Different Numbers of Conjunctive Stimuli Induce LTP or LTD in Mouse Cerebellar Purkinje Cell

Atsuro Daida, Tohru Kurotani, Kazuhiko Yamaguchi, Yuji Takahashi, Noritaka Ichinohe
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Abstract

Long-term depression (LTD) of synaptic transmission at parallel fiber (PF)-Purkinje cell (PC) synapses plays an important role in cerebellum-related motor coordination and learning. LTD is induced by the conjunction of PF stimulation and climbing fiber (CF) stimulation or somatic PC depolarization, while long-term potentiation (LTP) is induced by PF stimulation alone. Therefore, it is considered that different types of stimulation induce different types of synaptic plasticity. However, we found that a small number of conjunctive stimulations (PF + somatic depolarization of PC) induced LTP, but did not induce LTD of a small size. This LTP was not associated with changes in paired-pulse ratio, suggesting postsynaptic origin. Additionally this LTP was dependent on nitric oxide. This LTP was also induced by a smaller number of physiological conjunctive PF and CF stimuli. These results suggested that a larger number or longer period of conjunctive stimulation is required to induce LTD by overcoming LTP. Ca2+ transients at the PC dendritic region was measured by calcium imaging during LTD-inducing conjunctive stimulation. Peak amplitude of Ca2+ transients increased gradually during repetitive conjunctive stimulation. Instantaneous peak amplitude was not different between the early phase and late phase, but the average amplitude was larger in the later phase than in the early phase. These results show that LTD overcomes LTP, and increased Ca2+ integration or a number of stimulations is required for LTD induction.

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不同数量的联合刺激诱导小鼠小脑浦肯野细胞的 LTP 或 LTD
平行纤维(PF)-浦肯野细胞(PC)突触传递的长期抑制(LTD)在与小脑有关的运动协调和学习中起着重要作用。LTD由平行纤维(PF)刺激和爬行纤维(CF)刺激或体细胞PC去极化共同诱导,而长期电位(LTP)则由PF刺激单独诱导。因此,人们认为不同类型的刺激会诱导不同类型的突触可塑性。然而,我们发现,少量的联合刺激(PF + PC 的体细胞去极化)诱导了 LTP,但没有诱导小规模的 LTD。这种 LTP 与配对脉冲比率的变化无关,这表明 LTP 源自突触后。此外,这种 LTP 依赖于一氧化氮。这种 LTP 也是由较少数量的生理联合 PF 和 CF 刺激诱导的。这些结果表明,要通过克服 LTP 来诱导 LTD,需要更多或更长时间的联合刺激。在LTD诱导联合刺激过程中,通过钙成像测量了PC树突区域的Ca2+瞬态。在重复性连接刺激过程中,Ca2+瞬时峰值振幅逐渐增加。早期阶段和晚期阶段的瞬时峰值振幅没有差异,但晚期阶段的平均振幅大于早期阶段。这些结果表明,LTD克服了LTP,而Ca2+整合的增加或多次刺激是LTD诱导的必要条件。
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