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与钾离子结合到Na⁺/K⁺-ATP酶以及从该酶上释放相关的构象变化动力学

Kinetics of conformational changes associated with potassium binding to and release from Na+/K(+)-ATPase.

作者信息

Pratap P R, Palit A, Grassi-Nemeth E, Robinson J D

机构信息

Department of Physics and Astronomy, University of North Carolina at Greensboro 27412-5001, USA.

出版信息

Biochim Biophys Acta. 1996 Dec 4;1285(2):203-11. doi: 10.1016/s0005-2736(96)00162-9.

Abstract

The Na+/K(+)-ATPase functions in cells to couple energy from the hydrolysis of ATP to the transport Na+ out and K+ in. The fluorescent probe IAF (iodoacetamidofluorescein) covalently binds to this enzyme, reporting conformational changes without inhibiting enzyme activity. This paper describes experiments using dog kidney enzyme labeled with IAF to examine kinetics of conformational changes resulting from added Na+ and K+, measured in terms of steady-state and stopped-flow fluorescence changes. Kinetics of these fluorescence changes were examined as a function of temperature from two initial conditions: (a) enzyme in the high-fluorescence form (E(high)) was rapidly mixed with varying [K+]; and (b) enzyme in the low-fluorescence form (E(low)) was rapidly mixed with varying [ATP]. These experiments showed: (1) The rate constant for the fluorescence change from E(high) to E(low) was much larger than that for the opposite transition, E(low) to E(high); (2) the apparent free energy of activation (Ea(app)) for the two transitions were different (as estimated from Arrhenius plots); (3) under steady-state conditions, IAF fluorescence did not change when ATP was added to E(low)(K+) in the absence of Na+; (4) the apparent free energy of activation was independent of [K+] for the E(high) to E(low) transition (at 16.4 kcal/mol) but increased with [ATP] for the E(low) to E(high) transition; (5) Ea(app) for the E(low) to E(high) transition with 1 mM ATP was approximately the same as that in the absence of ATP (34 kcal/mol). These results can be interpreted as: (i) in the transition from E(low) to E(high), IAF reported a conformational change that occurred after K+ release to the intracellular side and which is involved in Na+ binding; (ii) Ea(app) increased with [ATP], while increasing the entropy of the transition state. Thus, ATP appeared to destabilize the enzyme during the transition from E(low) to E(high).

摘要

钠钾ATP酶在细胞中发挥作用,将ATP水解产生的能量与钠离子的输出和钾离子的输入相偶联。荧光探针IAF(碘乙酰氨基荧光素)与该酶共价结合,可报告构象变化而不抑制酶活性。本文描述了使用用IAF标记的犬肾酶进行的实验,以研究由添加的钠离子和钾离子引起的构象变化动力学,通过稳态和停流荧光变化来测量。这些荧光变化的动力学作为温度的函数,从两个初始条件进行了研究:(a)高荧光形式的酶(E(high))与不同浓度的[K+]快速混合;(b)低荧光形式的酶(E(low))与不同浓度的[ATP]快速混合。这些实验表明:(1)从E(high)到E(low)的荧光变化速率常数远大于相反转变(从E(low)到E(high))的速率常数;(2)两个转变的表观活化自由能(Ea(app))不同(根据阿仑尼乌斯图估计);(3)在稳态条件下,当在没有钠离子的情况下将ATP添加到E(low)(K+)时,IAF荧光没有变化;(4)对于从E(high)到E(low)的转变,表观活化自由能与[K+]无关(为16.4千卡/摩尔),但对于从E(low)到E(high)的转变,其随[ATP]增加;(5)在1 mM ATP存在下从E(low)到E(high)转变的Ea(app)与不存在ATP时大致相同(34千卡/摩尔)。这些结果可以解释为:(i)在从E(low)到E(high)的转变中,IAF报告了一种构象变化,该变化发生在钾离子释放到细胞内侧之后,并且与钠离子结合有关;(ii)Ea(app)随[ATP]增加,同时增加了过渡态的熵。因此,在从E(low)到E(high)的转变过程中,ATP似乎使酶不稳定。

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