Kellogg Eye Center, University of Michigan, United States.
Department of Biochemistry, University of Washington, United States.
Exp Eye Res. 2024 Aug;245:109966. doi: 10.1016/j.exer.2024.109966. Epub 2024 Jun 8.
The retinal pigment epithelium (RPE) is omnivorous and can utilize a wide range of substrates for oxidative phosphorylation. Certain tissues with high mitochondrial metabolic load are capable of ketogenesis, a biochemical pathway that consolidates acetyl-CoA into ketone bodies. Earlier work demonstrated that the RPE expresses the rate-limiting enzyme for ketogenesis, 3-hydroxy-3-methylglutaryl-CoA synthase 2 (HMGCS2), and that the RPE indeed produces ketone bodies, including beta-hydroxybutyrate (β-HB). Prior work, based on detecting β-HB via enzymatic assays, suggested that differentiated cultures of primary RPE preferentially export β-HB across the apical membrane. Here, we compare the accuracy of measuring β-HB by enzymatic assay kits to mass spectrometry analysis. We found that commercial kits lack the sensitivity to accurately measure the levels of β-HB in RPE cultures and are prone to artifact. Using mass spectrometry, we found that while RPE cultures secrete β-HB, they do so equally to both apical and basal sides. We also find RPE is capable of consuming β-HB as levels rise. Using isotopically labeled glucose, amino acid, and fatty acid tracers, we found that carbons from both fatty acids and ketogenic amino acids, but not from glucose, produce β-HB. Altogether, we substantiate β-HB secretion in RPE but find that the secretion is equal apically and basally, RPE β-HB can derive from ketogenic amino acids or fatty acids, and accurate β-HB assessment requires mass spectrometric analysis.
视网膜色素上皮(RPE)是杂食性的,可以利用广泛的底物进行氧化磷酸化。某些具有高线粒体代谢负荷的组织能够进行酮生成,这是一种将乙酰辅酶 A 整合到酮体中的生化途径。早期的工作表明,RPE 表达酮生成的限速酶,即 3-羟-3-甲基戊二酰辅酶 A 合酶 2(HMGCS2),并且 RPE 确实产生酮体,包括β-羟丁酸(β-HB)。之前的工作基于通过酶促测定法检测β-HB,表明原代 RPE 的分化培养物优先将β-HB 通过顶膜输出。在这里,我们比较了酶促测定试剂盒和质谱分析测量β-HB 的准确性。我们发现商业试剂盒缺乏准确测量 RPE 培养物中β-HB 水平的灵敏度,并且容易出现假象。使用质谱分析,我们发现尽管 RPE 培养物分泌β-HB,但它们在顶侧和基底侧同样分泌。我们还发现 RPE 能够消耗β-HB,因为β-HB 水平上升。使用同位素标记的葡萄糖、氨基酸和脂肪酸示踪剂,我们发现来自脂肪酸和生酮氨基酸的碳,但不是来自葡萄糖的碳,产生β-HB。总的来说,我们证实了 RPE 中β-HB 的分泌,但发现分泌在顶侧和基底侧是相等的,RPE 的β-HB 可以来自生酮氨基酸或脂肪酸,并且准确的β-HB 评估需要质谱分析。