首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Guanine nucleotide exchange factor Epac2–dependent activation of the GTP-binding protein Rap2A mediates cAMP-dependent growth arrest in neuroendocrine cells
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Guanine nucleotide exchange factor Epac2–dependent activation of the GTP-binding protein Rap2A mediates cAMP-dependent growth arrest in neuroendocrine cells

机译:鸟嘌呤核苷酸交换因子Epac2依赖的GTP结合蛋白Rap2A的激活介导了神经内分泌细胞中依赖cAMP的生长停滞

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摘要

First messenger-dependent activation of MAP kinases in neuronal and endocrine cells is critical for cell differentiation and function and requires guanine nucleotide exchange factor (GEF)-mediated activation of downstream Ras family small GTPases, which ultimately lead to ERK, JNK, and p38 phosphorylation. Because there are numerous GEFs and also a host of Ras family small GTPases, it is important to know which specific GEF–small GTPase dyad functions in a given cellular process. Here we investigated the upstream activators and downstream effectors of signaling via the GEF Epac2 in the neuroendocrine NS-1 cell line. Three cAMP sensors, Epac2, PKA, and neuritogenic cAMP sensor–Rapgef2, mediate distinct cellular outputs: p38-dependent growth arrest, cAMP response element–binding protein–dependent cell survival, and ERK-dependent neuritogenesis, respectively, in these cells. Previously, we found that cAMP-induced growth arrest of PC12 and NS-1 cells requires Epac2-dependent activation of p38 MAP kinase, which posed the important question of how Epac2 engages p38 without simultaneously activating other MAP kinases in neuronal and endocrine cells. We now show that the small GTP-binding protein Rap2A is the obligate effector for, and GEF substrate of, Epac2 in mediating growth arrest through p38 activation in NS-1 cells. This new pathway is distinctly parcellated from the G protein—coupled receptor → Gs → adenylate cyclase → cAMP → PKA → cAMP response element–binding protein pathway mediating cell survival and the G protein—coupled receptor → Gs → adenylate cyclase → cAMP → neuritogenic cAMP sensor–Rapgef2 → B-Raf → MEK → ERK pathway mediating neuritogenesis in NS-1 cells.
机译:在神经元和内分泌细胞中,首先依赖信使的MAP激酶活化对于细胞分化和功能至关重要,并且需要鸟嘌呤核苷酸交换因子(GEF)介导的下游Ras家族小GTPases活化,最终导致ERK,JNK和p38磷酸化。因为有许多GEF,也有许多Ras家族的小GTP酶,所以重要的是要知道在给定的细胞过程中哪些特定的GEF小GTPase二联体起作用。在这里,我们研究了神经内分泌NS-1细胞系中通过GEF Epac2进行信号传导的上游激活剂和下游效应子。三种cAMP传感器Epac2,PKA和中性神经原性cAMP传感器Rapgef2介导不同的细胞输出:在这些细胞中分别是p38依赖性生长停滞,cAMP反应元件结合蛋白依赖性细胞存活和ERK依赖性神经生成。以前,我们发现cAMP诱导的PC12和NS-1细胞生长停滞需要依赖Epac2的p38 MAP激酶激活,这提出了一个重要问题,即Epac2如何与p38结合而不同时激活神经元和内分泌细胞中的其他MAP激酶。我们现在显示,小的GTP结合蛋白Rap2A是Epac2的专一效应物,也是GEF的底物,可通过NS-1细胞中的p38激活介导生长停滞。该新途径与G蛋白偶联受体→Gs→腺苷酸环化酶→cAMP→PKA→cAMP反应元件–介导细胞存活的结合蛋白途径截然不同,而G蛋白偶联受体→Gs→腺苷酸环化酶→cAMP→神经原性cAMP sensor–Rapgef2→B-Raf→MEK→ERK途径介导NS-1细胞的神经形成。

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