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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >An unexpected effect of ATP on the ratio between activity and phosphoenzyme level of Na~+/K~+-ATPase in steady state
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An unexpected effect of ATP on the ratio between activity and phosphoenzyme level of Na~+/K~+-ATPase in steady state

机译:ATP对稳态Na + / K〜+ -ATP酶的活性和磷酶水平的比例的意外效果

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摘要

According to the Albers-Post model the hydrolysis of ATP catalyzed by the Na+/K+-ATPase requires the sequential formation of at least two conformers of a phosphoenzyme (E1P and E2P), followed by the K+-stimulated hydrolysis of E2P. In this paper we show that this model is a particular case of a more general class of models in all of which the ratio between ATPase activity (ν) and total phosphoenzyme level (EP) in steady state is determined solely by the rate constants of interconversion between phosphoconformers and of dephosphorylation. Since these are thought to be unaffected by ATP, the substrate curves for ATPase activity and EP should be identical in shape so that the ratio ν/EP ought to be independent of the concentration of ATP. We tested this prediction by parallel measurements of ν and EP as a function of [ATP] in the absence or presence of non-limiting concentrations of K+, Rb+ or NH4+. In the absence of K+ or its congeners, both curves followed Michaelis-Menten kinetics, with almost identical Km values (0.16 μM) so that ν/EP remained independent of [ATP]. In the presence of either K+, Rb+ or NH4+, ν and EP increased with [ATP] long the sum of two Michaelis-Menten equations. The biphasic response of ν is well known but, to the best of our knowledge, our results are the first demonstration that the response of EP to [ATP] is also biphasic. Under these conditions, the ratio ν/EP increased with [ATP] from 19. to 40.1 s?1 along a hyperbola that was half-maximal at 9.5 μM. To preserve the validity of the current model it seems necessary to assume that ATP acts on the E1P ? E2P transition and/or on the rate of hydrolysis of E2P. The latter possibility was ruled out. We also found that to fit the Albers-Post model to our data, the rate constant for K+ deocclussion from E2 has to be about 10-times higher than that reported from measurements of partial reactions. The results indicate that the Albers-Post model quantitatively predicts the experimental behavior of the Na+-ATPase activity but is unable to do this for the Na+/K+-ATPase activity, unless additional and yet unproved hypothesis are included.
机译:根据Albers-Post模型,Na + / k + -ATPase催化的ATP水解需要磷酶(E1P和E2P)的至少两个相符的顺序形成,然后是E2P的k + + + + + + + + +纯化的水解。在本文中,我们表明,该模型是在稳定状态下的所有常见型血液酶和总磷酸酶水平(EP)之间的所有型号的特定情况,其中仅通过互连的速率常数来确定磷酸织物器和去磷酸化之间。由于这些被认为不受ATP的影响,因此ATPase活性和EP的衬底曲线应以形状相同,使得比率ν/ EP应该与ATP的浓度无关。我们在不存在或存在非限制性浓度的K +,Rb +或NH 4 +的情况下,通过并行测量的并行测量通过并并联测量预测。在没有K +或其同型器的情况下,两条曲线均匀均匀,几乎相同的KM值(0.16μm),使得ν/ EP保持独立于[ATP]。在K +,Rb +或NH 4 +,χ和ep的存在下,与[ATP]长的两个Michaelis-Menten方程的总和增加。 ν的双相反应是众所周知的,但据我们所知,我们的结果是EP对[ATP]的反应也是双相的第一个演示。在这些条件下,比率ν/ EP从19.从19.至40.1秒的沿高曲面增加,比例为9.5μm。为了保留当前模型的有效性,似乎需要假设ATP在E1P上行动? E2P过渡和/或e2p水解速率。后一种可能性被排除出来。我们还发现,将Albers-Post模型适合我们的数据,来自E2的K + Deoclussion的速率常数必须比从部分反应的测量报告的高度高约10倍。结果表明,阿尔伯斯柱模型定量地预测了Na + -AtPase活性的实验行为,但是不能为Na + / K + -ATPase活性做到这一点,除非包括额外的和尚未成本的假设。

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