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Role of FGFR2b expression and signaling in keratinocyte differentiation: sequential involvement of PKCδ and PKCα

机译:FGFR2b表达和信号传导在角质形成细胞分化中的作用:PKCδ和PKCα的顺序参与

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The tumor suppressor epithelial isoform of the fibroblast growth factor receptor 2 (FGFR2b) induces human keratinocyte early differentiation. Moreover, protein kinases C (PKCs) are known to regulate the differentiation program in several cellular contexts, including keratinocytes. Therefore, in this paper we propose to clarify if FGFR2b could play a role also in the late steps of keratinocyte differentiation and to assess if this receptor-induced process would sequentially involve PKCδ and PKCα isoforms. Immunofluorescence, biochemical, and molecular approaches, performed on 2D cultures or 3D organotypic rafts of human keratinocytes overexpressing FGFR2b by stable transduction, showed that receptor signaling induced the precocious onset and an accelerated progression of keratinocyte differentiation, indicating that FGFR2b is a crucial regulator of the entire program of keratinocyte differentiation. In addition, the use of specific inhibitors and gene silencing approaches through specific siRNA demonstrated that PKCδ controls the onset of FGFR2b-triggered differentiation, while PKCα plays a role restricted to the terminal stages of the process. Molecular analysis revealed that the two PKC isoforms sequentially act via induction of KLF4 and DLX3, two transcription factors linked by negative loops to p63, suggesting that p63 would represent the hub molecule at the crossroad of an intricate signaling network downstream FGFR2b, involving multiple PKC-induced transcription factors.
机译:成纤维细胞生长因子受体2(FGFR2b)的肿瘤抑制上皮亚型诱导人角质形成细胞的早期分化。此外,已知蛋白激酶C(PKC)在包括角质形成细胞在内的多种细胞环境中调节分化程序。因此,在本文中,我们建议阐明FGFR2b是否也可以在角质形成细胞分化的后期发挥作用,并评估该受体诱导的过程是否会依次涉及PKCδ和PKCα亚型。对通过稳定转导而过度表达FGFR2b的人角质形成细胞的2D培养或3D器官型筏进行的免疫荧光,生化和分子生物学方法显示,受体信号传导诱导了角质形成细胞分化的早熟发作和加速进程,表明FGFR2b是该细胞的关键调节因子。角质形成细胞分化的整个程序。此外,通过特异性siRNA使用特异性抑制剂和基因沉默方法证明PKCδ控制FGFR2b触发的分化的发生,而PKCα则限于该过程的最终阶段。分子分析显示,这两种PKC亚型通过诱导KLF4和DLX3(通过负环与p63相连的两个转录因子)依次发挥作用,这表明p63将代表复杂的FGFR2b信号网络下游的枢纽分子,涉及多个PKC-诱导的转录因子。

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