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Protein Kinase C Acts as a Molecular Detector of Firing Patterns to Mediate Sensory Gating in Aplysia

机译:蛋白激酶C充当海兔放电模式进行调解感觉门控的分子检测器

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摘要

Habituation of a behavioral response to a repetitive stimulus enables animals to ignore irrelevant stimuli and focus on behaviorally important events. In Aplysia, habituation is mediated by rapid depression of sensory synapses, which could leave an animal unresponsive to important repetitive stimuli, making it vulnerable to injury. We identified a form of plasticity that prevents synaptic depression depending on the precise stimulus strength. Burst-dependent protection from depression is initiated by trains of 2–4 action potentials, and is distinct from previously described forms of synaptic enhancement. The blockade of depression is mediated by presynaptic Ca2+ influx and protein kinase C (PKC), and requires localization of PKC via a PDZ domain interaction with Aplysia PICK1. During protection from depression, PKC acts as a highly sensitive detector of the precise pattern of sensory neuron firing. Behaviorally, burst-dependent protection reduces habituation, enabling animals to maintain responsiveness to stimuli that are functionally important.
机译:习惯对重复刺激的行为反应可使动物忽略无关紧要的刺激,而专注于重要的行为事件。在Aplysia中,习惯性是由感觉突触的快速抑制介导的,这可能会使动物对重要的重复刺激无反应,使其容易受到伤害。我们确定了一种可塑性形式,可以根据精确的刺激强度来防止突触抑制。爆发依赖性的保护作用是由一系列2–4个动作电位启动的,与先前描述的突触增强形式不同。抑郁的阻滞是由突触前Ca 2 + 大量涌入和蛋白激酶C(PKC)介导的,并且需要通过与Aplysia PICK1的PDZ域相互作用来定位PKC。在防止抑郁症的过程中,PKC充当了感觉神经元放电精确模式的高灵敏度检测器。在行为上,依赖于爆发的保护减少了习惯,使动物能够保持对功能上重要的刺激的反应能力。

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