首页> 美国卫生研究院文献>Cell Regulation >Gene Targeting of Cdc42 and Cdc42GAP Affirms the Critical Involvement of Cdc42 in Filopodia Induction Directed Migration and Proliferation in Primary Mouse Embryonic Fibroblasts
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Gene Targeting of Cdc42 and Cdc42GAP Affirms the Critical Involvement of Cdc42 in Filopodia Induction Directed Migration and Proliferation in Primary Mouse Embryonic Fibroblasts

机译:Cdc42和Cdc42GAP的基因定位证实了Cdc42在丝状伪足诱导定向迁移和原代小鼠胚胎成纤维细胞增殖中的关键作用。

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摘要

Recent studies in Cdc42 knockout mouse embryonic stem (ES) cells and ES-derived fibroblastoid cell lines raise concern on a body of literature derived by dominant mutant expression approach in a variety of cell lines implicating mammalian Cdc42 as a key regulator of filopodia induction, directional migration and cell cycle progression. To resolve the physiological function of mammalian Cdc42, we have characterized the Cdc42−/− and Cdc42GAP−/− primary mouse embryonic fibroblasts (MEFs) produced by gene targeting as the Cdc42 loss- or gain-of-activity cell model. The Cdc42−/− cells were defective in filopodia formation stimulated by bradykinin and in dorsal membrane ruffling stimulated by PDGF, whereas the Cdc42GAP−/− cells displayed spontaneous filopodia. The Cdc42 loss- or gain-of-activity cells were defective in adhesion to fibronectin, wound-healing, polarity establishment, and migration toward a serum gradient. These defects were associated with deficiencies of PAK1, GSK3β, myosin light chain, and FAK phosphorylation. Furthermore, Cdc42−/− cells were defective in G1/S-phase transition and survival, correlating with deficient NF-κB transcription and defective JNK, p70 S6K, and ERK1/2 activation. These results demonstrate a different requirement of Cdc42 activity in primary MEFs from ES or ES-derived clonal fibroblastoid cells and suggest that Cdc42 plays cell-type–specific signaling roles.
机译:Cdc42敲除小鼠胚胎干(ES)细胞和ES来源的成纤维细胞样细胞系的最新研究引起了人们的关注,该文献涉及通过显性突变表达方法在多种细胞系中产生的暗示哺乳动物Cdc42是丝状伪足诱导,方向性的关键调节因子的文献迁移和细胞周期进程。为了解决哺乳动物Cdc42的生理功能,我们已经对通过基因靶向产生的Cdc42 -/-和Cdc42GAP -/-原代小鼠胚胎成纤维细胞(MEF)进行了表征活动丧失或获得活动的细胞模型。 Cdc42 -/-细胞在缓激肽刺激的丝状足形成和PDGF刺激的背膜皱纹形成中存在缺陷,而Cdc42GAP -/-细胞表现出自发性丝状足。 Cdc42丧失活性或活性的细胞在与纤连蛋白的粘附,伤口愈合,极性建立和向血清梯度的迁移方面存在缺陷。这些缺陷与PAK1,GSK3β,肌球蛋白轻链和FAK磷酸化的缺陷有关。此外,Cdc42 -/-细胞在G1 / S期过渡和存活中存在缺陷,与缺乏NF-κB转录和缺陷的JNK,p70 S6K和ERK1 / 2激活有关。这些结果表明,来自ES或ES来源的克隆性成纤维细胞样细胞的原代MEF对Cdc42活性的要求不同,这表明Cdc42发挥细胞类型特异性信号传导作用。

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