Defective small intestinal anion secretion, dipeptide absorption, and intestinal failure in suckling NBCe1-deficient mice

被引:0
作者
Qin Yu
Xuemei Liu
Yongjian Liu
Brigitte Riederer
Taolang Li
De-An Tian
Biguang Tuo
Gary Shull
Ursula Seidler
机构
[1] Hannover Medical School,Department of Gastroenterology
[2] Tongji Hospital,Department of Gastroenterology
[3] Huazhong University of Science & Technology,Department of Gastroenterology
[4] Zunyi Medical College,Department of Gastrointestinal Surgery
[5] Zunyi Medical College,Department of of Molecular Genetics
[6] University of Cincinnati,undefined
来源
Pflügers Archiv - European Journal of Physiology | 2016年 / 468卷
关键词
Bicarbonate; pH; regulation; Anion exchange; PEPT-1; Sodium–bicarbonate cotransporter;
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学科分类号
摘要
The electrogenic Na+HCO3− cotransporter NBCe1 (Slc4a4) is strongly expressed in the basolateral enterocyte membrane in a villous/surface predominant fashion. In order to better understand its physiological function in the intestine, isolated mucosae in miniaturized Ussing chambers and microdissected intestinal villi or crypts loaded with the fluorescent pH-indicator BCECF were studied from the duodenum, jejunum, and colon of 14- to 17-days-old slc4a4-deficient (KO) and WT mice. NBCe1 was active in the basal state in all intestinal segments under study, most likely to compensate for acid loads imposed upon the enterocytes. Upregulation of other basolateral base uptake mechanism occurs, but in a segment-specific fashion. Loss of NBCe1 resulted in severely impaired Cl− and fluid secretory response, but not HCO3− secretory response to agonist stimulation. In addition, NBCe1 was found to be active during transport processes that load the surface enterocytes with acid, such as Slc26a3 (DRA)-mediated luminal Cl−/HCO3− exchange or PEPT1-mediated H+/dipeptide uptake. Possibly because of the high energy demand for hyperventilation in conjunction with the fluid secretory and nutrient absorptive defects and the relative scarcity of compensatory mechanisms, NBCe1-deficient mice developed progressive jejunal failure, worsening of metabolic acidosis, and death in the third week of life. Our data suggest that the electrogenic influx of base via NBCe1 maintains enterocyte anion homeostasis and pHi control. Its loss impairs small intestinal Cl− and fluid secretion as well as the neutralization of acid loads imposed on the enterocytes during nutrient and electrolyte absorption.
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页码:1419 / 1432
页数:13
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