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Comprehensive proteomic and transcriptomic characterization of hepatic expression signatures affected in p14 liver conditional knockout mice.

机译:完整的蛋白质组和转录组学表征在p14肝脏条件性基因敲除小鼠中的肝表达特征。

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摘要

Scaffold proteins regulate intracellular MAP kinase signaling by providing critical spatial and temporal specificities. We have shown previously that the scaffold protein MEK1 partner (MP1) is localized to late endosomes by the adaptor protein p14. Using conditional gene disruption of p14 in livers of mice (p14(Deltahep) ) we analyzed protein and transcript signatures in tissue samples. Further biological network analysis predicted that the differentially expressed transcripts and proteins are involved in cell cycle progression and regulation of cellular proliferation. Although some of the here identified signatures were previously linked to phospho-ERK activity, most of them were novel targets of the late endosomal p14/MP1/MEK/ERK signaling module. Finally, the proliferation defect was confirmed in a chemically induced liver regeneration model in p14(Deltahep) knockout mice.
机译:支架蛋白通过提供关键的时空特异性来调节细胞内MAP激酶信号传导。先前我们已经表明,支架蛋白MEK1伴侣(MP1)通过衔接蛋白p14定位于晚期内体。使用小鼠肝脏中p14的条件基因破坏(p14(Deltahep)),我们分析了组织样品中的蛋白质和转录本特征。进一步的生物网络分析预测,差异表达的转录本和蛋白质与细胞周期进程和细胞增殖调控有关。尽管此处鉴定出的某些特征先前与磷酸化ERK活性有关,但大多数是晚期内体p14 / MP1 / MEK / ERK信号传导模块的新靶标。最后,在p14(Deltahep)基因敲除小鼠的化学诱导肝再生模型中证实了增殖缺陷。

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