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温度和pH对大鼠刷状缘膜囊泡中磷酸盐转运的影响。

Effect of temperature and pH on phosphate transport through brush border membrane vesicles in rats.

作者信息

Brunette M G, Beliveau R, Chan M

出版信息

Can J Physiol Pharmacol. 1984 Feb;62(2):229-34. doi: 10.1139/y84-034.

Abstract

The kinetics of sodium gradient dependent phosphate uptake by the renal brush border membrane vesicles of the rat have ben studied under various conditions of temperature and pH. From 7 to 30 degrees C the Lineweaver-Burk plots are linear, and the apparent Km progressively increases from 54 to 91 microM. Above 30 degrees C, the apparent Km continues to increase to reach 135 microM at 40 degrees C, but a break is observed in the Lineweaver-Burk plots at the substrate concentration of 300 microM. The existence of this break, confirmed by the Eadie-Hofstee plot supports the hypothesis of a dual mechanism of phosphate transport, one for low concentrations of substrate with a Km of 100 microM and the other for high concentrations with a Km of approximately 240 microM. When the two components of the Eadie-Hofstee plot are analyzed according to a nonlinear regression program, these two values of Km become 70 microM and 1.18 mM, respectively. The Vmax continuously increases with temperature. However, the Arrhenius plot (In Vmax vs. 1/TK) shows an abrupt discontinuity at 23 degrees C. pH experiments were performed at 35 degrees C. In the absence of a proton gradient, increasing the pH from 6.5 to 7.5 and 8.5 decreases the apparent Km from 341 to 167 and 94 microM, respectively. When only the divalent form of phosphate is considered as the substrate, the apparent Km does not vary anymore with the pH and remains around the mean value of 105 microM. The uniformity of the apparent Km for the total phosphate uptake, when only the divalent phosphate is considered as being the substrate, suggests that this divalent form is the only one which is transported. Whatever the substrate considered, total phosphate or divalent phosphate, the highest Vmax is obtained at pH 7.5 which probably approximates the optimum pH inside the vesicles for the phosphate uptake.

摘要

在不同温度和pH条件下,对大鼠肾刷状缘膜囊泡中钠梯度依赖性磷酸盐摄取的动力学进行了研究。在7至30摄氏度范围内,Lineweaver-Burk图呈线性,表观Km从54微摩尔逐渐增加到91微摩尔。高于30摄氏度时,表观Km继续增加,在40摄氏度时达到135微摩尔,但在底物浓度为300微摩尔时,Lineweaver-Burk图出现中断。Eadie-Hofstee图证实了这种中断的存在,支持了磷酸盐转运双重机制的假设,一种机制针对低浓度底物,Km为100微摩尔,另一种机制针对高浓度底物,Km约为240微摩尔。当根据非线性回归程序分析Eadie-Hofstee图的两个成分时,这两个Km值分别变为70微摩尔和1.18毫摩尔。Vmax随温度持续增加。然而,阿伦尼乌斯图(ln Vmax对1/TK)在23摄氏度时显示出突然的不连续性。在35摄氏度下进行了pH实验。在没有质子梯度的情况下,将pH从6.5提高到7.5和8.5,表观Km分别从341微摩尔降至167微摩尔和94微摩尔。当仅将二价形式的磷酸盐视为底物时,表观Km不再随pH变化,保持在105微摩尔左右的平均值。当仅将二价磷酸盐视为底物时,总磷酸盐摄取的表观Km的一致性表明这种二价形式是唯一被转运的形式。无论考虑的底物是总磷酸盐还是二价磷酸盐,在pH 7.5时获得最高的Vmax,这可能最接近囊泡内磷酸盐摄取的最佳pH。

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