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Neutralization of Nogo-A enhances synaptic plasticity in the rodent motor cortex and improves motor learning in vivo

机译:中和Nogo-A可增强啮齿动物运动皮层的突触可塑性并改善体内运动学习

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摘要

The membrane protein Nogo-A is known as an inhibitor of axonal outgrowth and regeneration in the CNS. However, its physiological functions in the normal adult CNS remain incompletely understood. Here, we investigated the role of Nogo-A in cortical synaptic plasticity and motor learning in the uninjured adult rodent motor cortex. Nogo-A and its receptor NgR1 are present at cortical synapses. Acute treatment of slices with function-blocking antibodies (Abs) against Nogo-A or against NgR1 increased long-term potentiation (LTP) induced by stimulation of layer 2/3 horizontal fibers. Furthermore, anti-Nogo-A Ab treatment increased LTP saturation levels, whereas long-term depression remained unchanged, thus leading to an enlarged synaptic modification range. In vivo, intrathecal application of Nogo-A-blocking Abs resulted in a higher dendritic spine density at cortical pyramidal neurons due to an increase in spine formation as revealed by in vivo two-photon microscopy. To investigate whether these changes in synaptic plasticity correlate with motor learning, we trained rats to learn a skilled forelimb-reaching task while receiving anti-Nogo-A Abs. Learning of this cortically controlled precision movement was improved upon anti-Nogo-A Ab treatment. Our results identify Nogo-A as an influential molecular modulator of synaptic plasticity and as a regulator for learning of skilled movements in the motor cortex.
机译:膜蛋白Nogo-A已知是中枢神经系统中轴突生长和再生的抑制剂。然而,其在正常成人中枢神经系统中的生理功能仍未完全了解。在这里,我们调查了Nogo-A在未受伤的成年啮齿动物运动皮层中在皮质突触可塑性和运动学习中的作用。 Nogo-A及其受体NgR1存在于皮质突触中。使用针对Nogo-A或针对NgR1的功能阻断抗体(Abs)进行的急性处理,可增加2/3层水平纤维的刺激诱导的长期增效(LTP)。此外,抗Nogo-A Ab治疗可增加LTP饱和度水平,而长期抑郁症则保持不变,从而导致突触修饰范围扩大。在体内,Nogo-A阻断抗体的鞘内应用导致皮质锥体神经元处较高的树突棘密度,这是由于体内双光子显微镜显示的脊柱形成增加所致。为了研究突触可塑性的这些变化是否与运动学习相关,我们训练了大鼠在接受抗Nogo-A Abs的同时学习熟练的前肢伸展任务。抗Nogo-A Ab治疗改善了这种皮质控制的精确运动的学习。我们的研究结果确定Nogo-A是一种有影响力的突触可塑性分子调节剂,并且是学习运动皮层中熟练运动的调节剂。

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