Department of Biochemistry, Weill Cornell Medical College, New York, New York 10065, USA.
J Neurosci. 2013 May 22;33(21):8937-50. doi: 10.1523/JNEUROSCI.4288-12.2013.
The control of neurotransmitter release at nerve terminals is of profound importance for neurological function and provides a powerful control system in neural networks. We show that the balance of enzymatic activities of the α isoform of the phosphatase calcineurin (CNAα) and the kinase cyclin-dependent kinase 5 (CDK5) has a dramatic influence over single action potential (AP)-driven exocytosis at nerve terminals. Acute or chronic loss of these enzymatic activities results in a sevenfold impact on single AP-driven exocytosis. We demonstrate that this control is mediated almost entirely through Cav2.2 (N-type) voltage-gated calcium channels as blocking these channels with a peptide toxin eliminates modulation by these enzymes. We found that a fraction of nerve terminals are kept in a presynaptically silent state with no measurable Ca(2+) influx driven by single AP stimuli attributable to the balance of CNAα and CDK5 activities because blockade of either CNAα or CDK5 activity changes the proportion of presynaptically silent nerve terminals. Thus, CNAα and CDK5 enzymatic activities are key determinants of release probability.
神经末梢神经递质释放的控制对神经功能具有深远的重要性,并为神经网络提供了强大的控制系统。我们表明,钙调神经磷酸酶(CNAα)的α 同工型的酶活性和细胞周期蛋白依赖性激酶 5(CDK5)的平衡对神经末梢的单个动作电位(AP)驱动的胞吐作用有巨大影响。这些酶活性的急性或慢性丧失对单个 AP 驱动的胞吐作用有七倍的影响。我们证明这种控制几乎完全是通过 Cav2.2(N 型)电压门控钙通道介导的,因为用肽毒素阻断这些通道可以消除这些酶的调节作用。我们发现,由于 CNAα 和 CDK5 活性的平衡,一部分神经末梢处于无突触沉默状态,没有可测量的由单个 AP 刺激驱动的 Ca2+内流,因为阻断 CNAα 或 CDK5 活性会改变无突触沉默神经末梢的比例。因此,CNAα 和 CDK5 的酶活性是释放概率的关键决定因素。