Biochemistry and Physiology of Plants, Bielefeld University, 33615 Bielefeld, Germany.
RNA. 2022 Nov;28(11):1446-1468. doi: 10.1261/rna.079210.122. Epub 2022 Aug 16.
About three decades ago, researchers suggested that metabolic enzymes participate in cellular processes that are unrelated to their catalytic activity, and the term "moonlighting functions" was proposed. Recently developed advanced technologies in the field of RNA interactome capture now unveil the unexpected RNA binding activity of many metabolic enzymes, as exemplified here for the enzymes of glycolysis. Although for most of these proteins a precise binding mechanism, binding conditions, and physiological relevance of the binding events still await in-depth clarification, several well explored examples demonstrate that metabolic enzymes hold crucial functions in post-transcriptional regulation of protein synthesis. This widely conserved RNA-binding function of glycolytic enzymes plays major roles in controlling cell activities. The best explored examples are glyceraldehyde 3-phosphate dehydrogenase, enolase, phosphoglycerate kinase, and pyruvate kinase. This review summarizes current knowledge about the RNA-binding activity of the ten core enzymes of glycolysis in plant, yeast, and animal cells, its regulation and physiological relevance. Apparently, a tight bidirectional regulation connects core metabolism and RNA biology, forcing us to rethink long established functional singularities.
大约三十年前,研究人员提出代谢酶参与与其催化活性无关的细胞过程,因此提出了“兼职功能”一词。最近在 RNA 互作组捕获领域发展的先进技术,揭示了许多代谢酶出人意料的 RNA 结合活性,这里以糖酵解酶为例。虽然对于这些蛋白中的大多数,精确的结合机制、结合条件和结合事件的生理相关性仍有待深入阐明,但已有一些经过深入研究的例子证明,代谢酶在蛋白质合成的转录后调控中具有重要功能。糖酵解酶的这种广泛保守的 RNA 结合功能在控制细胞活动中起着主要作用。研究最深入的例子是甘油醛 3-磷酸脱氢酶、烯醇酶、磷酸甘油酸激酶和丙酮酸激酶。本文综述了目前关于植物、酵母和动物细胞中糖酵解的十个核心酶的 RNA 结合活性、其调节及其生理相关性的知识。显然,核心代谢和 RNA 生物学之间的紧密双向调节联系迫使我们重新思考长期确立的功能单一性。