Inserm, Université de Brest, EFS, UMR 1078, GGB, 29200 Brest, France.
Inserm, Université de Nantes, CHU Nantes, CNRS, L'Institut Du Thorax, 44000 Nantes, France.
Int J Mol Sci. 2022 Jun 17;23(12):6769. doi: 10.3390/ijms23126769.
CBS encodes a pyridoxal 5'-phosphate-dependent enzyme that catalyses the condensation of homocysteine and serine to form cystathionine. Due to its implication in some cancers and in the cognitive pathophysiology of Down syndrome, the identification of pharmacological inhibitors of this enzyme is urgently required. However, thus far, attempts to identify such molecules have only led to the identification of compounds with low potency and limited selectivity. We consequently developed an original, yeast-based screening method that identified three FDA-approved drugs of the 8-hydroxyquinoline family: clioquinol, chloroxine and nitroxoline. These molecules reduce CBS enzymatic activity in different cellular models, proving that the molecular mechanisms involved in yeast phenotypic rescue are conserved in mammalian cells. A combination of genetic and chemical biology approaches also revealed the importance of copper and zinc intracellular levels in the regulation of CBS enzymatic activity-copper promoting CBS activity and zinc inhibiting its activity. Taken together, these results indicate that our effective screening approach identified three new potent CBS inhibitors and provides new findings for the regulation of CBS activity, which is crucial to develop new therapies for CBS-related human disorders.
CBS 编码一种依赖吡哆醛 5'-磷酸的酶,该酶催化同型半胱氨酸和丝氨酸缩合形成胱硫醚。由于其与某些癌症和唐氏综合征的认知病理生理学有关,因此迫切需要鉴定这种酶的药理学抑制剂。然而,迄今为止,鉴定此类分子的尝试仅导致了低效力和有限选择性的化合物的鉴定。我们因此开发了一种原始的、基于酵母的筛选方法,该方法鉴定了三种已获 FDA 批准的 8-羟基喹啉类药物:氯碘羟喹、氯羟喹和硝氯酚。这些分子在不同的细胞模型中降低 CBS 的酶活性,证明了酵母表型拯救中涉及的分子机制在哺乳动物细胞中是保守的。遗传和化学生物学方法的组合还揭示了铜和锌细胞内水平在 CBS 酶活性调节中的重要性-铜促进 CBS 活性,锌抑制其活性。总之,这些结果表明,我们有效的筛选方法鉴定了三种新的有效的 CBS 抑制剂,并为 CBS 活性的调节提供了新的发现,这对于开发与 CBS 相关的人类疾病的新疗法至关重要。