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首页> 外文期刊>American Journal of Physiology >Filopodia formation via a specific Eph family member and PI3K in immortalized cholangiocytes.
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Filopodia formation via a specific Eph family member and PI3K in immortalized cholangiocytes.

机译:通过永生化胆管细胞中特定的Eph家族成员和PI3K形成丝足。

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Biliary ducts are lined with epithelial cells, which consist of at least two types of cholangiocytes, small and large. In contrast to large cholangiocytes, which are involved in secretion, the role of small cholangiocytes has not been elucidated. To address this question, we analyzed the migration-based characteristics of these cells that may help to understand their functions in vivo. Interestingly, dibutyryl cAMP induced marked filopodia formation and cdc42 activation in the normal mouse cholangiocyte (NMC)-small cell line compared with the NMC-large cell line. Analysis of members of the ephrin (Eph)A family of guidance molecules revealed a distinct subcellular distribution of EphA5 and EphA8 members: EphA8 was equally expressed by both cell types and localized subcellularly in peripheral cell membranes, whereas EphA5 was expressed predominantly in NMC-S and localized to filopodia. Moreover, cAMP-inducible filopodia formation in these cells was abrogated using EphA5 short interfering RNA. Finally, wefound that the Rho family GTPase cdc42 was activated in a manner dependent on EphA5. Wortmannin, a specific inhibitor of phosphotidylinositol 3-kinase (PI3K), abolished the activation of cdc42 dependent on EphA5, suggesting the involvement of PI3K in the EphA5-cdc42 pathway. Together, our findings suggest a cAMP-EphA5-cdc42-dependent regulation of small cholangiocyte migration, which are anticipated to facilitate the understanding of the nature of cholangiocytes and to explain certain general aspects of cAMP-cdc42 activation signaling with regard to cell morphogenesis.
机译:胆管衬有上皮细胞,其由至少两种类型的胆管细胞组成,即大小的。与参与分泌的大胆管细胞相反,小胆管细胞的作用尚未阐明。为了解决这个问题,我们分析了这些细胞基于迁移的特征,这可能有助于了解其体内功能。有趣的是,与NMC大细胞系相比,正常小鼠胆管细胞(NMC)小细胞系中的二丁酰cAMP诱导了明显的丝足伪足形成和cdc42激活。 ephrin(Eph)A家族的指导分子成员的分析显示,EphA5和EphA8成员的亚细胞分布明显:两种细胞类型均表达EphA8,并且在周围细胞膜中亚细胞定位,而EphA5主要在NMC-S中表达并定位于丝状伪足。此外,使用EphA5短干扰RNA消除了这些细胞中cAMP诱导的丝状伪足的形成。最后,我们发现Rho家族GTPase cdc42以依赖EphA5的方式被激活。 Wortmannin,一种磷酸磷酸肌醇3激酶(PI3K)的特异性抑制剂,废除了依赖于EphA5的cdc42的激活,提示PI3K参与EphA5-cdc42途径。在一起,我们的发现表明小胆管细胞迁移的cAMP-EphA5-cdc42依赖性调节,预计将促进对胆管细胞性质的理解,并解释关于细胞形态发生的cAMP-cdc42激活信号的某些一般方面。

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