吡喃葡萄糖基硫脲8a-l。后者是由相应的α-溴代苯乙酮查尔酮3a-l与适当的取代苯甲醛与胍反应制备而成。目标硫脲化合物8a-l对与2型糖尿病相关的酶,包括α-淀粉酶、α-葡萄糖苷酶、二肽基肽酶-4(DPP-4)和蛋白酪氨酸磷酸酶1B(PTP1B)表现出显著的抑制活性。在这些硫脲中,具有对甲氧基的化合物8k是对α-淀粉酶最具潜力的酶抑制剂,其IC值为9.72±0.34μM。其对位异构体8j是对α-葡萄糖苷酶最强的抑制剂,IC = 9.73±0.72μM。在对DPP-4的抑制中,具有对溴取代基的化合物8f表现出最强的活性,IC值为2.53±0.03 nM。在对PTP1B的抑制中,具有对异丙基取代基的化合物8h具有最强的抑制活性,IC值为2.74±0.03μM。分别研究了活性最高的化合物8j、8f和8h对α-葡萄糖苷酶、DPP-4和PTP1B的酶动力学。所得结果表明,8j是一种竞争性α-葡萄糖苷酶抑制剂,抑制常数 值为9.31μM。化合物8f是DPP-4的非竞争性抑制剂,抑制常数 值为12.57μM。化合物8h也是DPP-4的非竞争性抑制剂,抑制常数 值为12.41μM。筛选了活性最高的化合物的细胞毒性,包括8f和8k(针对α-淀粉酶)、8i和8j(针对α-葡萄糖苷酶)、8a、8f和8g(针对DPP-4)以及8d、8f和8h(针对PTP1B)。所得细胞毒性表明,所有测试的抑制剂对人正常细胞系3T3均无细胞毒性。对所有合成化合物8a-l在四种酶4W93(针对α-淀粉酶)、3TOP(针对α-葡萄糖苷酶)、3W2T(针对DPP-4)和1NNY(针对PTP1B)上进行了诱导契合对接模拟。已展示了每种这些配体与每种研究酶活性口袋中残基的关键相互作用。

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