Departmentof Chemistry, Quaid-i-Azam University, 45320 Islamabad, Pakistan; Sulaiman Bin Abdullah Aba Al-Khail - Centre for Interdisciplinary Research in Basic Science (SA-CIRBS), Faculty of Basic and Applied Sciences, International Islamic University, Islamabad, Pakistan.
Departmentof Chemistry, Quaid-i-Azam University, 45320 Islamabad, Pakistan.
Bioorg Chem. 2019 Jul;88:102893. doi: 10.1016/j.bioorg.2019.03.067. Epub 2019 Apr 2.
With the aim to discover novel, efficient and selective inhibitors of human alkaline phosphatase and nucleotide pyrophosphatase enzymes, two new series of pyrazolyl pyrimidinetriones (PPTs) (6a-g) and thioxopyrimidinediones (PTPs) (6h-n) were synthesized in good chemical yields using Knoevenagel condensation reaction between pyrazole carbaldehydes (4a-g) and pharmacologically active N-alkylated pyrimidinetrione (5a) and thioxopyrimidinedione (5b). The inhibition potential of the synthesized hybrid compounds was evaluated against human alkaline phosphatase (h-TNAP and h-IAP) and ectonucleotidase (h-NPP1 and h-NPP3) enzymes. Most of the tested analogs were highly potent with a variable degree of inhibition depending on the functionalized hybrid structure. The detailed structure-activity relationship (SAR) of PPT and PTP derivatives suggested that the compound with unsubstituted phenyl ring from PPT series led to selective and potent inhibition (6a; IC = 0.33 ± 0.02 µM) of h-TNAP, whereas compound 6c selectively inhibited h-IAP isozyme with IC value of 0.86 ± 0.04 µM. Similarly, compounds 6b and 6h were identified as the lead scaffolds against h-NPP1 and h-NPP3, respectively. The probable binding modes for the most potent inhibitors were elucidated through molecular docking analysis. Structure-activity relationships, mechanism of action, cytotoxic effects and druglikeness properties are also discussed.
为了发现新型、高效和选择性的人碱性磷酸酶和核苷酸焦磷酸酶抑制剂,我们通过吡唑醛(4a-g)与药理学上活性的 N-烷基嘧啶酮(5a)和噻二唑嘧啶二酮(5b)之间的 Knoevenagel 缩合反应,合成了两个新的吡唑并嘧啶并三嗪酮(PPTs)(6a-g)和噻二唑嘧啶二酮(PTPs)(6h-n)系列化合物,产率良好。我们评估了合成的杂合化合物对人碱性磷酸酶(h-TNAP 和 h-IAP)和外核苷酸酶(h-NPP1 和 h-NPP3)的抑制潜力。大多数测试的类似物都具有高度的效力,其抑制程度因功能化杂合结构的不同而有所不同。PPT 和 PTP 衍生物的详细构效关系(SAR)表明,来自 PPT 系列的未取代苯基环化合物导致对 h-TNAP 的选择性和有效抑制(6a;IC=0.33±0.02µM),而化合物 6c 对 h-IAP 同工酶具有选择性抑制作用,IC 值为 0.86±0.04µM。类似地,化合物 6b 和 6h 分别被鉴定为针对 h-NPP1 和 h-NPP3 的主要支架。通过分子对接分析阐明了最有效抑制剂的可能结合模式。还讨论了构效关系、作用机制、细胞毒性和类药性。