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Transcriptional regulation of mouse hypoglossal motor neuron somatotopic map formation

机译:小鼠舌下运动神经元体位图形成的转录调控

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摘要

Somatic motor neurons in the hypoglossal nucleus innervate tongue muscles controlling vital functions such as chewing, swallowing and respiration. Formation of functional hypoglossal nerve circuits depends on the establishment of precise hypoglossal motor neuron maps correlating with specific tongue muscle innervations. Little is known about the molecular mechanisms controlling mammalian hypoglossal motor neuron topographic map formation. Here we show that combinatorial expression of transcription factors Runx1, SCIP and FoxP1 defines separate mouse hypoglossal motor neuron groups with different topological, neurotransmitter and calcium-buffering phenotypes. Runx1 and SCIP are coexpressed in ventromedial hypoglossal motor neurons involved in control of tongue protrusion whereas FoxP1 is expressed in dorsomedial motor neurons associated with tongue retraction. Establishment of separate hypoglossal motor neuron maps depends in part on Runx1-mediated suppression of ventrolateral and dorsomedial motor neuron phenotypes and regulation of FoxP1 expression pattern. These findings suggest that combinatorial actions of Runx1, SCIP and FoxP1 are important for mouse hypoglossal nucleus somatotopic map formation.
机译:舌下核中的躯体运动神经元支配舌头肌肉,从而控制诸如咀嚼,吞咽和呼吸等重要功能。功能性舌下神经回路的形成取决于与特定舌肌神经支配相关的精确的舌下运动神经元图的建立。关于控制哺乳动物舌下运动神经元地形图形成的分子机制知之甚少。在这里,我们显示转录因子Runx1,SCIP和FoxP1的组合表达定义了具有不同拓扑,神经递质和钙缓冲表型的单独的小鼠舌下运动神经元组。 Runx1和SCIP在参与舌突控制的腹膜舌下运动神经元中共表达,而FoxP1在与舌缩回相关的背膜运动神经元中表达。单独的舌下运动神经元图谱的建立部分取决于Runx1介导的腹侧和背侧运动神经元表型的抑制和FoxP1表达模式的调节。这些发现表明Runx1,SCIP和FoxP1的组合作用对于小鼠舌下核体位图形成很重要。

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