Department of Biochemistry, Technion-Israel Institute of Technology, Rappaport Faculty of Medicine, Haifa 31096, Israel.
Biochem J. 2021 Mar 12;478(5):1175-1178. doi: 10.1042/BCJ20200988.
Promiscuous catalysis is a common property of enzymes, particularly those using pyridoxal 5'-phosphate as a cofactor. In a recent issue of this journal, Katane et al. Biochem. J. 477, 4221-4241 demonstrate the synthesis and accumulation of d-glutamate in mammalian cells by promiscuous catalysis mediated by a pyridoxal 5'-phosphate enzyme, the serine/threonine dehydratase-like (SDHL). The mechanism of SDHL resembles that of serine racemase, which synthesizes d-serine, a well-established signaling molecule in the mammalian brain. d-Glutamate is present in body fluids and is degraded by the d-glutamate cyclase at the mitochondria. This study demonstrates a biochemical pathway for d-glutamate synthesis in mammalian cells and advances our knowledge on this little-studied d-amino acid in mammals. d-Amino acids may still surprise us by their unique roles in biochemistry, intercellular signaling, and as potential biomarkers of disease.
变构催化是酶的一种常见特性,特别是那些使用吡哆醛 5′-磷酸作为辅助因子的酶。在本期杂志的一篇文章中,Katane 等人展示了通过吡哆醛 5′-磷酸酶介导的变构催化,即丝氨酸/苏氨酸脱水酶样(SDHL),在哺乳动物细胞中合成和积累 d-谷氨酸。SDHL 的机制类似于丝氨酸消旋酶,后者合成 d-丝氨酸,这是哺乳动物大脑中一种成熟的信号分子。d-谷氨酸存在于体液中,并被线粒体中的 d-谷氨酸环化酶降解。本研究证明了哺乳动物细胞中 d-谷氨酸合成的生化途径,并增进了我们对这种在哺乳动物中研究甚少的 d-氨基酸的了解。d-氨基酸可能因其在生物化学、细胞间信号传递以及作为疾病潜在生物标志物方面的独特作用而继续给我们带来惊喜。