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首页> 外文期刊>American Journal of Physiology >Deletion of the anion exchanger Slc26a4 (pendrin) decreases apical Cl(-)/HCO3(-) exchanger activity and impairs bicarbonate secretion in kidney collecting duct.
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Deletion of the anion exchanger Slc26a4 (pendrin) decreases apical Cl(-)/HCO3(-) exchanger activity and impairs bicarbonate secretion in kidney collecting duct.

机译:阴离子交换器SLC26A4(PENDRIN)的缺失降低了顶端CL( - )/ HCO3( - )交换剂活性,并在肾脏收集管道中损害碳酸氢盐分泌。

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摘要

The anion exchanger Pendrin, which is encoded by SLC26A4 (human)/Slc26a4 (mouse) gene, is localized on the apical membrane of non-acid-secreting intercalated (IC) cells in the kidney cortical collecting duct (CCD). To examine its role in the mediation of bicarbonate secretion in vivo and the apical Cl(-)/HCO(3)(-) exchanger in the kidney CCD, mice with genetic deletion of pendrin were generated. The mutant mice show the complete absence of pendrin expression in their kidneys as assessed by Northern blot hybridization, Western blot, and immunofluorescence labeling. Pendrin knockout (KO) mice display significantly acidic urine at baseline [pH 5.20 in KO vs. 6.01 in wild type (WT); P < 0.0001] along with elevated serum HCO(3)(-) concentration (27.4 vs. 24 meq/l in KO vs. WT, respectively; P < 0.02), consistent with decreased bicarbonate secretion in vivo. The urine chloride excretion was comparable in WT and KO mice. For functional studies, CCDs were microperfused and IC cells were identified by their ability to trap the pH fluorescent dye BCECF. The apical Cl(-)/HCO(3)(-) exchanger activity in B-IC and non-A, non-B-IC cells, as assessed by intracellular pH monitoring, was significantly reduced in pendrin-null mice. The basolateral Cl(-)/HCO(3)(-) exchanger activity in A-IC cells and in non-A, non-B-IC cells, was not different in pendrin KO mice relative to WT animals. Urine NH(4)(+) (ammonium) excretion increased significantly, consistent with increased trapping of NH(3) in the collecting duct in pendrin KO mice. We conclude that Slc26a4 (pendrin) deletion impairs the secretion of bicarbonate in vivo and reduces apical Cl(-)/HCO(3)(-) exchanger activity in B-IC and non-A, non-B-IC cells in CCD. Additional apical Cl(-)/HCO(3)(-) exchanger(s) is (are) present in the CCD.
机译:由SLC26A4(人)/ SLC26A4(小鼠)基因编码的阴离子交换器Pendrin被肾脏皮质收集管道(CCD)中的非酸分泌嵌入(IC)细胞的顶端膜局部化。为了检查其在体内碳酸氢盐分泌中的中介中的作用和肾脏CCD中的顶端Cl( - )/ HCO(3)( - )交换剂,产生了具有pendrin遗传缺失的小鼠。突变小鼠在其肾脏中完全没有pendrin表达,如北印迹杂交,蛋白质印迹和免疫荧光标记评估。 Pendrin敲除(KO)小鼠在基线上显示出明显的酸性尿液[野生型KO 6.01中的pH 5.20(wt); P <0.0001]除了升高的血清HCO(3)( - )浓度(分别为27.4与kO vs.22meq / l; P <0.02),与体内碳酸氢盐分泌减少一致。尿氯排泄在WT和KO小鼠中相当。对于功能性研究,CCD是微熔酶的微生物和IC细胞通过其捕获pH荧光染料BCECF的能力来鉴定IC细胞。通过细胞内pH监测评估,B-IC和非A,非B-IC细胞中的顶端Cl( - - )/ HCO(3)( - )交换剂活性在Pendrin-Null小鼠中显着降低。 A-IC细胞中的基石Cl( - - )/ HCO(3)( - )交换剂活性和非A非B-IC细胞相对于WT动物在Pendrin Ko小鼠中没有不同。尿NH(4)(+)(铵)排泄显着增加,随着在Pendrin Ko小鼠中的收集管道中的NH(3)增加而持续。我们得出结论,SLC26A4(PENDRIN)缺失损害在体内碳酸氢盐的分泌,并在CCD中减少B-IC和非A非B-IC细胞中的顶端Cl( - )/ HCO(3)( - )交换机活性。额外的顶端Cl( - )/ HCO(3)( - )交换器是在CCD中存在的(是)。

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