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Application of the principle of linked functions to ATP-driven ion pumps: kinetics of activation by ATP.

机译:链接功能原理在ATP驱动离子泵上的应用:ATP激活的动力学。

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摘要

If a ligand binds with unequal affinity to two distinct states of a protein, then the equilibrium between the two states becomes a function of the concentration of the ligand. A necessary consequence is that the ligand must also affect the forward and/or reverse rate constants for transition between the two states. For an enzyme or transport protein with such a transition as a slow step in the catalytic cycle, the overall rate also becomes a function of ligand concentration. These conclusions are independent of whether or not the ligand is a direct participant in the reaction. If it is a direct participant, then the kinetic effect arising from the principle of linked functions is distinct from the direct catalytic effect. These principles suffice to account for the biphasic response of the hydrolytic activity of ATP-driven ion pumps to the concentration of ATP, without the need to invoke more than one ATP binding site per catalytic center.
机译:如果配体以不相等的亲和力结合到蛋白质的两个不同状态,则两个状态之间的平衡将成为配体浓度的函数。必要的结果是,配体还必须影响正向和/或反向速率常数,以在两种状态之间转换。对于在催化循环中具有缓慢转变的酶或转运蛋白,总转化率也随配体浓度而变。这些结论与配体是否直接参与反应无关。如果它是直接参与者,则由链接功能原理产生的动力学作用与直接催化作用不同。这些原理足以说明ATP驱动的离子泵的水解活性对ATP浓度的双相响应,而无需在每个催化中心调用一个以上的ATP结合位点。

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