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Region-specific targets of p42/p44MAPK signaling in rat brain.

机译:大鼠脑中p42 / p44MAPK信号传导的区域特异性靶标。

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摘要

In vitro studies indicate that p42/p44MAPK phosphorylate both nuclear and cytoplasmic proteins. However, the functional targets of p42/p44MAPK activation in vivo remain unclear. To address this question, we localized activated p42/p44MAPK in hippocampus and cortex and determined their signaling effects after electroconvulsive shock treatment (ECT) in rats. Phosphorylated p42/p44MAPK content increased in the cytoplasm of hippocampal neurons in response to ECT. Consistent with this cytoplasmic localization, inhibition of ECT-induced p42/p44MAPK activation by the extracellular signal-regulated kinase kinase inhibitor PD098059 blocked phosphorylation of the cytoplasmic protein microtubule-associated protein 2c (MAP2c), but failed to inhibit the induction of the nuclear protein c-Fos in response to ECT. In contrast to hippocampal neurons, cortical neurons exhibited an increase in amount of phosphorylated p42/p44MAPK in both the nucleus and cytoplasm after ECT. Accordingly, PD098059 blocked the induction of Fos-like immunoreactivity in the nuclei of cortical neurons as well as MAP2c phosphorylation in the cytoplasm. Our data indicate that both nuclear and cytoplasmic substrates can be activated by p42/p44MAPK in vivo. However, the functional targets of p42/p44MAPK signaling depend on the precise location of p42/p44MAPK within different subcellular compartments of brain regions. These results indicate unique functional pathways of p42/p44MAPK-mediated signal transduction within different brain regions in vivo.
机译:体外研究表明,p42 / p44MAPK磷酸化核蛋白和胞质蛋白。但是,体内p42 / p44MAPK激活的功能目标尚不清楚。为了解决这个问题,我们在大鼠电惊厥休克治疗(ECT)后将激活的p42 / p44MAPK定位在海马和皮质中,并确​​定其信号传导作用。响应ECT,海马神经元细胞质中磷酸化的p42 / p44MAPK含量增加。与这种细胞质定位一致,细胞外信号调节激酶激酶抑制剂PD098059对ECT诱导的p42 / p44MAPK激活的抑制作用阻止了细胞质蛋白微管相关蛋白2c(MAP2c)的磷酸化,但未能抑制核蛋白的诱导c-Fos响应ECT。与海马神经元相反,ECT后,皮层神经元在细胞核和细胞质中均显示磷酸化的p42 / p44MAPK量增加。因此,PD098059阻断了皮质神经元核中Fos样免疫反应的诱导以及细胞质中的MAP2c磷酸化。我们的数据表明核和细胞质底物都可以在体内被p42 / p44MAPK激活。但是,p42 / p44MAPK信号转导的功能目标取决于p42 / p44MAPK在大脑区域不同亚细胞区室中的精确定位。这些结果表明体内不同大脑区域内p42 / p44MAPK介导的信号转导的独特功能途径。

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