甘油醛3-磷酸脱氢酶
萘醌
化学
半胱氨酸
共价键
脱氢酶
甘油醛
生物化学
布氏锥虫
立体化学
酶
基因
有机化学
作者
Stefano Bruno,Elisa Uliassi,Mirko Zaffagnini,Federica Prati,Christian Bergamini,Riccardo Amorati,Gianluca Paredi,Marilena Margiotta,Paola Conti,Maria Paola Costi,Marcel Kaiser,Andrea Cavalli,Romana Fato,María Laura Bolognesi
摘要
Glyceraldehyde‐3‐phosphate dehydrogenase ( GAPDH ) has recently gained attention as an antiprotozoan and anticancer drug target. We have previously identified 2‐phenoxy‐1,4‐naphthoquinone as an inhibitor of both Trypanosoma brucei and human GAPDH . Herein, through multiple chemical, biochemical, and biological studies, and through the design of analogs, we confirmed the formation of a covalent adduct, we clarified the inhibition mechanism, and we demonstrated antitrypanosomal, antiplasmodial, and cytotoxic activities in cell cultures. The overall results lent support to the hypothesis that 2‐phenoxy‐1,4‐naphthoquinone binds the GAPDH catalytic cysteine covalently through a phenolate displacement mechanism. By investigating the reactivity of 2‐phenoxy‐1,4‐naphthoquinone and its analogs with four GAPDH homologs, we showed that the covalent inhibition is not preceded by the formation of a strong non‐covalent complex. However, an up to fivefold difference in inactivation rates among homologs hinted at structural or electrostatic differences of their active sites that could be exploited to further design kinetically selective inhibitors. Moreover, we preliminarily showed that 2‐phenoxy‐1,4‐naphthoquinone displays selectivity for GAPDH s over two other cysteine‐dependent enzymes, supporting its suitability as a warhead starting fragment for the design of novel inhibitors.
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