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Design, synthesis, inhibition studies, and molecular modeling of pepstatin analogues addressing different secreted aspartic proteinases of Candida albicans

机译:针对白色念珠菌分泌的不同天冬氨酸蛋白酶的胃抑素类似物的设计,合成,抑制研究和分子模型

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摘要

The family of secreted aspartic proteinases is known as an important virulence factor of yeast infections by Candida albicans in particular, which is the most common fungal pathogen for humans with respect to systemic disease. Due to the continuing increase of drug resistant strains, these proteinases are currently considered as promising drug target candidates. Based on the known Sap2-substrate specificity data and X-ray analyses of Sap/inhibitor complexes, three libraries of inhibitors were designed and synthesized by modifying the structure of pepstatin A, a common non-selective aspartic proteinase inhibitor, at the P3, P2, or P2' position. These novel inhibitors showed high inhibitory potencies for the isoenzymes Sap1, Sap3, Sap5 and Sap6. Then, the affinity and selectivity of the peptide ligands were investigated by molecular modeling, highlighting new key structural information for the design of potent and selective anti-virulence agents targeting Candida albicans.
机译:分泌的天冬氨酸蛋白酶家族被公认为是白色念珠菌感染酵母的重要毒力因子,就系统疾病而言,白色念珠菌是人类最常见的真菌病原体。由于耐药菌株的持续增加,这些蛋白酶目前被认为是有前途的候选药物。根据已知的Sap2底物特异性数据和对Sap /抑制剂复合物的X射线分析,通过修饰Pepstatin A(一种常见的非选择性天冬氨酸蛋白酶抑制剂)在P3,P2的结构,设计并合成了三个抑制剂库,或P2'位置。这些新型抑制剂对同工酶Sap1,Sap3,Sap5和Sap6具有很高的抑制能力。然后,通过分子建模研究了肽配体的亲和力和选择性,突出了设计针对白色念珠菌的有效和选择性抗毒剂的新关键结构信息。

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