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在小鼠近端小管细胞中,碳酸氢钠协同转运蛋白kNBC1中Ser(982)的磷酸化作用使HCO(3)(-)与Na(+)的化学计量比从3:1转变为2:1。

Phosphorylation of Ser(982) in the sodium bicarbonate cotransporter kNBC1 shifts the HCO(3)(-) : Na(+) stoichiometry from 3 : 1 to 2 : 1 in murine proximal tubule cells.

作者信息

Gross E, Hawkins K, Pushkin A, Sassani P, Dukkipati R, Abuladze N, Hopfer U, Kurtz I

机构信息

Department of Urology, Case Western Reserve University and VA Medical Center, Cleveland, OH 44106, USA.

出版信息

J Physiol. 2001 Dec 15;537(Pt 3):659-65. doi: 10.1111/j.1469-7793.2001.00659.x.

Abstract
  1. Adenosine 3',5'-cyclic monophosphate (cAMP) modulates proximal tubule sodium and bicarbonate absorption by decreasing the rate of apical Na(+)-H(+) exchange and basolateral sodium bicarbonate efflux, through activation of protein kinase A (PKA). The electrogenic sodium bicarbonate cotransporter kNBC1 mediates basolateral sodium and bicarbonate efflux in the proximal tubule by coupling the transport of 1 Na(+) cation to that of 3 HCO(3)(-) anions. In this work we studied the effects of cAMP on the function of kNBC1 expressed heterologously in a proximal tubule cell line. 2. A mouse renal proximal tubule cell line, deficient in electrogenic sodium bicarbonate cotransport function, was transfected with kNBC1. Cells were grown on a permeable support to confluence, mounted in an Ussing chamber and permeabilized apically with amphotericin B. Current through the cotransporter was isolated as the difference current due to the reversible inhibitor dinitrostilbene disulfonate. The HCO(3)(-) : Na(+) stoichiometry of kNBC1 was calculated from its reversal potential by measuring the current-voltage relationships of the cotransporter at different Na(+) concentration gradients. 3. Addition of the potent cAMP agonist 8-Br-cAMP caused the stoichiometry of kNBC1 to shift from 3 HCO(3)(-) : 1 Na(+) to 2 HCO(3)(-) : 1 Na(+). Pretreatment of the cells with the PKA inhibitor H-89 abolished the effect of the agonist on the stoichiometry change. Replacing Ser(982) at the C-terminus consensus PKA phosphorylation site with alanine resulted in a failure of PKA to phosphorylate the transporter and induce a stoichiometry shift. 4. Our data indicate that cAMP modulates the stoichiometry of kNBC1 through activation of PKA. The change in stoichiometry from 3 : 1 to 2 : 1 is predicted to cause a shift in the direction of basolateral membrane sodium bicarbonate transport from efflux to influx. Ser(982) in the C-terminus of kNBC1 is a target for PKA phosphorylation. This is the first example of modulation of the stoichiometry of a membrane transporter by phosphorylation.
摘要
  1. 3',5'-环磷酸腺苷(cAMP)通过激活蛋白激酶A(PKA),降低顶端Na(+)-H(+)交换速率和基底外侧碳酸氢钠外流速率,从而调节近端小管钠和碳酸氢盐的重吸收。电中性钠-碳酸氢根共转运体kNBC1通过将1个Na(+)阳离子的转运与3个HCO(3)(-)阴离子的转运偶联,介导近端小管基底外侧钠和碳酸氢盐的外流。在本研究中,我们研究了cAMP对在近端小管细胞系中异源表达的kNBC1功能的影响。2. 将缺乏电中性钠-碳酸氢根共转运功能的小鼠肾近端小管细胞系转染kNBC1。细胞在可渗透支持物上生长至汇合,安装在尤斯灌流小室中,并用两性霉素B进行顶端通透处理。通过共转运体的电流通过可逆抑制剂二硝基芪二磺酸盐作为差电流分离出来。通过在不同Na(+)浓度梯度下测量共转运体的电流-电压关系,根据其反转电位计算kNBC1的HCO(3)(-) : Na(+)化学计量比。3. 添加强效cAMP激动剂8-溴-cAMP导致kNBC1的化学计量比从3 HCO(3)(-) : 1 Na(+)转变为2 HCO(3)(-) : 1 Na(+)。用PKA抑制剂H-89预处理细胞消除了激动剂对化学计量比变化的影响。将C端共有PKA磷酸化位点的Ser(982)替换为丙氨酸导致PKA无法磷酸化转运体并诱导化学计量比转变。4. 我们的数据表明,cAMP通过激活PKA调节kNBC1的化学计量比。化学计量比从3 : 1变为2 : 1预计会导致基底外侧膜钠-碳酸氢盐转运方向从外流转变为内流。kNBC1 C端的Ser(982)是PKA磷酸化的靶点。这是通过磷酸化调节膜转运体化学计量比的首个实例。

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