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首页> 外文期刊>Molecular and Cellular Biology >Rap1-Mediated Activation of Extracellular Signal-Regulated Kinases by Cyclic AMP Is Dependent on the Mode of Rap1 Activation
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Rap1-Mediated Activation of Extracellular Signal-Regulated Kinases by Cyclic AMP Is Dependent on the Mode of Rap1 Activation

机译:Rap1介导的环AMP对胞外信号调节激酶的激活取决于Rap1激活的模式。

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Like other small G proteins of the Ras superfamily, Rap1 is activated by distinct guanine nucleotide exchange factors (GEFs) in response to different signals to elicit cellular responses. Activation of Rap1 by cyclic AMP (cAMP) can occur via cAMP-dependent protein kinase A (PKA)-independent and PKA-dependent mechanisms. PKA-independent activation of Rap1 by cAMP is mediated by direct binding of cAMP to Rap1-guanine nucleotide exchange factors (Rap1-GEFs) Epac1 (exchange protein directly activated by cAMP 1) and Epac2 (Epac1 and Epac2 are also called cAMP-GEFI and -GEFII). The availability of cAMP analogues that selectively activate Epacs, but not PKA, provides a specific tool to activate Rap1. It has been argued that the inability of these analogues to regulate extracellular signal-regulated kinases (ERKs) signaling despite activating Rap1 provides evidence that Rap1 is incapable of regulating ERKs. We confirm that the PKA-independent activation of Rap1 by Epac1 activates a perinuclear pool of Rap1 and that this does not result in ERK activation. However, we demonstrate that this inability to regulate ERKs is not a property of Rap1 but is rather a property of Epacs themselves. The addition of a membrane-targeting motif to Epac1 (Epac-CAAX) relocalizes Epac1 from its normal perinuclear locale to the plasma membrane. In this new locale it is capable of activating ERKs in a Rap1- and cAMP-dependent manner. Rap1 activation by Epac-CAAX, but not wild-type Epac, triggers its association with B-Raf. Therefore, we propose that its intracellular localization prevents Epac1 from activating ERKs. C3G (Crk SH3 domain Guanine nucleotide exchanger) is a Rap1 exchanger that is targeted to the plasma membrane upon activation. We show that C3G can be localized to the plasma membrane by cAMP/PKA, as can Rap1 when activated by cAMP/PKA. Using a small interfering RNA approach, we demonstrate that C3G is required for the activation of ERKs and Rap1 by cAMP/PKA. This activation requires the GTP-dependent association of Rap1 with B-Raf. These data demonstrate that B-Raf is a physiological target of Rap1, but its utilization as a Rap1 effector is GEF specific. We propose a model that specific GEFs activate distinct pools of Rap1 that are differentially coupled to downstream effectors.
机译:像Ras家族的其他小G蛋白一样,Rap1被不同的鸟嘌呤核苷酸交换因子(GEF)激活,以响应不同的信号以引发细胞反应。环状AMP(cAMP)激活Rap1可以通过cAMP依赖性蛋白激酶A(PKA)和PKA依赖性机制发生。 cAMP直接结合Rap1-鸟嘌呤核苷酸交换因子(Rap1-GEFs)Epac1( e xchange p rotein直接 c AMP 1培养的> a 和Epac2(Epac1和Epac2也称为cAMP-GEFI和-GEFII)。选择性激活Epacs(而非PKA)的cAMP类似物的可用性提供了激活Rap1的特定工具。有人认为,尽管激活了Rap1,这些类似物仍无法调节细胞外信号调节激酶(ERK)信号,这提供了Rap1无法调节ERKs的证据。我们证实,Epac1对Rap1的依赖于PKA的激活会激活Rap1的核周池,并且不会导致ERK激活。但是,我们证明了这种无法调节ERK的能力不是Rap1的财产,而是Epacs本身的财产。向Epac1(Epac-CAAX)添加膜靶向基序可将Epac1从其正常的核周区域重新定位到质膜。在这种新的语言环境中,它能够以Rap1和cAMP依赖的方式激活ERK。 Epac-CAAX(而非野生型Epac)激活Rap1会触发其与B-Raf的关联。因此,我们建议其细胞内定位阻止Epac1激活ERKs。 C3G( C rk SH 3 G 鸟嘌呤核苷酸交换剂)是一种Rap1交换子,在激活后会靶向质膜。我们显示C3G可以通过cAMP / PKA定位于质膜,而Rap1在被cAMP / PKA激活时也可以定位。使用一种小的干扰RNA方法,我们证明了cAMP / PKA激活ERKs和Rap1需要C3G。此激活需要Rap1与B-Raf的GTP依赖关系。这些数据证明B-Raf是Rap1的生理靶标,但其作为Rap1效应子的利用是GEF特有的。我们提出了一个模型,即特定的GEF激活差异耦合到下游效应子的Rap1的不同库。

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