首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Absence of tissue plasminogen activator gene or activity impairs mouse cerebellar motor learning.
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Absence of tissue plasminogen activator gene or activity impairs mouse cerebellar motor learning.

机译:组织纤溶酶原激活基因或活性的缺乏会损害小鼠小脑运动学习。

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摘要

Motor learning is thought to involve modulation of synaptic inputs in the cerebellar cortex, including granule neuron/Purkinje neuron contacts. During a complex motor task requiring mice to walk across irregularly spaced pegs, cerebellar granule neurons show a rapid and transient induction of mRNA for the extracellular protease tissue plasminogen activator (tPA). This induction of tPA mRNA is cerebellar specific, is not seen in the cerebella of exercised or stressed animals, and is distinct from simple performance phenomena. Knock-out mice lacking the tPA gene show a significant reduction in both rate and extent of learning. Furthermore, blocking tPA activity during training dramatically impaired motor learning. Thus, tPA plays an important role in motor learning, in which tPA may facilitate remodeling of the active synaptic zone.
机译:运动学习被认为涉及小脑皮质中突触输入的调节,包括颗粒神经元/浦肯野神经元接触。在一项复杂的运动任务中,要求小鼠走过不规则间隔的钉子时,小脑颗粒神经元会迅速而短暂地诱导胞外蛋白酶组织纤溶酶原激活剂(tPA)的mRNA表达。 tPA mRNA的这种诱导是小脑特异性的,在运动或紧张的动物的小脑中未见到,与简单的表现现象不同。缺乏tPA基因的基因敲除小鼠在学习速度和程度上均显着降低。此外,在训练期间阻止tPA活动会极大地损害运动学习。因此,tPA在运动学习中起着重要的作用,其中tPA可以促进主动突触区的重塑。

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