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Effects of sodium and potassium ions on oxidative phosphorylation in relation to respiratory control by a cell-membrane adenosine triphosphatase

机译:钠和钾离子对氧化磷酸化的影响与细胞膜腺苷三磷酸酶的呼吸控制有关

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p1. A study has been made of the oxygen consumption of kidney homogenates in relation to the ADP concentration as regulated by the cell-membrane adenosine triphosphatase. Stimulation of this enzymic activity by Na(+) and K(+) caused parallel increases in oxygen consumption and ADP concentration. Similarly, inhibition with ouabain caused a parallel fall. The membrane adenosine triphosphatase concerned in active transport therefore appears to regulate respiration through its control of ADP concentration. 2. The respiration of homogenates and mitochondria was also stimulated by K(+) in a way independent of adenosine-triphosphatase activity. It was shown that K(+) facilitates oxidative phosphorylation and the respiratory response to ADP. A K(+) concentration of 25-50mm was needed for maximum oxidative phosphorylation in the presence of physiological concentration of Na(+). Na(+) counteracted K(+) in the effects on mitochondria. It is concluded that K(+) regulates cellular respiration at two structures, one directly in mitochondria, and the second indirectly through control of ADP production at the cell membrane./p
机译:> 1。已经研究了由细胞膜腺苷三磷酸酶调节的肾脏匀浆相对于ADP浓度的耗氧量。 Na(+)和K(+)对这种酶活性的刺激引起氧消耗和ADP浓度的平行增加。同样,哇巴因的抑制作用引起平行下降。因此,与主动转运有关的膜腺苷三磷酸酶似乎通过控制ADP浓度来调节呼吸。 2. K(+)也以独立于腺苷三磷酸酶活性的方式刺激匀浆和线粒体的呼吸。结果表明,K(+)促进氧化磷酸化和对ADP的呼吸反应。在生理浓度的Na(+)存在下,最大氧化磷酸化需要25-50mm的K(+)浓度。 Na(+)抵消了K(+)对线粒体的影响。结论是,K(+)通过两种结构调节细胞的呼吸作用,一种直接作用于线粒体,另一种通过控制细胞膜上ADP的产生间接作用。

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