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- W2343242243 endingPage "C80" @default.
- W2343242243 startingPage "C67" @default.
- W2343242243 abstract "Mitochondrial Ca 2+ homeostasis, the Ca 2+ influx-efflux balance, is responsible for the control of numerous cellular functions, including energy metabolism, generation of reactive oxygen species, spatiotemporal dynamics of Ca 2+ signaling, and cell growth and death. Recent discovery of the molecular identity of the mitochondrial Ca 2+ uniporter (MCU) provides new possibilities for application of genetic approaches to study the mitochondrial Ca 2+ influx mechanism in various cell types and tissues. In addition, the subsequent discovery of various auxiliary subunits associated with MCU suggests that mitochondrial Ca 2+ uptake is not solely regulated by a single protein (MCU), but likely by a macromolecular protein complex, referred to as the MCU-protein complex (mtCUC). Moreover, recent reports have shown the potential role of MCU posttranslational modifications in the regulation of mitochondrial Ca 2+ uptake through mtCUC. These observations indicate that mtCUCs form a local signaling complex at the inner mitochondrial membrane that could significantly regulate mitochondrial Ca 2+ handling, as well as numerous mitochondrial and cellular functions. In this review we discuss the current literature on mitochondrial Ca 2+ uptake mechanisms, with a particular focus on the structure and function of mtCUC, as well as its regulation by signal transduction pathways, highlighting current controversies and discrepancies." @default.
- W2343242243 created "2016-06-24" @default.
- W2343242243 creator A5018770733 @default.
- W2343242243 creator A5019491267 @default.
- W2343242243 creator A5029968842 @default.
- W2343242243 creator A5030261747 @default.
- W2343242243 creator A5045005778 @default.
- W2343242243 creator A5055312806 @default.
- W2343242243 creator A5084809848 @default.
- W2343242243 date "2016-07-01" @default.
- W2343242243 modified "2023-10-11" @default.
- W2343242243 title "The mitochondrial Ca<sup>2+</sup>uniporter: regulation by auxiliary subunits and signal transduction pathways" @default.
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