Rood R P, Emmer E, Wesolek J, McCullen J, Husain Z, Cohen M E, Braithwaite R S, Murer H, Sharp G W, Donowitz M
Tufts University School of Medicine, Boston, Massachusetts.
J Clin Invest. 1988 Sep;82(3):1091-7. doi: 10.1172/JCI113665.
Brush-border vesicles purified from rabbit ileal villus cells were used to evaluate how Ca++/calmodulin (CaM) regulates the neutral linked NaCl absorptive process, part of which is a Na+/H+ exchanger. After freezing and thawing to allow incorporation of macromolecules into the vesicles, the effect of Ca++/CaM on brush-border Na+ uptake with an acid inside pH gradient, and on Na+/H+ exchange was determined. Freezing and thawing vesicles with 0.85 microM free Ca++ plus 5 microM exogenous CaM failed to alter Na+/H+ exchange as did the addition of exogenous ATP plus an ATP regenerating system, which was sufficient to elevate intravesicular ATP to 47 microM from a basal level of 0.4 microM. However, the combination of Ca++/CaM plus ATP inhibited Na+ uptake in the presence of an acid inside pH gradient and inhibited Na+/H+ exchange, while Na+ uptake in the absence of a pH gradient was not altered. This effect required a hydrolyzable form of ATP, and did not occur when the nonhydrolyzable ATP analogue, AMP-PNP, replaced ATP. Under the identical intravesicular conditions used for the transport studies, Ca++ (0.85 microM) plus exogenous CaM (5 microM), in the presence of magnesium plus ATP, increased phosphorylation of five brush-border peptides. These data are consistent with Ca++/CaM acting via phosphorylation to regulate the ileal brush-border Na+/H+ exchanger.
从兔回肠绒毛细胞中纯化得到的刷状缘小泡,用于评估Ca++/钙调蛋白(CaM)如何调节中性连接的NaCl吸收过程,其中部分过程是Na+/H+交换体。在进行冻融处理以使大分子掺入小泡后,测定了Ca++/CaM对在内部呈酸性pH梯度情况下刷状缘Na+摄取以及对Na+/H+交换的影响。用0.85微摩尔游离Ca++加5微摩尔外源性CaM进行冻融处理的小泡,与添加外源性ATP加ATP再生系统一样,未能改变Na+/H+交换,后者足以使囊泡内ATP从0.4微摩尔的基础水平升高至47微摩尔。然而,在内部呈酸性pH梯度存在的情况下,Ca++/CaM与ATP的组合抑制了Na+摄取并抑制了Na+/H+交换,而在不存在pH梯度的情况下Na+摄取未发生改变。这种效应需要可水解形式的ATP,当不可水解的ATP类似物AMP-PNP替代ATP时则不会出现。在用于转运研究的相同囊泡内条件下,在镁和ATP存在的情况下,Ca++(0.85微摩尔)加外源性CaM(5微摩尔)增加了五种刷状缘肽的磷酸化。这些数据与Ca++/CaM通过磷酸化作用来调节回肠刷状缘Na+/H+交换体的作用一致。