Rigoulet Michel, Aguilaniu Hugo, Avéret Nicole, Bunoust Odile, Camougrand Nadine, Grandier-Vazeille Xavier, Larsson Christer, Pahlman Inga-Lill, Manon Stephen, Gustafsson Lena
Institut de Biochimie et Génétique Cellulaires, Université Victor Segalen-CNRS, Bordeaux cedex, France.
Mol Cell Biochem. 2004 Jan-Feb;256-257(1-2):73-81. doi: 10.1023/b:mcbi.0000009888.79484.fd.
Keeping a cytosolic redox balance is a prerequisite for living cells in order to maintain a metabolic activity and enable growth. During growth of Saccharomyces cerevisiae, an excess of NADH is generated in the cytosol. Aerobically, it has been shown that the external NADH dehydrogenase, Nde1p and Nde2p, as well as the glycerol-3-phosphate dehydrogenase shuttle, comprising the cytoplasmic glycerol-3-phosphate dehydrogenase, Gpdlp, and the mitochondrial glycerol-3-phosphate dehydrogenase, Gut2p, are the most important mechanisms for mitochondrial oxidation of cytosolic NADH. In this review we summarize the recent results showing (i) the contribution of each of the mechanisms involved in mitochondrial oxidation of the cytosolic NADH, under different physiological situations; (ii) the kinetic and structural properties of these metabolic pathways in order to channel NADH from cytosolic dehydrogenases to the inner mitochondrial membrane and (iii) the organization in supramolecular complexes and, the peculiar ensuing kinetic regulation of some of the enzymes (i.e. Gut2p inhibition by external NADH dehydrogenase activity) leading to a highly integrated functioning of enzymes having a similar physiological function. The cell physiological consequences of such an organized and regulated network are discussed.
维持胞质氧化还原平衡是活细胞维持代谢活性和实现生长的前提条件。在酿酒酵母生长过程中,胞质中会产生过量的NADH。在有氧条件下,已表明外部NADH脱氢酶Nde1p和Nde2p以及由细胞质甘油-3-磷酸脱氢酶Gpdlp和线粒体甘油-3-磷酸脱氢酶Gut2p组成的甘油-3-磷酸脱氢酶穿梭途径是胞质NADH线粒体氧化的最重要机制。在本综述中,我们总结了最近的研究结果,这些结果表明:(i)在不同生理情况下,参与胞质NADH线粒体氧化的每种机制的作用;(ii)这些代谢途径的动力学和结构特性,以便将NADH从胞质脱氢酶导向线粒体内膜;(iii)超分子复合物中的组织情况,以及某些酶(即外部NADH脱氢酶活性对Gut2p的抑制)特有的后续动力学调节,从而导致具有相似生理功能的酶实现高度整合的功能。本文还讨论了这种有组织、受调节的网络对细胞生理的影响。