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三磷酸腺苷和无机磷酸盐与红细胞中钠泵的相互作用。

The interaction of adenosinetriphosphate and inorganic phosphate with the sodium pump in red cells.

作者信息

Garay R P, Garrahan P J

出版信息

J Physiol. 1975 Jul;249(1):51-67. doi: 10.1113/jphysiol.1975.sp011002.

Abstract
  1. An increase in the intracellular concentration of inorganic phosphate (Pi) reduces the rate of the Na:K exchange catalysed by the Na pump in red cells. The inhibitory effect of Pi is exerted on the maximum rate of flux, Pi having no appreciable effect on the apparent affinity of the Na pump for either internal Na or external K. The effect of Pi is exerted along a rectangular hyperbola which tends to zero as Pi tends to infinity and is half-maximal at about 17 mM internal Pi. 2. Pi does not modify the rate of Na:Na exchange catalysed by the Na pump. 3. A reduction in the intracellular concentration of ATP reduces the maximum rate of Na:K exchange having no effect on the apparent affinity for either internal Na or external K. 4. The effects of ATP and Pi are mutually independent. 5 The lack of effect of ATP and Pi on the apparent affinity for internal Na is compatible with the idea that the affinity of the inner sites of the Na pump remains constant during a pump cycle. 6. The lack of effect of ATP on the apparent affinity for external K and the independence between the effects of ATP and Pi are difficult to explain if the only effect of ATP were its combination at a phosphorylating site. 7. The apparent affinities for K and phosphate become independent of the concentration of ATP, if it is assumed that in our experimental range the phosphorylating site is fully saturated with ATP, the rate of pumping being controlled by the state of occupation of a second non-phosphorylating site whose affinity for ATP is much lower. 8. The lack of effect of Pi on the apparent affinity for external K seems to indicate that during Na:K exchange the conformations of the pump that predominate are endowed with a reactivity towards inorganic phosphate and have the same high affinity for K in both their phospho and their dephospho states. 9. The kinetic behaviour of the Na pump in regard to its interactions with inner and outer cations, ATP and Pi seems to indicate that, in contrast with what happens with soluble allosteric proteins, in the active transport system ligand-induced changes in the reactivity are more important than ligand-induced changes in affinity. In this respect therefore the Na pump behaves as an allosteric 'V system'.
摘要
  1. 红细胞内无机磷酸盐(Pi)浓度的增加会降低由钠泵催化的钠钾交换速率。Pi的抑制作用施加于通量的最大速率上,Pi对钠泵对细胞内钠或细胞外钾的表观亲和力没有明显影响。Pi的作用呈矩形双曲线,当Pi趋于无穷大时趋于零,在细胞内Pi约为17 mM时达到半最大效应。2. Pi不会改变由钠泵催化的钠钠交换速率。3. 细胞内ATP浓度的降低会降低钠钾交换的最大速率,对细胞内钠或细胞外钾的表观亲和力没有影响。4. ATP和Pi的作用相互独立。5. ATP和Pi对细胞内钠的表观亲和力缺乏影响,这与钠泵内部位点的亲和力在泵循环过程中保持恒定的观点相符。6. 如果ATP的唯一作用是在磷酸化位点结合,那么ATP对细胞外钾的表观亲和力缺乏影响以及ATP和Pi作用之间的独立性就难以解释。7. 如果假设在我们的实验范围内磷酸化位点被ATP完全饱和,泵浦速率由对ATP亲和力低得多的第二个非磷酸化位点的占据状态控制,那么钾和磷酸盐的表观亲和力就与ATP浓度无关。8. Pi对细胞外钾的表观亲和力缺乏影响似乎表明,在钠钾交换过程中占主导的泵构象对无机磷酸盐具有反应性,并且在其磷酸化和去磷酸化状态下对钾都具有相同的高亲和力。9. 钠泵在与细胞内外阳离子、ATP和Pi相互作用方面的动力学行为似乎表明,与可溶性别构蛋白的情况相反,在主动运输系统中,配体诱导的反应性变化比配体诱导的亲和力变化更重要。因此,在这方面钠泵表现为别构“V系统”。

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