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cingulin基因的破坏并不妨碍紧密连接的形成,但会改变基因表达。

Disruption of the cingulin gene does not prevent tight junction formation but alters gene expression.

作者信息

Guillemot Laurent, Hammar Eva, Kaister Christian, Ritz Jorge, Caille Dorothée, Jond Lionel, Bauer Christoph, Meda Paolo, Citi Sandra

机构信息

Department of Molecular Biology, University of Geneva, 30 Quai Ernest-Ansermet, 1211 Genève 4, Switzerland.

出版信息

J Cell Sci. 2004 Oct 15;117(Pt 22):5245-56. doi: 10.1242/jcs.01399. Epub 2004 Sep 28.

Abstract

Cingulin, a component of vertebrate tight junctions, contains a head domain that controls its junctional recruitment and protein interactions. To determine whether lack of junctional cingulin affects tight-junction organization and function, we examined the phenotype of embryoid bodies derived from embryonic stem cells carrying one or two alleles of cingulin with a targeted deletion of the exon coding for most of the predicted head domain. In homozygous (-/-) embryoid bodies, no full-length cingulin was detected by immunoblotting and no junctional labeling was detected by immunofluorescence. In hetero- and homozygous (+/- and -/-) embryoid bodies, immunoblotting revealed a Triton-soluble, truncated form of cingulin, increased levels of the tight junction proteins ZO-2, occludin, claudin-6 and Lfc, and decreased levels of ZO-1. The +/- and -/- embryoid bodies contained epithelial cells with normal tight junctions, as determined by freeze-fracture and transmission electron microscopy, and a biotin permeability assay. The localization of ZO-1, occludin and claudin-6 appeared normal in mutant epithelial cells, indicating that cingulin is not required for their junctional recruitment. Real-time quantitative reverse-transcription PCR (real-time qRT-PCR) showed that differentiation of embryonic stem cells into embryoid bodies was associated with up-regulation of mRNAs for several tight junction proteins. Microarray analysis and real-time qRT-PCR showed that cingulin mutation caused a further increase in the transcript levels of occludin, claudin-2, claudin-6 and claudin-7, which were probably due to an increase in expression of GATA-6, GATA-4 and HNF-4alpha, transcription factors implicated in endodermal differentiation. Thus, lack of junctional cingulin does not prevent tight-junction formation, but gene expression and tight junction protein levels are altered by the cingulin mutation.

摘要

cingulin是脊椎动物紧密连接的一个组成部分,包含一个头部结构域,该结构域控制其在连接处的募集以及蛋白质相互作用。为了确定连接处cingulin的缺失是否会影响紧密连接的组织和功能,我们检测了源自胚胎干细胞的类胚体的表型,这些胚胎干细胞携带一个或两个cingulin等位基因,其编码大部分预测头部结构域的外显子被靶向缺失。在纯合子(-/-)类胚体中,免疫印迹未检测到全长cingulin,免疫荧光也未检测到连接处标记。在杂合子和纯合子(+/-和-/-)类胚体中,免疫印迹显示有一种Triton可溶的截短形式的cingulin,紧密连接蛋白ZO-2、闭合蛋白、claudin-6和Lfc的水平升高,而ZO-1的水平降低。通过冷冻断裂和透射电子显微镜以及生物素通透性测定确定,+/-和-/-类胚体含有具有正常紧密连接的上皮细胞。ZO-1、闭合蛋白和claudin-6在突变上皮细胞中的定位似乎正常,表明cingulin对于它们在连接处的募集不是必需的。实时定量逆转录PCR(实时qRT-PCR)显示,胚胎干细胞向类胚体的分化与几种紧密连接蛋白的mRNA上调有关。微阵列分析和实时qRT-PCR显示,cingulin突变导致闭合蛋白、claudin-2、claudin-6和claudin-7的转录水平进一步升高,这可能是由于GATA-6、GATA-4和HNF-4α(与内胚层分化有关的转录因子)表达增加所致。因此,连接处cingulin的缺失并不妨碍紧密连接的形成,但cingulin突变会改变基因表达和紧密连接蛋白水平。

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