Entezari Heravi Yeganeh, Bua Silvia, Nocentini Alessio, Del Prete Sonia, Saboury Ali Akbar, Sereshti Hassan, Capasso Clemente, Gratteri Paola, Supuran Claudiu T
Department of Chemistry, Faculty of Science, University of Tehran, Tehran, Iran; Università degli Studi di Firenze, Department NEUROFARBA - Pharmaceutical and Nutraceutical Section, University of Firenze, via Ugo Schiff 6, I-50019 Sesto Fiorentino, Firenze, Italy.
Università degli Studi di Firenze, Department NEUROFARBA - Pharmaceutical and Nutraceutical Section, University of Firenze, via Ugo Schiff 6, I-50019 Sesto Fiorentino, Firenze, Italy.
Bioorg Med Chem. 2017 May 1;25(9):2577-2582. doi: 10.1016/j.bmc.2017.03.026. Epub 2017 Mar 18.
A panel of 22 phenols was investigated as inhibitors of the β-class carbonic anhydrase (CAs, EC 4.2.1.1) from the fungal parasite Malassezia globosa (MgCA), a validated anti-dandruff drug target. The displayed inhibitory activities were compared to the ones previously reported against the off-target widely distributed human (h) isoforms hCA I and II. All tested phenols possessed a better efficacy in inhibiting MgCA than the clinically used sulfonamide acetazolamide, with Ks in the range of 2.5 and 65.0μM. A homology-built model of MgCA was also used for understanding the binding mode of phenols to the fungal enzyme. Indeed, a wide network of hydrogen bonds and hydrophobic interactions between the phenol and active site residues were evidenced. The OH moiety of the inhibitor was observed anchored to the zinc-coordinated water, also making hydrogen bonds with Ser48 and Asp49. The diverse substituents at the phenolic scaffold were observed to interact with different portions of the hydrophobic pocket according to their nature and position. Considering the effective MgCA inhibitory properties of phenols, beside to the rather low inhibition against the off-target hCA I and II, this class of compounds might be of considerable interest in the cosmetics field as potential anti-dandruff drugs.
研究了一组22种酚类化合物作为真菌寄生虫球形马拉色菌(MgCA)β类碳酸酐酶(CAs,EC 4.2.1.1)抑制剂的情况,MgCA是一个经过验证的去屑药物靶点。将所显示的抑制活性与先前报道的针对广泛分布的人(h)同工型hCA I和II的脱靶抑制活性进行了比较。所有测试的酚类化合物在抑制MgCA方面都比临床使用的磺酰胺类药物乙酰唑胺具有更好的效果,Ks值在2.5至65.0μM范围内。还使用了MgCA的同源构建模型来理解酚类化合物与真菌酶的结合模式。实际上,已证明酚类化合物与活性位点残基之间存在广泛的氢键和疏水相互作用网络。观察到抑制剂的OH部分锚定在锌配位水上,还与Ser48和Asp49形成氢键。根据酚类支架上不同取代基的性质和位置,观察到它们与疏水口袋的不同部分相互作用。考虑到酚类化合物对MgCA具有有效的抑制特性,除了对脱靶hCA I和II的抑制作用相当低之外,这类化合物作为潜在的去屑药物在化妆品领域可能会引起相当大的兴趣。