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Novel Roles of Specific Isoforms of Protein Kinase C in Activation of the c-fos Serum Response Element

机译:蛋白激酶C的特定同工型在激活c-fos血清反应元件中的新型作用

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摘要

Protein kinase C (PKC) is a multigene family of enzymes consisting of at least 11 isoforms. It has been implicated in the induction of c-fos and other immediate response genes by various mitogens. The serum response element (SRE) in the c-fos promoter is necessary and sufficient for induction of transcription of c-fos by serum, growth factors, and the phorbol ester 12-O-tetradecanoylphorbol-13-acetate (TPA). It forms a complex with the ternary complex factor (TCF) and with a dimer of the serum response factor (SRF). TCF is the target of several signal transduction pathways and SRF is the target of the rhoA pathway. In this study we generated dominant-negative and constitutively active mutants of PKC-α, PKC-δ, PKC-ɛ, and PKC-ζ to determine the roles of individual isoforms of PKC in activation of the SRE. Transient-transfection assays with NIH 3T3 cells, using an SRE-driven luciferase reporter plasmid, indicated that PKC-α and PKC-ɛ, but not PKC-δ or PKC-ζ, mediate SRE activation. TPA-induced activation of the SRE was partially inhibited by dominant negative c-Raf, ERK1, or ERK2, and constitutively active mutants of PKC-α and PKC-ɛ activated the transactivation domain of Elk-1. TPA-induced activation of the SRE was also partially inhibited by a dominant-negative MEKK1. Furthermore, TPA treatment of serum-starved NIH 3T3 cells led to phosphorylation of SEK1, and constitutively active mutants of PKC-α and PKC-ɛ activated the transactivation domain of c-Jun, a major substrate of JNK. Constitutively active mutants of PKC-α and PKC-ɛ could also induce a mutant c-fos promoter which lacks the TCF binding site, and they also induce transactivation activity of the SRF. Furthermore, rhoA-mediated SRE activation was blocked by dominant negative mutants of PKC-α or PKC-ɛ. Taken together, these findings indicate that PKC-α and PKC-ɛ can enhance the activities of at least three signaling pathways that converge on the SRE: c-Raf–MEK1–ERK–TCF, MEKK1-SEK1-JNK-TCF, and rhoA-SRF. Thus, specific isoforms of PKC may play a role in integrating networks of signal transduction pathways that control gene expression.
机译:蛋白激酶C(PKC)是酶的多基因家族,由至少11个同工型组成。它与多种促细胞分裂剂诱导c-fos和其他即时反应基因有关。 c-fos启动子中的血清反应元件(SRE)对于通过血清,生长因子和佛波醇酯12-O-十四烷酰佛波醇13-乙酸酯(TPA)诱导c-fos转录是必要和充分的。它与三元复合因子(TCF)和血清反应因子(SRF)的二聚体形成复合物。 TCF是多种信号转导途径的靶标,而SRF是rhoA途径的靶标。在这项研究中,我们生成了PKC-α,PKC-δ,PKC-β和PKC-ζ的显性负性和组成性活性突变体,以确定PKC的各个同工型在SRE激活中的作用。使用SRE驱动的萤光素酶报告质粒对NIH 3T3细胞进行的瞬时转染测定表明,PKC-α和PKC-ɛ而不是PKC-δ或PKC-ζ介导SRE活化。 TPA诱导的SRE激活被显性阴性c-Raf,ERK1或ERK2部分抑制,而PKC-α和PKC-ɛ的组成型活性突变体激活了Elk-1的反式激活结构域。 TPA诱导的SRE激活也被显性阴性MEKK1部分抑制。此外,TPA处理血清饥饿的NIH 3T3细胞导致SEK1磷酸化,并且PKC-α和PKC-ɛ的组成型活性突变体激活了JNK的主要底物c-Jun的反式激活域。 PKC-α和PKC-ɛ的组成型活性突变体也可以诱导缺少TCF结合位点的突变c-fos启动子,并且它们还诱导SRF的反式激活活性。此外,rhoA介导的SRE激活被PKC-α或PKC-ɛ的显性负突变体阻断。综上所述,这些发现表明PKC-α和PKC-C可以增强至少三种在SRE上会聚的信号传导途径的活性:c-Raf–MEK1–ERK–TCF,MEKK1-SEK1-JNK-TCF和rhoA -SRF。因此,PKC的特定同工型可能在整合控制基因表达的信号转导途径的网络中发挥作用。

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