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Biochemical and physiological properties of K+ channel-associated AKR6A (Kv beta) proteins

机译:K +通道相关AKR6A(KVβ)蛋白的生化和生理特性

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Voltage-gated potassium (Kv) channels play an essential role in the regulation of membrane excitability and thereby control physiological processes such as cardiac excitability, neural communication, muscle contraction, and hormone secretion. Members of the Kv1 and Kv4 families are known to associate with auxiliary intracellular Kv beta subunits, which belong to the aldo-keto reductase superfamily. Electrophysiological studies have shown that these proteins regulate the gating properties of Kv channels. Although the three gene products encoding Kv beta proteins are functional enzymes in that they catalyze the nicotinamide adenine dinucleotide phosphate (NAD[P]H)-dependent reduction of a wide range of aldehyde and ketone substrates, the physiological role for these proteins and how each subtype may perform unique roles in coupling membrane excitability with cellular metabolic processes remains unclear. Here, we discuss current knowledge of the enzymatic properties of Kv beta proteins from biochemical studies with their described and purported physiological and pathophysiological influences.
机译:电压门控钾(KV)通道在调节膜兴奋性中起重要作用,从而控制生理过程,如心脏兴奋性,神经通信,肌肉收缩和激素分泌。已知KV1和KV4系列的成员与辅助细胞内KVβ亚基相关联,其属于Aldo-Keto还原酶超家族。电生理学研究表明,这些蛋白质调节了KV通道的门控性能。虽然编码KVβ蛋白的三种基因产物是具有功能性酶的,但它们催化烟酰胺腺嘌呤二核苷酸磷酸酯(NAD [P] H) - 依赖性降低各种醛和酮底物,这些蛋白质的生理作用以及每个蛋白质的生理作用亚型可以在耦合膜兴奋性与细胞代谢过程中进行独特的作用仍然不清楚。在这里,我们讨论了目前用其描述的生理和病理生理学影响的生物化学研究的KVβ蛋白酶酶学性质的现状。

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