Lenartowicz Paweł, Makowski Maciej, Oszywa Bartosz, Haremza Kinga, Latajka Rafał, Pawełczak Małgorzata, Kafarski Paweł
Faculty of Chemistry, Opole University, Oleska 48, 45-052 Opole, Poland.
Faculty of Chemistry, Opole University, Oleska 48, 45-052 Opole, Poland.
Biochimie. 2017 Aug;139:46-55. doi: 10.1016/j.biochi.2017.05.011. Epub 2017 May 17.
Addition of thiols to double bond of glycyl-dehydroalanine and phenyl-dehydroalanine esters provided micromolar inhibitors of cathepsin C. The structure-activity studies indicated that dipeptides containing N-terminal phenylalanine exhibit higher affinity towards the enzyme. A series of C-terminal S-substituted cysteines are responsible for varying interaction with S1 binding pocket of cathepsin C. Depending on diastereomer these compounds most likely act as slowly reacting substrates or competitive inhibitors. This was proved by TLC analysis of the medium in which interaction of methyl (S)-phenylalanyl-(R,S)-(S-adamantyl)cysteinate (7i) with the enzyme was studied. Molecular modeling enabled to establish their mode of binding showed that S2 pocket is long and narrow and accommodates phenyl group of phenylalanine while significantly spacious sites located at the surface of the enzyme (one of them being S1 pocket) bind the adamantyl moiety oriented in different direction for each stereoisomer. Finally replacement of carboxymethyl moiety of methyl (S)-phenylalanyl-(R,S)-(S-phenyl)cysteinate (7c) with nitrile group provided about 650-times more potent inhibitor of cathepsin C indicating that the studied C-terminal S-substituted cysteines are good activity probes for S1 binding pocket of this enzyme.
将硫醇添加到甘氨酰脱氢丙氨酸和苯基脱氢丙氨酸酯的双键上可得到组织蛋白酶C的微摩尔级抑制剂。构效关系研究表明,含有N端苯丙氨酸的二肽对该酶表现出更高的亲和力。一系列C端S-取代的半胱氨酸导致与组织蛋白酶C的S1结合口袋的相互作用各不相同。根据非对映异构体的不同,这些化合物很可能作为反应缓慢的底物或竞争性抑制剂起作用。这通过对研究甲基(S)-苯丙氨酰-(R,S)-(S-金刚烷基)半胱氨酸酯(7i)与该酶相互作用的培养基进行薄层色谱分析得以证明。分子建模确定了它们的结合模式,结果显示S2口袋长而窄,可容纳苯丙氨酸的苯基,而位于酶表面的显著宽敞位点(其中之一为S1口袋)则结合每个立体异构体中取向不同的金刚烷基部分。最后,将甲基(S)-苯丙氨酰-(R,S)-(S-苯基)半胱氨酸酯(7c)的羧甲基部分替换为腈基,得到了活性约高650倍的组织蛋白酶C抑制剂,这表明所研究的C端S-取代半胱氨酸是该酶S1结合口袋的良好活性探针。