Alternative splicing of the rat sodium/bile acid transporter changes its cellular localization and transport properties

被引:90
作者
Lazaridis, KN
Tietz, P
Wu, T
Kip, S
Dawson, PA
LaRusso, NF [1 ]
机构
[1] Mayo Med Sch Clin & Fdn, Dept Internal Med, Div Gastroenterol & Hepatol, Ctr Basic Res Digest Dis, Rochester, MN 55905 USA
[2] Mayo Med Sch Clin & Fdn, Dept Biochem & Mol Biol, Rochester, MN 55905 USA
[3] Wake Forest Univ, Bowman Gray Sch Med, Dept Internal Med Gastroenterol, Winston Salem, NC 27157 USA
关键词
D O I
10.1073/pnas.200325297
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Bile secretion involves the structural and functional interplay of hepatocytes and cholangiocytes, the cells lining the intrahepatic bile ducts. Hepatocytes actively secrete bile acids into the canalicular space and cholangiocytes then transport bile acids in a vectorial manner across their apical and basolateral plasma membranes. The initial step in the transepithelial transport of bile acids across rat cholangiocytes is apical uptake by a Na+-dependent bile acid transporter (ASBT). To date, the molecular basis of the obligate efflux mechanism for extrusion of bile acids across the cholangiocyte basolateral membrane remains unknown. We have identified an exon-2 skipped, alternatively spliced form of ASBT, designated t-ASBT, expressed in rat cholangiocytes, ileum, and kidney. Alternative splicing causes a frameshift that produces a 154-aa protein. Antipeptide antibodies detected the approximate to 19 kDa t-ASBT polypeptide in rat cholangiocytes, ileum, and kidney. The t-ASBT was specifically localized to the basolateral domain of cholangiocytes. Transport studies in Xenopus oocytes revealed that t-ASBT can function as a bile acid efflux protein. Thus, alternative splicing changes the cellular targeting of ASBT, alters its functional properties, and provides a mechanism for rat cholangiocytes and other bile acid-transporting epithelia to extrude bile acids. Our work represents an example in which a single gene appears to encode via alternative splicing both uptake and obligate efflux carriers in a bile acid-transporting epithelial cell.
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页码:11092 / 11097
页数:6
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