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在攀缘纤维控制下小脑的双向平行纤维可塑性。

Bidirectional parallel fiber plasticity in the cerebellum under climbing fiber control.

作者信息

Coesmans Michiel, Weber John T, De Zeeuw Chris I, Hansel Christian

机构信息

Department of Neuroscience, Erasmus University Medical Center, 3000 DR Rotterdam, The Netherlands.

出版信息

Neuron. 2004 Nov 18;44(4):691-700. doi: 10.1016/j.neuron.2004.10.031.

Abstract

Cerebellar parallel fiber (PF)-Purkinje cell (PC) synapses can undergo postsynaptically expressed long-term depression (LTD) or long-term potentiation (LTP) depending on whether or not the climbing fiber (CF) input is coactivated during tetanization. Here, we show that modifications of the postsynaptic calcium load using the calcium chelator BAPTA or photolytic calcium uncaging result in a reversal of the expected polarity of synaptic gain change. At higher concentrations, BAPTA blocks PF-LTP. These data indicate that PF-LTD requires a higher calcium threshold amplitude than PF-LTP induction and suggest that CF activity acts as a polarity switch by providing dendritic calcium transients. Moreover, previous CF-LTD induction changes the relative PF-LTD versus -LTP induction probability. These findings suggest that bidirectional cerebellar learning is governed by a calcium threshold rule operating "inverse" to the mechanism previously described at other glutamatergic synapses (BCM rule) and that the LTD/LTP induction probability is under heterosynaptic climbing fiber control.

摘要

小脑平行纤维(PF)-浦肯野细胞(PC)突触可根据在强直刺激期间攀缘纤维(CF)输入是否共同激活,经历突触后表达的长时程抑制(LTD)或长时程增强(LTP)。在此,我们表明,使用钙螯合剂BAPTA或光解钙释放来改变突触后钙负荷,会导致突触增益变化的预期极性发生反转。在较高浓度下,BAPTA会阻断PF-LTP。这些数据表明,PF-LTD比PF-LTP诱导需要更高的钙阈值幅度,并表明CF活动通过提供树突状钙瞬变作为极性开关。此外,先前的CF-LTD诱导会改变相对的PF-LTD与-LTP诱导概率。这些发现表明,双向小脑学习受一个钙阈值规则支配,该规则与先前在其他谷氨酸能突触中描述的机制(BCM规则)“相反”运作,并且LTD/LTP诱导概率受异突触攀缘纤维控制。

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