Title : Co-regulation of mitochondrial respiration by proline dehydrogenase/oxidase and succinate.

Pub. Date : 2016 Mar

PMID : 26660760






8 Functional Relationships(s)
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Protein Name
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1 Effects on respiratory fitness were inhibited by DHP and NAC, indicating that these effects were mediated by PRODH/POX-dependent reactive oxygen species (ROS) generation. Reactive Oxygen Species proline dehydrogenase 1 Homo sapiens
2 Effects on respiratory fitness were inhibited by DHP and NAC, indicating that these effects were mediated by PRODH/POX-dependent reactive oxygen species (ROS) generation. Reactive Oxygen Species proline dehydrogenase 1 Homo sapiens
3 Effects on respiratory fitness were inhibited by DHP and NAC, indicating that these effects were mediated by PRODH/POX-dependent reactive oxygen species (ROS) generation. Reactive Oxygen Species proline dehydrogenase 1 Homo sapiens
4 Effects on respiratory fitness were inhibited by DHP and NAC, indicating that these effects were mediated by PRODH/POX-dependent reactive oxygen species (ROS) generation. Reactive Oxygen Species proline dehydrogenase 1 Homo sapiens
5 We found that succinate was an uncompetitive inhibitor of PRODH/POX activity, inhibited ROS generation by PRODH/POX, and alleviated PRODH/POX effects on respiratory fitness. Reactive Oxygen Species proline dehydrogenase 1 Homo sapiens
6 We found that succinate was an uncompetitive inhibitor of PRODH/POX activity, inhibited ROS generation by PRODH/POX, and alleviated PRODH/POX effects on respiratory fitness. Reactive Oxygen Species proline dehydrogenase 1 Homo sapiens
7 We found that succinate was an uncompetitive inhibitor of PRODH/POX activity, inhibited ROS generation by PRODH/POX, and alleviated PRODH/POX effects on respiratory fitness. Reactive Oxygen Species proline dehydrogenase 1 Homo sapiens
8 We found that succinate was an uncompetitive inhibitor of PRODH/POX activity, inhibited ROS generation by PRODH/POX, and alleviated PRODH/POX effects on respiratory fitness. Reactive Oxygen Species proline dehydrogenase 1 Homo sapiens