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A catalytic independent function of the deubiquitinating enzyme USP14 regulates hippocampal synaptic short-term plasticity and vesicle number

机译:去泛素化酶USP14的催化独立功能调节海马突触短期可塑性和囊泡数。

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摘要

>AbstractThe ubiquitin proteasome system is required for the rapid and precise control of protein abundance that is essential for synaptic function. USP14 is a proteasome-bound deubiquitinating enzyme that recycles ubiquitin and regulates synaptic short-term synaptic plasticity. We previously reported that loss of USP14 in axJ mice causes a deficit in paired pulse facilitation (PPF) at hippocampal synapses. Here we report that USP14 regulates synaptic function through a novel, deubiquitination-independent mechanism. Although PPF is usually inversely related to release probability, USP14 deficiency impairs PPF without altering basal release probability. Instead, the loss of USP14 causes a large reduction in the number of synaptic vesicles. Over-expression of a catalytically inactive form of USP14 rescues the PPF deficit and restores synaptic vesicle number, indicating that USP14 regulates presynaptic structure and function independently of its role in deubiquitination. Finally, the PPF deficit caused by loss of USP14 can be rescued by pharmacological inhibition of proteasome activity, suggesting that inappropriate protein degradation underlies the PPF impairment. Overall, we demonstrate a novel, deubiquitination-independent function for USP14 in influencing synaptic architecture and plasticity.
机译:>摘要,泛素蛋白酶体系统是快速,精确控制突触功能必不可少的蛋白质丰度所必需的。 USP14是与蛋白酶体结合的去泛素化酶,可回收遍在蛋白并调节突触的短期突触可塑性。我们先前曾报道说,ax J 小鼠中USP14的缺失导致海马突触中配对脉冲易化性(PPF)的缺乏。在这里,我们报道USP14通过一种新型的,去泛素化独立的机制调节突触功能。尽管PPF通常与释放概率成反比,但USP14缺乏会损害PPF而不会改变基础释放概率。相反,USP14的丢失会导致突触小泡数量的大幅减少。过度表达USP14的无催化活性可挽救PPF缺陷并恢复突触小泡数目,这表明USP14调节突触前的结构和功能,独立于其在去泛素化中的作用。最后,可以通过药理学抑制蛋白酶体活性来挽救因USP14缺失引起的PPF缺乏,这表明不适当的蛋白质降解是PPF损伤的基础。总的来说,我们证明了USP14在影响突触结构和可塑性方面具有新颖,不依赖泛素化的功能。

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