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钠钾离子转运三磷酸腺苷酶的无机磷酸磷酸化作用。四种反应状态。

Phosphorylation by inorganic phosphate of sodium plus potassium ion transport adenosine triphosphatase. Four reactive states.

作者信息

Post R L, Toda G, Rogers F N

出版信息

J Biol Chem. 1975 Jan 25;250(2):691-701.

PMID:122973
Abstract

Native solium and potassium adenosine triphosphatase from guinea pig kidney accepted a phosphate group from radioactive inorganic phosphate to form an acyl phosphate bond at the active site in the presence or absence of sodium ion. Magnesium ion was always required. In the presence of sodium ion and absence of adenosine triphosphate, there was no phosphorylation by inorganic phosphate. Addition of unlabeled adenosine triphosphate produced a potassium-sensitive phosphoenzyme which exchanged its phosphate-group with radioactive inorganic phosphate. The dephosphoenzyme was an intermediate in this exchange. The rate constant for dephosphorylation was about 0.05 per second. Addition of rubidium ion, a congener of potassium ion, to the potassium-sensitive phosphoenzyme produced a phosphoenzyme labeled from inorganic phosphate with a corresponding rate constant of 0.26 per s. This was a rubidium-complexed phosphoenzyme. Addition of magnesium ion to potassium-sensitive phosphoenzyme converted it into insensitive phosphoenzyme, the splitting of which was not accelerated by potassium ion or by adenosine diphosphate. Its rate constant was 0.07 per s. In the absence of sodium ion and adenosine triphosphate, inorganic phosphate was incorporated directly into a similar insensitive phosphoenzyme. In the presence of potassium ion or rubidium ion, inorganic phosphate was incorporated into a potassium-complexed or rubidium-complexed phosphoenzyme which exchanged 32-P with inorganic phosphate completely in less than 3 s. Incorporation of inorganic phosphate into a complex of the enzyme with the inhibitor, ouabain, is already described in the literature. Its rate constant was about 0.02 per s. Thus there appear to be at least four reactive states of the phosphoenzyme which equilibrate measurably with inorganic phosphate, namely, potassium-sensitive phosphoenzyme, potassium-complexed phosphoenzyme, insensitive phosphoenzyme, and ouabain phosphoenzyme. Two of these reactive states are functional intermediates in native sodium and potassium ion transport adenosine triphosphatase. The results are compatible with control of the reactivity of the active site by conformational changes in the surrounding active center and with regulation of the energy level of the phosphate group according to the kind of monovalent cation bound to the enzyme.

摘要

豚鼠肾脏中的天然钠钾三磷酸腺苷酶,无论有无钠离子存在,在镁离子始终存在的情况下,能从放射性无机磷酸盐中接受一个磷酸基团,在活性位点形成酰基磷酸键。在有钠离子而无三磷酸腺苷的情况下,无机磷酸盐不会发生磷酸化作用。加入未标记的三磷酸腺苷会产生一种对钾离子敏感的磷酸酶,它能与放射性无机磷酸盐交换其磷酸基团。脱磷酸酶是这种交换过程中的中间体。脱磷酸化的速率常数约为每秒0.05。向对钾离子敏感的磷酸酶中加入铷离子(钾离子的同族元素),会产生一种由无机磷酸盐标记的磷酸酶,其相应的速率常数为每秒0.26。这是一种铷络合磷酸酶。向对钾离子敏感的磷酸酶中加入镁离子,会将其转化为不敏感的磷酸酶,钾离子或二磷酸腺苷都不会加速其分解。其速率常数为每秒0.07。在无钠离子和三磷酸腺苷的情况下,无机磷酸盐可直接掺入一种类似的不敏感磷酸酶中。在有钾离子或铷离子存在的情况下,无机磷酸盐会掺入钾络合或铷络合的磷酸酶中,这种磷酸酶能在不到3秒的时间内与无机磷酸盐完全交换32 - P。无机磷酸盐掺入酶与抑制剂哇巴因的复合物中的情况已在文献中有所描述。其速率常数约为每秒0.02。因此,似乎至少存在四种可与无机磷酸盐进行可测量平衡的磷酸酶反应状态,即对钾离子敏感的磷酸酶、钾络合磷酸酶、不敏感的磷酸酶和哇巴因磷酸酶。其中两种反应状态是天然钠钾离子转运三磷酸腺苷酶中的功能中间体。这些结果与周围活性中心的构象变化对活性位点反应性的控制以及根据与酶结合的单价阳离子种类对磷酸基团能量水平的调节相一致。

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