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high energy electron carriers ubiquinone cytochromes and glutathione

high energy electron carriers ubiquinone cytochromes and glutathione Respiratory Chain - an overview Why succinate? Physiological regulation by

Why succinate? Physiological regulation by a mitochondrial coenzyme Q sentinel Nature Chemical Biology Metabolic Targets of Coenzyme Q10 in Mitochondria The regulation of cell metabolism by hypoxia and hypercapnia Journal of Biological Chemistry The role of the electron transport chain in immunity Yin 2021 The FASEB Journal Wiley Online Library

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Description

Yigit, E

high energy electron carriers ubiquinone cytochromes and glutathione Respiratory Chain - an overview Why succinate? Physiological regulation by

E., Vzquez-Garcidueas, Ma

high energy electron carriers ubiquinone cytochromes and glutathione Respiratory Chain - an overview Why succinate? Physiological regulation by

10.1016/j.cbi.2011.03.007 44 Hsiou-YuD.Yi-YingC.Wen-LiangC.LinH

high energy electron carriers ubiquinone cytochromes and glutathione Respiratory Chain - an overview Why succinate? Physiological regulation by

113 (44), E6806e6812

high energy electron carriers ubiquinone cytochromes and glutathione Respiratory Chain - an overview Why succinate? Physiological regulation by
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