Expression and regulation of gap junctions in rat cholangiocytes

被引:51
作者
Bode, HP
Wang, LF
Cassio, D
Leite, MF
St-Pierre, MV
Hirata, K
Okazaki, K
Sears, ML
Meda, P
Nathanson, MH
Dufour, JF
机构
[1] Univ Bern, Dept Gastroenterol, Bern, Switzerland
[2] Univ Bern, Dept Clin Pharmacol, Bern, Switzerland
[3] Univ Paris 11, INSERM, U442, Paris, France
[4] UFMG, Dept Physiol & Biophys, Belo Horizonte, MG, Brazil
[5] Univ Zurich, Dept Clin Pharmacol, Zurich, Switzerland
[6] Yale Univ, Sch Med, Dept Internal Med, New Haven, CT USA
[7] Univ Geneva, Dept Morphol, Geneva, Switzerland
关键词
D O I
10.1053/jhep.2002.35274
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
Hepatocytes and other digestive epithelia exchange second messengers and coordinate their functions by communicating through gap junctions. However, little is known about interceUtdar communication in cholangiocytes. The aim of this study was to examine expression and regulation of gap junctions in cholangiocytes. Connexin expression was determined by confocal immunofluorescence in rat bile ducts and in normal rat cholangiocyte (NRC) cells, a polarized cholangiocyte cell line. Intercellular Ca2+ signaling was monitored by fluorescent microscopy. Microinjection studies assessed regulation of gap junction permeability in NRC cells and in SKHep1 cells, a liver-derived cell line engineered to express connexin 43. Immunochemistry showed that cholangiocytes from normal rat liver as well as the NRC cells express connexin 43. Localization of apical, basolateral, and tight junction proteins confirmed that NRC cells are well polarized. Apical exposure to ATP induced Ca2+ oscillations that were coordinated among neighboring NRC cells, and inhibition of gap junction conductance desynchronized the Ca2+ oscillations. NRC cells transfected with a connexin 43 antisense were significantly less coupled. Transcellular dye spreading was inhibited by activation of protein kinase A or protein kinase C. The same was observed in transfected SKHep1 cells, which expressed only connexin 43. Rat cholangiocytes and NRC cells express connexin 43, which permits synchronization of Ca2+ signals among cells. Permeability of connexin 43-gap junctions is negatively regulated by protein kinases A and C. In conclusion, cholangiocytes have the capacity for intercellular communication of second messenger signals via gap junctions in a fashion that is under hormonal control.
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页码:631 / 640
页数:10
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