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首页> 外文期刊>The Journal of general physiology >Effects of altering the ATP/ADP ratio on pump-mediated Na/K and Na/Na exchanges in resealed human red blood cell ghosts.
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Effects of altering the ATP/ADP ratio on pump-mediated Na/K and Na/Na exchanges in resealed human red blood cell ghosts.

机译:改变ATP / ADP比例对重新密封的人红细胞幽灵中泵介导的Na / K和Na / Na交换的影响。

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摘要

Resealed human red blood cell ghosts were prepared to contain a range of ADP concentrations at fixed ATP concentrations and vice versa. ATP/ADP ratios ranging from approximately 0.2 to 50 were set and maintained (for up to 45 min) in this system. ATP and ADP concentrations were controlled by the addition of either a phosphoarginine- or phosphocreatine-based regenerating system. Ouabain-sensitive unidirectional Na efflux was determined in the presence and absence of 15 mM external K as a function of the nucleotide composition. Na/K exchange was found to increase to saturation with ATP (K 1/2 approximately equal to 250 microM), whereas Na/Na exchange (measured in K-free solutions) was a saturating function of ADP (K 1/2 approximately equal to 350 microM). The elevation of ATP from approximately 100 to 1,800 microM did not appreciably affect Na/Na exchange. In the presence of external Na and a saturating concentration of external K, increasing the ADP concentration at constant ATP was found to decrease ouabain-sensitive Na/K exchange. The decreased Na/K exchange that still remained when the ADP/ATP ratio was high was stimulated by removal of external Na. Assuming that under normal substrate conditions the reaction cycle of the Na/K pump is rate-limited by the conformational change associated with the release of occluded K [E2 X (K) X ATP---|-E1 X ATP + K], increasing ADP inhibits the rate of these transformations by competition with ATP for the E2(K) form. A less likely alternative is that inhibition is due to competition with ATP at the high-affinity site (E1). The acceleration of the Na/K pump that occurs upon removing external Na at high levels of ADP evidently results from a shift in the forward direction of the transformation of the intermediates involved with the release of occluded Na from E1P X (Na). Thus, the nucleotide composition and the Na gradient can modulate the rate at which the Na/K pump operates.
机译:重新密封的人类红细胞鬼影被制备为在固定的ATP浓度下包含一定范围的ADP浓度,反之亦然。在此系统中,设置并保持ATP / ADP的比率在0.2到50之间(最多45分钟)。通过添加基于磷酸精氨酸或磷酸肌酸的再生系统来控制ATP和ADP的浓度。在存在和不存在15 mM外部K的情况下,根据核苷酸组成确定对哇巴因敏感的单向Na外排。发现Na / K交换增加了ATP的饱和度(K 1/2大约等于250 microM),而Na / Na交换(在无K溶液中测量)是ADP的饱和功能(K 1/2大约等于250 microM)。至350 microM)。 ATP从大约100升高到1,800 microM不会明显影响Na / Na交换。在存在外部Na和饱和K的情况下,发现在恒定ATP下提高ADP浓度会降低哇巴因敏感的Na / K交换。通过去除外部Na刺激了当ADP / ATP比例高时仍然保留的Na / K交换降低。假设在正常的底物条件下,Na / K泵的反应周期受与释放的K [E2 X(K)X ATP --- | -E1 X ATP + K]相关的构象变化的速率限制。 ,增加ADP可以通过与ATP竞争E2(K)形式来抑制这些转化的速率。一种不太可能的替代方法是抑制作用是由于在高亲和力位点(E1)与ATP竞争所致。 Na / K泵加速发生在高水平的ADP上去除外部Na时,显然是由于中间体的转化正向移位所致,该中间体涉及从E1P X(Na)释放被吸附的Na。因此,核苷酸组成和Na梯度可以调节Na / K泵工作的速率。

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