Wu Erxi, Palmer Nathan, Tian Ze, Moseman Annie P, Galdzicki Michal, Wang Xuetao, Berger Bonnie, Zhang Hongbing, Kohane Isaac S
Informatics Program, Children's Hospital Boston, Harvard Medical School, Boston, Massachusetts, United States of America.
PLoS One. 2008;3(11):e3794. doi: 10.1371/journal.pone.0003794. Epub 2008 Nov 24.
Despite the growing understanding of pdgf signaling, studies of pdgf function have encountered two major obstacles: the functional redundancy of PDGFRalpha and PDGFRbeta in vitro and their distinct roles in vivo. Here we used wild-type mouse embryonic fibroblasts (MEF), MEF null for either PDGFRalpha, beta, or both to dissect PDGF-PDGFR signaling pathways. These four PDGFR genetically defined cells provided us a platform to study the relative contributions of the pathways triggered by the two PDGF receptors. They were treated with PDGF-BB and analyzed for differential gene expression, in vitro proliferation and differential response to pharmacological effects. No genes were differentially expressed in the double null cells, suggesting minimal receptor-independent signaling. Protean differentiation and proliferation pathways are commonly regulated by PDGFRalpha, PDGFRbeta and PDGFRalpha/beta while each receptor is also responsible for regulating unique signaling pathways. Furthermore, some signaling is solely modulated through heterodimeric PDGFRalpha/beta.
尽管对血小板衍生生长因子(PDGF)信号传导的认识不断增加,但对PDGF功能的研究遇到了两个主要障碍:PDGFRα和PDGFRβ在体外的功能冗余以及它们在体内的不同作用。在这里,我们使用野生型小鼠胚胎成纤维细胞(MEF)、缺失PDGFRα、β或两者的MEF来剖析PDGF-PDGFR信号通路。这四种由PDGFR基因定义的细胞为我们提供了一个平台,以研究由两种PDGF受体触发的信号通路的相对贡献。它们用PDGF-BB处理,并分析差异基因表达、体外增殖和对药理作用的差异反应。在双缺失细胞中没有基因差异表达,表明受体非依赖性信号传导最少。多样的分化和增殖途径通常由PDGFRα、PDGFRβ和PDGFRα/β共同调节,而每个受体也负责调节独特的信号通路。此外,一些信号传导仅通过异二聚体PDGFRα/β进行调节。