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首页> 外文期刊>European Journal of Cell Biology: Journal of Deutsche Gesellschaft fur Elektronenmikroskopie: Journal of Deutsche Gesellschaft fur Zellbiologie >Loss of Bicc1 impairs tubulomorphogenesis of cultured IMCD cells by disrupting E-cadherin-based cell-cell adhesion
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Loss of Bicc1 impairs tubulomorphogenesis of cultured IMCD cells by disrupting E-cadherin-based cell-cell adhesion

机译:Bicc1的损失通过破坏基于E-钙粘着蛋白的细胞粘附而损害了IMCD细胞的微管形态发生

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摘要

The Bicaudal-C (Bic-C) gene was originally discovered in Drosophila melanogaster. The gene product Bic-C is thought to serve as an RNA-binding molecule targeting diverse proteins at the post-transcriptional level. Recent research has shown this gene to be conserved in many species, from Caenorhabditis elegans to humans. Disruption of this protein can disturb the normal migration direction of the anterior follicle cell of Drosophila oocytes, while mutation of a mouse Bicc1 (a mouse homologue of Bic-C) results in phenotypes mimicking human hereditary polycystic kidney disease (PKD). However, the cellular function of Bicc1 gene products in mammalian systems remains largely unknown. In this study, we established stable IMCD (mouse inner medullary collecting duct) cell lines, in which Bicc1 was silenced by short hairpin RNA inhibition (shRNA). We show that inhibition of Bicc1 disrupted normal tubulomorphogenesis and induced cystogenesis of IMCD cells grown in three dimensional cultures. To determine what factors contributed to the defect, we systematically examined biological changes of Bicc1-silenced IMCD cells. We found that the cells had significant defects in E-cadherin-based cell-cell adhesion, along with abnormalities in actin cytoskeleton organization, cell-extracellular matrix interactions, cell proliferation, and apoptosis. These findings suggest that lack of Bicc1 leads to disruption of normal cell-cell junctions, which in turn impedes establishment of epithelial polarity. These cellular defects may initiate abnormal tubulomorphogenesis and cystogenesis of IMCD cells grown in vitro. The observation of aberrant cellular behaviors in Bicc1-silenced IMCD cells reveal functions for Bicc1 in renal epithelial cells and provides insight into a potential pathogenic mechanism of polycystic kidney disease. (C) 2010 Elsevier GmbH. All rights reserved.
机译:Bicaudal-C(Bic-C)基因最初是在果蝇中发现的。基因产物Bic-C被认为是在转录后水平上靶向多种蛋白质的RNA结合分子。最近的研究表明,从秀丽隐杆线虫到人类,该基因在许多物种中都是保守的。这种蛋白质的破坏会干扰果蝇卵母细胞前卵泡细胞的正常迁移方向,而小鼠Bicc1(Bic-C的小鼠同源物)的突变会导致表型模仿人类遗传性多囊肾病(PKD)。但是,Bicc1基因产物在哺乳动物系统中的细胞功能仍然未知。在这项研究中,我们建立了稳定的IMCD(小鼠内髓收集管)细胞系,其中Bicc1通过短发夹RNA抑制(shRNA)沉默。我们显示,Bicc1的抑制破坏了正常的肾小管形态发生,并诱导了在三维文化中生长的IMCD细胞的囊肿发生。为了确定导致该缺陷的因素,我们系统地检测了Bicc1沉默的IMCD细胞的生物学变化。我们发现细胞在基于E-钙粘着蛋白的细胞间粘附中具有重大缺陷,以及肌动蛋白细胞骨架组织,细胞-细胞外基质相互作用,细胞增殖和凋亡的异常。这些发现表明,Bicc1的缺乏会导致正常细胞-细胞连接的破坏,从而阻碍上皮极性的建立。这些细胞缺陷可能会启动体外培养的IMCD细胞的异常微管形态发生和囊肿发生。 Bicc1沉默的IMCD细胞中异常细胞行为的观察揭示了Bicc1在肾上皮细胞中的功能,并提供了对多囊性肾病潜在致病机制的见解。 (C)2010 Elsevier GmbH。版权所有。

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