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神经元钙通过环磷酸腺苷依赖性蛋白激酶激活Rap1和B-Raf信号通路。

Neuronal calcium activates a Rap1 and B-Raf signaling pathway via the cyclic adenosine monophosphate-dependent protein kinase.

作者信息

Grewal S S, Horgan A M, York R D, Withers G S, Banker G A, Stork P J

机构信息

Vollum Institute, L474, Oregon Health Sciences University, Portland, Oregon 97201, USA.

出版信息

J Biol Chem. 2000 Feb 4;275(5):3722-8. doi: 10.1074/jbc.275.5.3722.

DOI:10.1074/jbc.275.5.3722
PMID:10652372
Abstract

Activity-dependent regulation of neuronal events such as cell survival and synaptic plasticity is controlled by increases in neuronal calcium levels. These actions often involve stimulation of intracellular kinase signaling pathways. For example, the mitogen-activated protein kinase, or extracellular signal-regulated kinase (ERK), signaling cascade has increasingly been shown to be important for the induction of gene expression and long term potentiation. However, the mechanisms leading to ERK activation by neuronal calcium are still unclear. In the present study, we describe a protein kinase A (PKA)-dependent signaling pathway that may link neuronal calcium influx to ERKs via the small G-protein, Rap1, and the neuronal Raf isoform, B-Raf. Thus, in PC12 cells, depolarization-mediated calcium influx led to the activation of B-Raf, but not Raf-1, via PKA. Furthermore, depolarization also induced the PKA-dependent stimulation of Rap1 and led to the formation of a Rap1/B-Raf signaling complex. In contrast, depolarization did not lead to the association of Ras with B-Raf. The major action of PKA-dependent Rap1/B-Raf signaling in neuronal cells is the activation of ERKs. Thus, we further show that, in both PC12 cells and hippocampal neurons, depolarization-induced calcium influx stimulates ERK activity in a PKA-dependent manner. Given the fact that both Rap1 and B-Raf are highly expressed in the central nervous system, we suggest that this signaling pathway may regulate a number of activity-dependent neuronal functions.

摘要

神经元事件(如细胞存活和突触可塑性)的活动依赖性调节由神经元钙水平的升高所控制。这些作用通常涉及细胞内激酶信号通路的刺激。例如,丝裂原活化蛋白激酶或细胞外信号调节激酶(ERK)信号级联越来越多地被证明对基因表达的诱导和长期增强很重要。然而,神经元钙导致ERK激活的机制仍不清楚。在本研究中,我们描述了一种蛋白激酶A(PKA)依赖性信号通路,该通路可能通过小G蛋白Rap1和神经元Raf异构体B-Raf将神经元钙内流与ERK联系起来。因此,在PC12细胞中,去极化介导的钙内流通过PKA导致B-Raf而非Raf-1的激活。此外,去极化还诱导了PKA依赖性的Rap1刺激,并导致Rap-1/B-Raf信号复合物的形成。相比之下,去极化并未导致Ras与B-Raf的结合。PKA依赖性Rap1/B-Raf信号在神经元细胞中的主要作用是激活ERK。因此,我们进一步表明,在PC12细胞和海马神经元中,去极化诱导的钙内流以PKA依赖性方式刺激ERK活性。鉴于Rap1和B-Raf在中枢神经系统中均高度表达,我们认为该信号通路可能调节许多活动依赖性神经元功能。

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