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pH gradient as an additional driving force in the renal re-absorption of phosphate.

机译:pH梯度是肾脏重新吸收磷酸盐时的另一个驱动力。

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摘要

The effects of the Na+ gradient and pH on phosphate uptake were studied in brush-border membrane vesicles isolated from rat kidney cortex. The initial rates of Na(+)-dependent phosphate uptake were measured at pH 6.5, 7.5 and 8.5 in the presence of sodium gluconate. At a constant total phosphate concentration, the transport values at pH 7.5 and 8.5 were similar, but at pH 6.5 the influx was 31% of that at pH 7.5. However, when the concentration of bivalent phosphate was kept constant at all three pH values, the effect of pH was less pronounced; at pH 6.5, phosphate influx was 73% of that measured at pH 7.5. The Na(+)-dependent phosphate uptake was also influenced by a transmembrane pH difference; an outwardly directed H+ gradient stimulated the uptake by 48%, whereas an inwardly directed H+ gradient inhibited the uptake by 15%. Phosphate on the trans (intravesicular) side stimulated the Na(+)-gradient-dependent phosphate transport by 59%, 93% and 49%, and the Na(+)-gradient-independent phosphate transport by 240%, 280% and 244%, at pH 6.5, 7.5 and 8.5 respectively. However, in both cases, at pH 6.5 the maximal stimulation was seen only when the concentration of bivalent trans phosphate was the same as at pH 7.5. In the absence of a Na+ gradient, but in the presence of Na+, an outwardly directed H+ gradient provided the driving force for the transient hyperaccumulation of phosphate. The rate of uptake was dependent on the magnitude of the H+ gradient. These results indicate that: (1) the bivalent form of phosphate is the form of phosphate recognized by the carrier on both sides of the membrane; (2) protons are both activators and allosteric modulators of the phosphate carrier; (3) the combined action of both the Na+ (out/in) and H+ (in/out) gradients on the phosphate carrier contribute to regulate efficiently the re-absorption of phosphate.
机译:在从大鼠肾皮质分离的刷状边界膜囊泡中研究了Na +梯度和pH对磷酸盐吸收的影响。在葡萄糖酸钠存在下,在pH 6.5、7.5和8.5时测量Na(+)依赖性磷酸盐吸收的初始速率。在恒定的总磷酸盐浓度下,pH 7.5和8.5时的转运值相似,但在pH 6.5时,流入量是pH 7.5时的31%。但是,当二价磷酸盐的浓度在所有三个pH值保持恒定时,pH的影响不太明显。在pH 6.5时,磷酸盐的流入量是在pH 7.5时测得的73%。 Na(+)依赖性磷酸盐的摄取也受到跨膜pH差异的影响;向外的H +梯度刺激摄取量为48%,而向内的H +梯度抑制摄取量为15%。反式(囊内)侧的磷酸盐刺激Na(+)梯度依赖性磷酸盐转运增加了59%,93%和49%,而Na(+)梯度非依赖性磷酸盐转运增加了240%,280%和244 %,分别在pH 6.5、7.5和8.5。但是,在这两种情况下,仅在pH值为6.5时,才看到最大的刺激作用。在没有Na +梯度的情况下,但在有Na +的情况下,向外定向的H +梯度为磷酸盐的瞬时过度富集提供了驱动力。摄取速率取决于H +梯度的大小。这些结果表明:(1)磷酸盐的二价形式是被膜两面的载体识别的磷酸盐形式; (2)质子既是磷酸盐载体的活化剂又是变构调节剂; (3)Na +(出/入)和H +(出/入)梯度对磷酸盐载体的联合作用有助于有效调节磷酸盐的重吸收。

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