Wang S S, Denk W, Häusser M
Biological Computation Research Department, Bell Laboratories, Lucent Technologies, 600 Mountain Avenue, Murray Hill, New Jersey 07974, USA.
Nat Neurosci. 2000 Dec;3(12):1266-73. doi: 10.1038/81792.
Cerebellar long-term depression (LTD) is a calcium-dependent process in which coincident activity of parallel fiber (PF) and climbing fiber (CF) synapses causes a long-lasting decrease in PF synaptic strength onto Purkinje cells. Here we show that pairing CF activation with bursts of PF activity triggers large (>10 microM) calcium signals in Purkinje cell dendrites. When PFs are densely activated, signals span whole dendritic branchlets and are mediated by voltage-dependent calcium entry. When PFs are sparsely activated, however, signals are restricted to single spines and blocked by metabotropic glutamate receptor antagonists. Single-spine signals and sparse-stimulation LTD are also blocked by thapsigargin, indicating that calcium must be released from stores. Single-spine signals and sparse-stimulation LTD are greatest when PF activation precedes the CF activation within 50-200 ms. This timing rule matches the properties of several forms of motor learning, providing a link between behavior and functional properties of cerebellar synaptic plasticity.
小脑长期抑制(LTD)是一个依赖钙的过程,在此过程中,平行纤维(PF)与攀缘纤维(CF)突触的同步活动会导致PF与浦肯野细胞之间突触强度的长期降低。我们在此表明,将CF激活与PF活动的爆发配对会在浦肯野细胞树突中触发大的(>10微摩尔)钙信号。当PF被密集激活时,信号跨越整个树突小分支,并由电压依赖性钙内流介导。然而,当PF被稀疏激活时,信号局限于单个棘突,并被代谢型谷氨酸受体拮抗剂阻断。单个棘突信号和稀疏刺激LTD也被毒胡萝卜素阻断,表明钙必须从储存库中释放。当PF激活在50-200毫秒内先于CF激活时,单个棘突信号和稀疏刺激LTD最大。这个时间规则与几种形式的运动学习特性相匹配,为行为与小脑突触可塑性的功能特性之间提供了联系。