首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Lack of beta 1 integrin gene in embryonic stem cells affects morphology adhesion and migration but not integration into the inner cell mass of blastocysts
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Lack of beta 1 integrin gene in embryonic stem cells affects morphology adhesion and migration but not integration into the inner cell mass of blastocysts

机译:胚胎干细胞中缺乏β1整合素基因会影响形态黏附和迁移但不会整合到胚泡的内部细胞团中

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摘要

A gene trap-type targeting vector was designed to inactivate the beta 1 integrin gene in embryonic stem (ES) cells. Using this vector more than 50% of the ES cell clones acquired a disruption in the beta 1 integrin gene and a single clone was mutated in both alleles. The homozygous mutant did not produce beta 1 integrin mRNA or protein, while alpha 3, alpha 5, and alpha 6 integrin subunits were transcribed but not detectable on the cell surface. Heterozygous mutants showed reduced beta 1 expression and surface localization of alpha/beta 1 heterodimers. The alpha V subunit expression was not impaired on any of the mutants. Homozygous ES cell mutants lacked adhesiveness for laminin and fibronectin but not for vitronectin and showed a reduced association with a fibroblast feeder layer. Furthermore, they did not migrate towards chemoattractants in fibroblast medium. None of these functions were impaired in heterozygous mutants. Scanning electron microscopy revealed that homozygous cells showed fewer cell-cell junctions and had many microvilli not usually found on wild type and heterozygous cells. This profound change in cell shape is not associated with gross alterations in the expression and distribution of cytoskeletal components. Unexpectedly, microinjection into blastocysts demonstrated full integration of homozygous and heterozygous mutants into the inner cell mass. This will allow studies of the consequences of beta 1 integrin deficiency in several in vivo situations.
机译:设计一种基因陷阱型靶向载体,以灭活胚胎干(ES)细胞中的β1整联蛋白基因。使用该载体,超过50%的ES细胞克隆获得了β1整联蛋白基因的破坏,并且单个克隆在两个等位基因中均发生了突变。纯合突变体不产生β1整合素mRNA或蛋白质,而转录了α3,α5和α6整合素亚基,但在细胞表面无法检测到。杂合突变体显示减少的beta 1表达和表面定位的alpha / beta 1异二聚体。在任何突变体上,αV亚基的表达均未受损。纯合的ES细胞突变体对层粘连蛋白和纤连蛋白缺乏粘附性,但对玻连蛋白没有粘附性,并且与成纤维细胞饲养层的结合减少。此外,它们在成纤维细胞培养基中没有向趋化剂迁移。这些功能在杂合突变体中均未受损。扫描电子显微镜显示,纯合细胞显示较少的细胞-细胞连接,并且具有许多野生型和杂合型细胞通常不存在的微绒毛。细胞形状的这种深刻变化与细胞骨架成分的表达和分布的总体改变无关。出乎意料的是,显微注射入胚泡表明纯合和杂合突变体完全整合到内部细胞团中。这将允许研究在几种体内情况下β1整合素缺乏的后果。

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