On-Resin Assembly of Macrocyclic Inhibitors of Cryptococcus neoformans May1: A Pathway to Potent Antifungal Agents.

新型隐球菌 May1 大环抑制剂的树脂上组装:通往强效抗真菌剂的途径

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作者:KryÅ¡tůfek Robin, Verner Václav, Šácha Pavel, Hadzima Martin, Trajhan Filip, Starková Jana, TlouÅ¡t'ová Eva, Dvořáková Alexandra, Pecina Adam, Brynda Jiří, Chalupský Karel, Hájek Miroslav, Boucher Michael J, Majer Pavel, Řezáč Jan, Madhani Hiten D, Craik Charles S, Konvalinka Jan
Macrocyclic inhibitors have emerged as a privileged scaffold in medicinal chemistry, offering enhanced selectivity, stability, and pharmacokinetic profiles compared to their linear counterparts. Here, we describe a novel, on-resin macrocyclization strategy for the synthesis of potent inhibitors targeting the secreted protease Major Aspartyl Peptidase 1 in Cryptococcus neoformans, a pathogen responsible for life-threatening fungal infections. By employing diverse aliphatic linkers and statine-based transition-state mimics, we constructed a focused library of 624 macrocyclic compounds. Screening identified several subnanomolar inhibitors with desirable pharmacokinetic and antifungal properties. Lead compound 25 exhibited a K(i) of 180 pM, significant selectivity against host proteases, and potent antifungal activity in culture. The streamlined synthetic approach not only yielded drug-like macrocycles with potential in antifungal therapy but also provided insights into structure-activity relationships that can inform broader applications of macrocyclization in drug discovery.

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