首页> 美国卫生研究院文献>Biochemical Journal >Pre-steady-state kinetic study of the effects of K+ on the partial reactions of the catalytic cycle of the plasma membrane Ca(2+)-ATPase.
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Pre-steady-state kinetic study of the effects of K+ on the partial reactions of the catalytic cycle of the plasma membrane Ca(2+)-ATPase.

机译:K +对质膜Ca(2 +)-ATPase催化循环的部分反应的稳态前动力学研究。

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摘要

The effects of 100 mM K+ on the partial reactions that take place during ATP hydrolysis on the calcium ion-dependent ATPase from plasma membrane (PM-Ca(2+)-ATPase) were studied at 37 degrees C on fragmented intact membranes from pig red cells by means of a rapid chemical quenching technique. At 10 microM [gamma-32P]ATP plus non-limiting concentrations of Ca2+ and Mg2+, K+ increased the k(app) of formation by 140% to 84 11 s-1 and the steady-state level of phosphoenzyme (EP) by 25% to 3.4 0.17 pmol/mg of protein. If added together with [gamma-32P]ATP at the beginning of phosphorylation, K+ was much less effective than if added earlier, indicating that it did not act on the phosphorylation reaction. Measurements of the E2 --> E1 transition by phosphorylation showed that in medium with Ca2+ and Mg2+, K+ increased the k(app) of the transition by 55% to 14 3 s-1 and the apparent concentration of E1 by 45%, suggesting that this may be the cause of the increased rate of phosphorylation observed in enzyme preincubated with K+. The presence of K+ did not change the slow decay of EP without Mg2+ but activated the decay of EP made with Mg2+, increasing its k(app) by 60% to 91 12 s-1. In contrast with observations made during phosphorylation, if added at the beginning of dephosphorylation K+ was fully effective in favouring decomposition of EP made in medium containing no K+. In the presence of either 3mM ATP or 3 mM ATP plus calmodulin, which activate hydrolysis of CaE2P, the effect of K+ on dephosphorylation was conserved. Because the sites for K+ are intracellular and the concentration of K+ in normal red cells is above 100 mM, the effects described here must be taken into account to describe the catalytic cycle of the PM-Ca(2+)-ATPase under physiological conditions.
机译:研究了100 mM K +对ATP水解过程中发生的部分反应对质膜上钙离子依赖性ATPase(PM-Ca(2 +)-ATPase)的部分反应的影响,该反应在37°C下对来自猪红的完整碎片膜进行了研究细胞通过快速化学淬灭技术。在10 microM [γ-32P] ATP加上非限制性浓度的Ca2 +和Mg2 +时,K +使形成的k(app)增加140%,达到84 11 s-1,磷酸酶(EP)的稳态水平提高25 %至3.4 0.17 pmol / mg蛋白质。如果在磷酸化开始时与[γ-32P] ATP一起加入,则K +的效力要比早先加入的要低得多,这表明它对磷酸化反应没有作用。通过磷酸化测量E2-> E1跃迁表明,在具有Ca2 +和Mg2 +的介质中,K +使跃迁的k(app)增加了55%,达到14 3 s-1,表观E1的浓度增加了45%,这表明这可能是在K +预孵育的酶中观察到的磷酸化速率增加的原因。 K +的存在不会改变没有Mg2 +的EP的缓慢衰减,但会激活由Mg2 +制成的EP的衰减,从而将其k(app)增加60%至91 12 s-1。与在磷酸​​化过程中观察到的相反,如果在去磷酸化开始时添加K +,则对促进在不含K +的培养基中制备的EP的分解非常有效。在激活CaE2P水解的3mM ATP或3mM ATP加钙调蛋白的存在下,保留了K +对脱磷酸作用的影响。因为K +的位点在细胞内,并且正常红细胞中K +的浓度超过100 mM,所以必须考虑此处描述的作用,以描述生理条件下PM-Ca(2 +)-ATPase的催化循环。

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