Climbing Fiber Input Shapes Reciprocity of Purkinje Cell Firing

Climbing Fiber Input Shapes Reciprocity of Purkinje Cell Firing
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DOI:
10.1016/j.neuron.2013.03.018
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发表时间:
2013-05-22
期刊:
影响因子:
16.2
通讯作者:
De Zeeuw, Chris I.
De Zeeuw, Chris I.
中科院分区:
医学1区
文献类型:
--
作者:
Badura, Aleksandra;Schonewille, Martijn;De Zeeuw, Chris I.

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小脑通过其浦肯野细胞输出来微调运动活动。浦肯野细胞产生两种不同类型的尖峰,即复杂尖峰和简单尖峰,它们通常表现出相互的活性:复杂尖峰的周期性增加与简单尖峰的减少相关,反之亦然。这种相互激发被认为对于协调运动行为至关重要,但其如何实现仍存在争议。在这里,我们在 Ptf1a::cre;Robo3(lox/lox) 小鼠中展示,选择性地将攀爬纤维从对侧投射到同侧投射,逆转了感觉刺激期间的复杂尖峰调制。引人注目的是,本应由苔藓纤维控制的简单尖峰的调制也发生了逆转。攀爬纤维部分地通过影响抑制性中间神经元的活动来强化这种相互作用,因为它们的活动阶段也发生了转变。 Ptf1a::cre;Robo3(lox/lox) 小鼠表现出严重的共济失调,突出表明攀爬纤维输入及其对浦肯野细胞放电相互作用的影响在运动协调中发挥着重要作用。
The cerebellum fine-tunes motor activity via its Purkinje cell output. Purkinje cells produce two different types of spikes, complex spikes and simple spikes, which often show reciprocal activity: a periodical increase in complex spikes is associated with a decrease in simple spikes, and vice versa. This reciprocal firing is thought to be essential for coordinated motor behavior, yet how it is accomplished is debated. Here, we show in Ptf1a::cre;Robo3(lox/lox) mice that selectively rerouting the climbing fibers from a contralateral to an ipsilateral projection reversed the complex-spike modulation during sensory stimulation. Strikingly, modulation of simple spikes, which is supposed to be controlled by mossy fibers, reversed as well. Climbing fibers enforce this reciprocity in part by influencing activity of inhibitory interneurons, because the phase of their activity was also converted. Ptf1a::cre;Robo3(lox/lox) mice showed severe ataxia highlighting that climbing fiber input and its impact on reciprocity of Purkinje cell firing play an important role in motor coordination.