Jacob P, Christiani S, Rossmann H, Lamprecht G, Vieillard-Baron D, Müller R, Gregor M, Seidler U
Department I, Eberhard-Karls University, Tübingen, Germany.
Gastroenterology. 2000 Aug;119(2):406-19. doi: 10.1053/gast.2000.9358.
BACKGROUND & AIMS: HCO(3)(-) supply to the enterocyte is rate limiting for duodenal HCO(3)(-) secretion (J(HCO3-)). This study defines the molecular nature of the major HCO(3)(-) uptake pathways in rabbit duodenocytes and investigates their physiologic significance and regulation during basal and stimulated J(HCO3-).
METHODS & RESULTS: pH gradient-driven (22)Na(+) uptake into duodenal basolateral membrane vesicles was partly HCO(3)(-) dependent, stilbene sensitive, and therefore mediated by Na(+)HCO(3)(-) cotransport, and partly HCO(3)(-) independent, Hoechst 642 sensitive, and therefore mediated by the Na(+)/H(+) exchanger isoform NHE1. Semiquantitative polymerase chain reaction (PCR) revealed high duodenal expression levels for the NBC1 isoform of the Na(+)HCO(3)(-) cotransporter gene family and NHE1. Cloning and comparison of full-length rabbit with human gastrointestinal and kidney NBC1 subtype revealed a conserved protein kinase A consensus sequence in the cytoplasmic N-terminus of the gastrointestinal NBC1. Inhibition of either Na(+)HCO(3)(-) cotransport or carbonic anhydrase reduced ouabain-sensitive J(HCO3-) in in vitro rabbit duodenal mucosae by approximately 50%, but did not affect 8-Br-cAMP-induced DeltaJ(HCO3-), suggesting cAMP-mediated up-regulation of the alternative pathway. However, inhibition of both Na(+)HCO(3)(-) cotransport and either carbonic anhydrase or NHE1 strongly reduced DeltaJ(HCO3-).
NBC1 and NHE1 are the major base importers in rabbit duodenocytes. Na(+)HCO(3)(-) cotransport and CO(2) hydration/Na(+)/H(+) exchange are equally important pathways for duodenal HCO(3)(-) supply and are up-regulated during cAMP-mediated stimulation.
向肠上皮细胞供应HCO₃⁻是十二指肠HCO₃⁻分泌(J(HCO₃⁻))的限速因素。本研究确定了兔十二指肠细胞中主要HCO₃⁻摄取途径的分子性质,并研究了它们在基础和刺激的J(HCO₃⁻)过程中的生理意义及调节机制。
pH梯度驱动的²²Na⁺摄取进入十二指肠基底外侧膜囊泡,部分依赖HCO₃⁻、对二苯乙烯敏感,因此由Na⁺HCO₃⁻共转运介导,部分不依赖HCO₃⁻、对Hoechst 642敏感,因此由Na⁺/H⁺交换体亚型NHE1介导。半定量聚合酶链反应(PCR)显示,Na⁺HCO₃⁻共转运体基因家族的NBC1亚型和NHE1在十二指肠中表达水平较高。将兔全长与人类胃肠道和肾脏NBC1亚型进行克隆和比较,发现在胃肠道NBC1的细胞质N端有一个保守的蛋白激酶A共有序列。抑制Na⁺HCO₃⁻共转运或碳酸酐酶可使体外兔十二指肠黏膜中哇巴因敏感的J(HCO₃⁻)降低约50%,但不影响8-溴-cAMP诱导的ΔJ(HCO₃⁻),提示cAMP介导替代途径的上调。然而,抑制Na⁺HCO₃⁻共转运以及碳酸酐酶或NHE1均强烈降低ΔJ(HCO₃⁻)。
NBC1和NHE1是兔十二指肠细胞中的主要碱基导入体。Na⁺HCO₃⁻共转运和CO₂水合/Na⁺/H⁺交换是十二指肠HCO₃⁻供应的同等重要途径,且在cAMP介导的刺激过程中上调。