首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >EphA4-mediated ipsilateral corticospinal tract misprojections are necessary for bilateral voluntary movements but not bilateral stereotypic locomotion
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EphA4-mediated ipsilateral corticospinal tract misprojections are necessary for bilateral voluntary movements but not bilateral stereotypic locomotion

机译:EphA4介导的同侧皮质脊髓束错误投射对于双边自愿运动是必要的,但对于双边定型运动则不是必需的

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In this study, we took advantage of the reported role of EphA4 in determining the contralateral spinal projection of the corticospinal tract (CST) to investigate the effects of ipsilateral misprojections on voluntary movements and stereotypic locomotion. Null EphA4 mutations produce robust ipsilateral CST misprojections, resulting in bilateral corticospinal tracts.Wehypothesize that a unilateral voluntary limb movement, not a stereotypic locomotor movement, will become a bilateral movement in EphA4 knock-out mice with a bilateral CST. However, in EphA4 full knock-outs, spinal interneurons also develop bilateral misprojections. Aberrant bilateral spinal circuits could thus transform unilateral corticospinal control signals into bilateral movements. We therefore studied mice with conditional forebrain deletion of the EphA4 gene under control by Emx1, a gene expressed in the forebrain that affects the developing CST but spares brainstem motor pathways and spinal motor circuits. We examined two conditional knock-outs targeting forebrain EphA4 during performance of stereotypic locomotion and voluntary movement: adaptive locomotion over obstacles and exploratory reaching. We found that the conditional knock-outs used alternate stepping, not hopping, during overground locomotion, suggesting normal central pattern generator function and supporting our hypothesis of minimal CST involvement in the moment-to-moment control of stereotypic locomotion. In contrast, the conditional knock-outs showed bilateral voluntary movements under conditions when single limb movements are normally produced and, as a basis for this aberrant control, developed a bilateral motormapin motor cortex that is driven by the aberrant ipsilateral CST misprojections. Therefore, a specific change in CST connectivity is associated with and explains a change in voluntary movement.
机译:在这项研究中,我们利用了报道的EphA4在确定皮质脊髓束(CST)的对侧脊柱投射中的作用,以研究同侧错误投射对自发运动和定型运动的影响。无效的EphA4突变会导致健壮的同侧CST错误投射,从而导致双侧皮质脊髓束道。但是,在EphA4完全敲除中,脊髓神经元也发展为双侧错靶。因此,异常的双侧脊柱回路可将单侧皮质脊髓控制信号转换为双侧运动。因此,我们研究了在Emx1的控制下有条件前脑缺失EphA4基因的小鼠,Emx1是在前脑中表达的基因,其影响发育中的CST,但保留了脑干运动路径和脊髓运动回路。我们检查了在定型运动和自愿运动过程中针对前脑EphA4的两个条件敲除:对障碍物的适应性运动和探索性到达。我们发现有条件的敲除在地面运动过程中使用了交替的步进,而不是跳跃,这表明正常的中央模式生成器功能并支持我们关于刻板印象运动的瞬间控制的最小CST假设。相反,在正常产生单肢运动的条件下,有条件的基因敲除显示出双边自愿运动,并且作为这种异常控制的基础,发展了由同侧CST异常投射驱动的双边运动皮皮运动皮层。因此,CST连接性的特定变化与自愿运动的变化相关联并解释了这种变化。

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