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钙敏感受体:对亨氏袢升支粗段电解质转运的调节

Calcium-sensing receptor: regulation of electrolyte transport in the thick ascending limb of Henle's loop.

作者信息

Desfleurs E, Wittner M, Simeone S, Pajaud S, Moine G, Rajerison R, Di Stefano A

机构信息

URA CNRS 1859, Département de Biologie Cellulaire et Moléculaire, CEA Saclay, Gif-sur-Yvette, France.

出版信息

Kidney Blood Press Res. 1998;21(6):401-12. doi: 10.1159/000025892.

Abstract

A calcium-sensing receptor (CaR) has functionally been described in the cortical thick ascending limb of Henle's loop (CTAL) of rat and mouse. This G protein-coupled receptor activates phospholipase C and increases the intracellular Ca2+ concentration. We observed that in the mouse CTAL cAMP formation, induced by 10(-8) mol/l AVP, was inhibited by more than 90% when the extracellular Ca2+ concentration ([Ca2+]e) was increased from 0.5 to 3 mmol/l. Measurements of transepithelial potential difference (PDte) in rat and mouse CTAL and medullary thick ascending limb (mTAL) segments and of transepithelial ion net fluxes in the mouse CTAL (isotonic perfusion conditions: 150 mmol/l NaCl in the lumen and bath) showed that an increase in the [Ca2+]e had no effect on basal and arginine vasopressin (AVP, 10(-10) mol/l)-stimulated transepithelial PDte, NaCl and Mg2+ transport. However, Ca2+ reabsorption was strongly inhibited by increased [Ca2+]e. Addition of AVP reversed this inhibitory effect of increased [Ca2+]e. Under hypotonic perfusion conditions (lumen 50 mmol/l NaCl; bath 150 mmol/l NaCl), a high [Ca2+]e induced a 50% decrease in Mg2+ reabsorption which was restored by AVP. Under these conditions, the effects on Ca2+ transport described above were still observed. In conclusion, activation of the CaR in the mouse TAL has no effect on basal and AVP-stimulated transepithelial NaCl reabsorption despite its large inhibitory effect on cAMP synthesis. The CaR, however, could play a role in the regulation of transepithelial Ca2+ and Mg2+ reabsorption.

摘要

在大鼠和小鼠的髓袢皮质厚升支(CTAL)中,已从功能上描述了一种钙敏感受体(CaR)。这种G蛋白偶联受体激活磷脂酶C并增加细胞内Ca2+浓度。我们观察到,当细胞外Ca2+浓度([Ca2+]e)从0.5 mmol/l增加到3 mmol/l时,在小鼠CTAL中,由10(-8) mol/l抗利尿激素(AVP)诱导的cAMP生成被抑制了90%以上。对大鼠和小鼠CTAL及髓质厚升支(mTAL)节段的跨上皮电位差(PDte)以及小鼠CTAL(等渗灌注条件:管腔和浴液中均为150 mmol/l NaCl)的跨上皮离子净通量的测量表明,[Ca2+]e的增加对基础和精氨酸加压素(AVP,10(-10) mol/l)刺激的跨上皮PDte、NaCl和Mg2+转运没有影响。然而,[Ca2+]e的增加强烈抑制了Ca2+重吸收。添加AVP可逆转[Ca2+]e增加的这种抑制作用。在低渗灌注条件下(管腔50 mmol/l NaCl;浴液150 mmol/l NaCl),高[Ca2+]e导致Mg2+重吸收减少50%,而AVP可使其恢复。在这些条件下,仍观察到上述对Ca2+转运的影响。总之,尽管小鼠TAL中的CaR对cAMP合成有很大的抑制作用,但它对基础和AVP刺激的跨上皮NaCl重吸收没有影响。然而,CaR可能在跨上皮Ca2+和Mg2+重吸收的调节中发挥作用。

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