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紧密连接蛋白claudin-2的敲低可阻止WIF-B9细胞中胆小管的形成。

Knockdown of tight junction protein claudin-2 prevents bile canalicular formation in WIF-B9 cells.

作者信息

Son Seiichi, Kojima Takashi, Decaens Catherine, Yamaguchi Hiroshi, Ito Tatsuya, Imamura Masafumi, Murata Masaki, Tanaka Satoshi, Chiba Hideki, Hirata Koichi, Sawada Norimasa

机构信息

Departments of Surgery, Sapporo Medical University School of Medicine, Sapporo, Japan.

出版信息

Histochem Cell Biol. 2009 Mar;131(3):411-24. doi: 10.1007/s00418-008-0546-0. Epub 2008 Dec 16.

DOI:10.1007/s00418-008-0546-0
PMID:19084987
Abstract

The polarization of hepatocytes involves formation of functionally distinct sinusoidal (basolateral) and bile canalicular (apical) plasma membrane domains that are separated by tight junctions. Although various molecular mechanisms and signaling cascades including polarity complex proteins may contribute to bile canalicular formation in hepatocytes, the role of tight junction proteins in bile canalicular formation remains unclear. To investigate the role of the integral tight junction protein claudin-2 in bile canalicular formation, we depleted claudin-2 expression by siRNA in the polarized hepatic cell line WIF-B9 after treatment with or without phenobarbital. When WIF-B9 cells were treated with phenobarbital, claudin-2 expression and tight junction strands were markedly increased together with induction of canalicular formation with a biliary secretion function. Knockdown of claudin-2 prevented bile canalicular formation after treatment with or without phenobarbital. Furthermore, knockdown of claudin-2 caused a change from a hepatic polarized phenotype to a simple polarized phenotype, together with upregulation of pLKB1, pMAPK, pAkt and pp38 MAPK, but not pMLC, PTEN or cdc42, and an increase of intracellular vacuoles, which were present before bile canalicular formation. These results suggest that claudin-2 may affect not only the bile canalicular seal but also bile canalicular formation.

摘要

肝细胞的极化涉及形成功能上不同的窦状(基底外侧)和胆小管(顶端)质膜结构域,这些结构域由紧密连接分隔。尽管包括极性复合蛋白在内的各种分子机制和信号级联可能有助于肝细胞中胆小管的形成,但紧密连接蛋白在胆小管形成中的作用仍不清楚。为了研究整合紧密连接蛋白Claudin-2在胆小管形成中的作用,我们在用或不用苯巴比妥处理后,通过小干扰RNA(siRNA)在极化的肝细胞系WIF-B9中降低Claudin-2的表达。当用苯巴比妥处理WIF-B9细胞时,Claudin-2的表达和紧密连接链明显增加,同时诱导具有胆汁分泌功能的胆小管形成。敲低Claudin-2可防止在用或不用苯巴比妥处理后胆小管的形成。此外,敲低Claudin-2导致从肝极化表型转变为简单极化表型,同时pLKB1、pMAPK、pAkt和pp38 MAPK上调,但pMLC、PTEN或cdc42未上调,并且细胞内空泡增加,这些空泡在胆小管形成之前就已存在。这些结果表明,Claudin-2不仅可能影响胆小管的封闭,还可能影响胆小管的形成。

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