Abbas Sadia, Afzal Saira, Nadeem Humaira, Hussain Dilawar, Langer Peter, Sévigny Jean, Ashraf Zaman, Iqbal Jamshed
Department of Chemistry, Allama Iqbal Open University, Islamabad 44000, Pakistan.
Centre for Advanced Drug Research, COMSATS University Islamabad, Abbottabad Campus, Abbottabad 22060, Pakistan.
Bioorg Chem. 2022 Jan;118:105456. doi: 10.1016/j.bioorg.2021.105456. Epub 2021 Nov 14.
Importance of extracellular nucleotides is widely understood. These nucleotides act as ligand for P2X and P2Y receptors and modulate a variety of biological functions. However, their extracellular concentration is maintained by a chain of enzymes termed as ecto-nucleotidases. Amongst them, nucleoside triphosphate diphosphohydrolases (NTPDases) is an important enzyme family responsible for the dephosphorylation of these nucleotides. Overexpression of NTPDases leads to many pathological conditions such as cancer and thrombosis. So far, only a few NTPDase inhibitors have been reported. Considering this scarcity of (NTPDase) inhibitors, a number of thiadiazole amide derivatives were synthesized and screened against human (h)-NTPDases. Several compounds showed promising inhibitory activity; compound 5a (IC (µM); 0.05 ± 0.008) and 5g (IC (µM); 0.04 ± 0.006) appeared to be the most distinguished molecules corresponding to h-NTPDase1 and -2. However, h-NTPDase3 was the least susceptible isozyme and only three compounds (5d, 5e, 5j) strongly inhibited h-NTPDase3. Interestingly, compound 5e was recognized as the most active compound that showed dual inhibition against h-NTPDase3 as well as against h-NTPDase8. For better comprehension of binding mode of these inhibitors, most potent inhibitors were docked with their respective isozyme.
细胞外核苷酸的重要性已得到广泛认可。这些核苷酸作为P2X和P2Y受体的配体,调节多种生物学功能。然而,它们的细胞外浓度由一系列称为胞外核苷酸酶的酶维持。其中,核苷三磷酸二磷酸水解酶(NTPDases)是负责这些核苷酸去磷酸化的重要酶家族。NTPDases的过表达会导致许多病理状况,如癌症和血栓形成。到目前为止,仅报道了少数几种NTPDase抑制剂。鉴于(NTPDase)抑制剂的这种稀缺性,合成了多种噻二唑酰胺衍生物,并针对人(h)-NTPDases进行了筛选。几种化合物显示出有前景的抑制活性;化合物5a(IC50(μM);0.05±0.008)和5g(IC50(μM);0.04±0.006)似乎是对应于h-NTPDase1和-2的最突出分子。然而,h-NTPDase3是最不易受影响的同工酶,只有三种化合物(5d、5e、5j)强烈抑制h-NTPDase3。有趣的是,化合物5e被认为是最具活性的化合物,它对h-NTPDase3以及h-NTPDase8都有双重抑制作用。为了更好地理解这些抑制剂的结合模式,将最有效的抑制剂与它们各自的同工酶进行了对接。