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海马CA3区苔藓纤维突触处多个量子的非动作电位依赖性和烟碱受体介导的协同释放。

Action potential-independent and nicotinic receptor-mediated concerted release of multiple quanta at hippocampal CA3-mossy fiber synapses.

作者信息

Sharma Geeta, Grybko Michael, Vijayaraghavan Sukumar

机构信息

Department of Physiology and Biophysics and Neuroscience Program, University of Colorado at Denver and Health Sciences Center, Aurora, Colorado 80045, USA.

出版信息

J Neurosci. 2008 Mar 5;28(10):2563-75. doi: 10.1523/JNEUROSCI.5407-07.2008.

Abstract

Presynaptic action potential-independent transmitter release is a potential means of information transfer across synapses. We show that in the hippocampal mossy fiber boutons, activation of the alpha7-subtype of nicotinic acetylcholine receptors (alpha7-nAChRs) results in a large increase in the amplitude of spontaneous events, resulting from concerted release of multiple quanta from the mossy fiber boutons. This amplitude increase is abolished at low temperatures. Activation of alpha7-nAChRs causes a rise in intraterminal calcium at mossy fiber boutons, involving ryanodine receptors. Regulation of concerted release requires the subsequent activation of presynaptic calcium/calmodulin-dependent protein kinase II (CaMKII). Activation of CaMKII is required to drive presynaptic action potential-independent transmission at the mossy fiber-CA3 pyramidal cell synapse. The effects of alpha7-nAChR activation are mediated by biologically relevant doses of nicotine. Our results demonstrate a novel form of synaptic plasticity mediated by presynaptic alpha7-nAChRs and store calcium that is temporally different and might respond to a different history of synaptic activity than that mediated by incoming action potentials.

摘要

突触前动作电位非依赖性递质释放是一种跨突触信息传递的潜在方式。我们发现,在海马苔藓纤维终扣中,烟碱型乙酰胆碱受体α7亚型(α7-nAChRs)的激活导致自发事件的幅度大幅增加,这是由苔藓纤维终扣中多个量子的协同释放引起的。这种幅度增加在低温下消失。α7-nAChRs的激活导致苔藓纤维终扣内的钙升高,涉及兰尼碱受体。协同释放的调节需要随后激活突触前钙/钙调蛋白依赖性蛋白激酶II(CaMKII)。CaMKII的激活是驱动苔藓纤维-CA3锥体细胞突触处突触前动作电位非依赖性传递所必需的。α7-nAChR激活的作用是由生物学相关剂量的尼古丁介导的。我们的结果证明了一种由突触前α7-nAChRs介导的新型突触可塑性,其储存钙的方式在时间上有所不同,并且可能对与传入动作电位介导的突触活动历史不同的历史做出反应。

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