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Mitochondrial diaphorases as NAD+ donors to segments of the citric acid cycle that support substrate-level phosphorylation yielding ATP during respiratory inhibition

机译:线粒体心肌黄递酶作为柠檬酸循环部分的NAD +供体,在呼吸抑制过程中支持底物水平的磷酸化并产生ATP

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摘要

Substrate-level phosphorylation mediated by succinyl-CoA ligase in the mitochondrial matrix produces high-energy phosphates in the absence of oxidative phosphorylation. Furthermore, when the electron transport chain is dysfunctional, provision of succinyl-CoA by the alpha-ketoglutarate dehydrogenase complex (KGDHC) is crucial for maintaining the function of succinyl-CoA ligase yielding ATP, preventing the adenine nucleotide translocase from reversing. We addressed the source of the NAD+ supply for KGDHC under anoxic conditions and inhibition of complex I. Using pharmacologic tools and specific substrates and by examining tissues from pigeon liver exhibiting no diaphorase activity, we showed that mitochondrial diaphorases in the mouse liver contribute up to 81% to the NAD+ pool during respiratory inhibition. Under these conditions, KGDHC's function, essential for the provision of succinyl-CoA to succinyl-CoA ligase, is supported by NAD+ derived from diaphorases. Through this process, diaphorases contribute to the maintenance of substrate-level phosphorylation during respiratory inhibition, which is manifested in the forward operation of adenine nucleotide translocase. Finally, we show that reoxidation of the reducible substrates for the diaphorases is mediated by complex III of the respiratory chain.-Kiss, G., Konrad, C., Pour-Ghaz, I., Mansour, J. J., Nemeth, B., Starkov, A. A., Adam-Vizi, V., Chinopoulos, C. Mitochondrial diaphorases as NAD+ donors to segments of the citric acid cycle that support substrate-level phosphorylation yielding ATP during respiratory inhibition.
机译:线粒体基质中的琥珀酰辅酶A连接酶介导的底物水平磷酸化在没有氧化磷酸化的情况下产生高能磷酸盐。此外,当电子传输链功能失调时,α-酮戊二酸脱氢酶复合物(KGDHC)提供的琥珀酰-CoA对于维持产生ATP的琥珀酰-CoA连接酶的功能,防止腺嘌呤核苷酸的转位酶逆转至关重要。我们研究了缺氧条件下和复合物I抑制下KGDHC的NAD +供应来源。使用药理学工具和特定底物,通过检查鸽子肝脏中不表现出心肌黄递酶活性的组织,我们发现小鼠肝脏中的线粒体心肌黄递酶贡献了81种在呼吸抑制过程中占NAD +库的%。在这些条件下,源自黄递酶的NAD +支持了KGDHC的功能,该功能是向琥珀酰-CoA连接酶提供琥珀酰-CoA所必需的。通过该过程,心肌黄递酶有助于在呼吸抑制过程中维持底物水平的磷酸化,这在腺嘌呤核苷酸转位酶的正向操作中表现出来。最后,我们显示出,心肌黄递酶的可还原底物的再氧化是由呼吸链的复杂III介导的。-Kiss,G.,Konrad,C.,Pour-Ghaz,I.,Mansour,JJ,Nemeth,B., Starkov,AA,Adam-Vizi,V.,Chinopoulos,C。线粒体心肌黄递酶作为柠檬酸循环段的NAD +供体,在呼吸抑制过程中支持底物水平的磷酸化并产生ATP。

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