Orr Adam L, Ashok Deepthi, Sarantos Melissa R, Ng Ryan, Shi Tong, Gerencser Akos A, Hughes Robert E, Brand Martin D
Buck Institute for Research on Aging, Novato, California, United States of America.
PLoS One. 2014 Feb 24;9(2):e89938. doi: 10.1371/journal.pone.0089938. eCollection 2014.
Mitochondrial sn-glycerol 3-phosphate dehydrogenase (mGPDH) is a ubiquinone-linked enzyme in the mitochondrial inner membrane best characterized as part of the glycerol phosphate shuttle that transfers reducing equivalents from cytosolic NADH into the mitochondrial electron transport chain. Despite the widespread expression of mGPDH and the availability of mGPDH-null mice, the physiological role of this enzyme remains poorly defined in many tissues, likely because of compensatory pathways for cytosolic regeneration of NAD⁺ and mechanisms for glycerol phosphate metabolism. Here we describe a novel class of cell-permeant small-molecule inhibitors of mGPDH (iGP) discovered through small-molecule screening. Structure-activity analysis identified a core benzimidazole-phenyl-succinamide structure as being essential to inhibition of mGPDH while modifications to the benzimidazole ring system modulated both potency and off-target effects. Live-cell imaging provided evidence that iGPs penetrate cellular membranes. Two compounds (iGP-1 and iGP-5) were characterized further to determine potency and selectivity and found to be mixed inhibitors with IC₅₀ and K(i) values between ∼1-15 µM. These novel mGPDH inhibitors are unique tools to investigate the role of glycerol 3-phosphate metabolism in both isolated and intact systems.
线粒体甘油-3-磷酸脱氢酶(mGPDH)是线粒体内膜中一种与泛醌相连的酶,其最显著的特征是作为甘油磷酸穿梭系统的一部分,将还原当量从胞质NADH转移到线粒体电子传递链中。尽管mGPDH广泛表达且有mGPDH基因敲除小鼠可用,但该酶在许多组织中的生理作用仍不清楚,这可能是由于胞质NAD⁺再生的补偿途径以及甘油磷酸代谢机制所致。在此,我们描述了一类通过小分子筛选发现的新型mGPDH细胞渗透性小分子抑制剂(iGP)。构效分析确定核心苯并咪唑-苯基-琥珀酰胺结构对抑制mGPDH至关重要,而对苯并咪唑环系统的修饰则调节了效力和脱靶效应。活细胞成像提供了iGP可穿透细胞膜的证据。对两种化合物(iGP-1和iGP-5)进行了进一步表征以确定效力和选择性,发现它们是混合抑制剂,IC₅₀和K(i)值在~1-15 μM之间。这些新型mGPDH抑制剂是研究甘油-3-磷酸代谢在分离系统和完整系统中作用的独特工具。