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Time-Dependent Activation of Phox2a by the Cyclic AMP Pathway Modulates Onset and Duration of p27Kip1 Transcription▿ †

机译:通过循环AMP途径对Phox2a的时间依赖性激活可调节p27Kip1转录的发生和持续时间▿†

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摘要

In noradrenergic progenitors, Phox2a mediates cell cycle exit and neuronal differentiation by inducing p27Kip1 transcription in response to activation of the cyclic AMP (cAMP) pathway. The mechanism of cAMP-mediated activation of Phox2a is unknown. We identified a cluster of phosphoserine-proline sites in Phox2a by mass spectrometry. Ser206 appeared to be the most prominent phosphorylation site. A phospho-Ser206 Phox2a antibody detected dephosphorylation of Phox2a that was dependent on activation of the cAMP pathway, which occurred prior to neuronal differentiation of noradrenergic CAD cells. Employing serine-to-alanine and serine-to-aspartic acid Phox2a substitution mutants expressed in inducible CAD cell lines, we demonstrated that the transcriptional activity of Phox2a is regulated by two sequential cAMP-dependent events: first, cAMP signaling promotes dephosphorylation of Phox2a in at least one site, Ser206, thereby allowing Phox2a to bind DNA and initiate p27Kip1 transcription; second, following dephosphorylation of the phosphoserine cluster (Ser202 and Ser208), Phox2a becomes phosphorylated by protein kinase A (PKA) on Ser153, which prevents association of Phox2a with DNA and terminates p27Kip1 transcription. This represents a novel mechanism by which the same stimulus, cAMP signaling, first activates Phox2a by dephosphorylation of Ser206 and then, after a built-in delay, inactivates Phox2a via PKA-dependent phosphorylation of Ser153, thereby modulating onset and duration of p27Kip1 transcription.
机译:在去甲肾上腺素祖细胞中,Phox2a通过响应循环AMP(cAMP)通路的激活而诱导p27Kip1转录来介导细胞周期退出和神经元分化。 cAMP介导的Phox2a激活的机制尚不清楚。我们通过质谱法鉴定了Phox2a中的磷酸丝氨酸脯氨酸位点簇。 Ser206似乎是最突出的磷酸化位点。磷酸化Ser206 Phox2a抗体检测到Phox2a的去磷酸化,该磷酸化依赖于cAMP途径的激活,这发生在去甲肾上腺素能CAD细胞的神经元分化之前。利用在诱导型CAD细胞系中表达的丝氨酸到丙氨酸和丝氨酸到天冬氨酸的Phox2a替代突变体,我们证明了Phox2a的转录活性受到两个连续的cAMP依赖性事件的调节:首先,cAMP信号传导促进Phox2a的去磷酸化至少一个位点Ser206,从而使Phox2a结合DNA并启动p27Kip1转录;其次,在磷酸丝氨酸簇(Ser202和Ser208)去磷酸化之后,Phox2a被Ser153上的蛋白激酶A(PKA)磷酸化,从而阻止了Phox2a与DNA缔合并终止p27Kip1转录。这代表了一种新的机制,通过该机制相同的刺激cAMP信号传导首先通过Ser206的去磷酸化来激活Phox2a,然后在内置延迟后通过Ser153的PKA依赖性磷酸化使Phox2a失活,从而调节p27Kip1转录的开始和持续时间。

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