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Rac1-null Mouse Embryonic Fibroblasts Are Motile and Respond to Platelet-derived Growth Factor

机译:Rac1-Null鼠标胚胎成纤维细胞是运动并反应血小板衍生的生长因子

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Previous studies of Rac1 in fibroblasts have used dominant negative constructs, which may have nonspecific effects. We used a conditional Rac1 allele to critically examine Rac1 function in mouse fibroblasts. Lack of Rac1 had dramatic effects on nonconfluent cells, which were elongated and had extensive blebbing, but no lamellipodia or ruffle formation. However, Rac1-null fibroblasts translocated using pseudopodia-like protrusions without lamellipodia, migrating toward a platelet-derived growth factor (PDGF) gradient as efficiently as their wild-type counterparts. Rac1-null fibroblasts closed wounds in vitro and spread on a fibronectin substrate, although at a slower rate than wild-type cells. However, Rac1-null cells were markedly impaired in proliferation, with a defect in G1 to S transition, although they were capable of surviving in culture for more than 2 wk. These results refine our understanding of the functions of Rac1, indicate that lamellipodia formation is not required for cell motility, and show that PDGF-induced chemotaxis can occur in the absence of both lamellipodia and Rac1.
机译:先前的成纤维细胞Rac1的研究使用了显性负构建体,这可能具有非特异性效应。我们使用条件RAC1等位基因来重视小鼠成纤维细胞中的RAC1功能。缺乏RAC1对非共甘细胞具有显着的影响,这些细胞被伸长,并且具有广泛的肺泡,但没有层状或褶皱形成。然而,RAC1-零成纤维细胞使用没有LAPLIPODIA的伪脂偶像突起(类似的突出突起),以血小板衍生的生长因子(PDGF)梯度有效地作为其野生型对应物迁移。 Rac1-null成纤维细胞在体外闭合伤口并在纤连蛋白基质上涂抹,尽管以比野生型细胞较慢的速率。然而,RAC1-NULL细胞在增殖中显着损害,G1至S转变中的缺陷,尽管它们能够在培养物中存活超过2周。这些结果完善了我们对RAC1功能的理解,表明细胞运动不需要薄层胶质症形成,并且表明在没有两种裂隙症和RAC1的情况下可能发生PDGF诱导的趋化性。

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