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Calcium-Dependent PKC Isoforms Have Specialized Roles in Short-Term Synaptic Plasticity

机译:钙依赖性PKC同工型在短期突触可塑性中具有特殊作用

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摘要

Posttetanic potentiation (PTP) is a widely observed form of short-term plasticity lasting for tens of seconds after high-frequency stimulation. Here we show that although protein kinase C (PKC) mediates PTP at the calyx of Held synapse in the auditory brainstem before and after hearing onset, PTP is produced primarily by an increased probability of release (p) before hearing onset, and by an increased readily releasable pool of vesicles (RRP) thereafter. We find that these mechanistic differences, which have distinct functional consequences, reflect unexpected differential actions of closely related calcium-dependent PKC isoforms. Prior to hearing onset, when PKCγ and PKCβ are both present, PKCγ mediates PTP by increasing p and partially suppressing PKCβ actions. After hearing onset, PKCγ is absent and PKCβ produces PTP by increasing RRP. In hearing animals, virally expressed PKCγ overrides PKCβ to produce PTP by increasing p. Thus, two similar PKC isoforms mediate PTP in distinctly different ways.
机译:后强电位增强(PTP)是一种广泛观察到的短期可塑性形式,在高频刺激后持续数十秒。在这里,我们显示尽管蛋白激酶C(PKC)在听力发作前后在介导的听觉脑干的突触花萼中介导PTP,但PTP的产生主要是由于听力发作之前释放(p)的可能性增加以及此后易于释放的囊泡(RRP)。我们发现这些机制差异具有明显的功能后果,反映出密切相关的钙依赖性PKC同工型的意想不到的差异作用。在听力发作之前,当PKCγ和PKCβ都存在时,PKCγ通过增加p并部分抑制PKCβ作用来介导PTP。听力发作后,PKCγ不存在,PKCβ通过增加RRP产生PTP。在有听力的动物中,病毒表达的PKCγ会通过增加p来覆盖PKCβ以产生PTP。因此,两种相似的PKC亚型以明显不同的方式介导PTP。

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