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Activity-dependent calpain activation plays a critical role in synaptic facilitation and post-tetanic potentiation

机译:依赖于活性的钙蛋白酶激活在突触促进和强直后增强中起关键作用

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Synaptic facilitation and post-tetanic potentiation (PTP) are believed to necessitate active regeneration of the release machinery and supply of synaptic vesicles to a ready-releasable site. The prevailing hypothesis assumes that synapsins play pivotal roles in these processes. Using a cholinergic synapse formed between cultured Aplysia neurons (B2 and MCn), we demonstrate here that the calcium-activated protease-calpain serves as a major regulating element in the cascade that links electrical activity, elevation of the free intracellular calcium concentration, and short-term synaptic enhancements such as facilitation and PTP. Our study revealed that calpain inhibitors (calpeptin and MG132) transform a facilitating synapse into a depressing one, and reduce its PTP by 80.6%. Inhibition of CaM kinases, PKA, and MAPK also reduced PTP at this synapse. When inhibitors of these kinases were applied together with calpeptin, tetanic stimuli led to synaptic depression. We concluded that at this synapse facilitation and PTP are mediated mainly by the calpain-dependent processes and to a smaller extent by the CaMKs/PKA/MAPK-dependent cascades.
机译:突触促进和后破伤风增强(PTP)被认为需要释放机制的积极再生和突触囊泡供应到随时可释放的位置。普遍的假设假设突触蛋白在这些过程中起关键作用。使用在培养的海neuro神经元(B2和MCn)之间形成的胆碱能突触,我们在这里证明钙激活的蛋白酶-钙蛋白酶是级联反应中的主要调节元件,其连接电活动,游离细胞内钙浓度的升高和短时短期突触增强,例如促进和PTP。我们的研究表明,钙蛋白酶抑制剂(calpeptin和MG132)将促进突触转变为抑制突触,并将其PTP降低80.6%。抑制CaM激酶,PKA和MAPK也会降低该突触处的PTP。当这些激酶的抑制剂与钙蛋白酶结合使用时,强直性刺激会导致突触抑制。我们得出的结论是,在此突触促进和PTP主要由钙蛋白酶依赖性过程介导,在较小程度上由CaMKs / PKA / MAPK依赖性级联介导。

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