Biomedical Sciences Graduate Program, University of Virginia, Charlottesville, VA 22903, USA; Department of Biology, University of Virginia, Charlottesville, VA 22903, USA; Department of Pharmacology, University of Virginia, Charlottesville, VA 22903, USA.
Department of Biology, University of Virginia, Charlottesville, VA 22903, USA.
Cell Rep. 2022 Jun 14;39(11):110962. doi: 10.1016/j.celrep.2022.110962.
Motor control of the striated esophagus originates in the nucleus ambiguus (nAmb), a vagal motor nucleus that also contains upper airway motor neurons and parasympathetic preganglionic neurons for the heart and lungs. We disambiguate nAmb neurons based on their genome-wide expression profiles, efferent circuitry, and ability to control esophageal muscles. Our single-cell RNA sequencing analysis predicts three molecularly distinct nAmb neuron subtypes and annotates them by subtype-specific marker genes: Crhr2, Vipr2, and Adcyap1. Mapping the axon projections of the nAmb neuron subtypes reveals that Crhr2 neurons innervate the esophagus, raising the possibility that they control esophageal muscle function. Accordingly, focal optogenetic stimulation of cholinergic Crhr2 fibers in the esophagus results in contractions. Activating Crhr2 neurons has no effect on heart rate, a key parasympathetic function of the nAmb, whereas activating all of the nAmb neurons robustly suppresses heart rate. Together, these results reveal a genetically defined circuit for motor control of the esophagus.
横纹食管的运动控制源于疑核(nAmb),这是一个迷走运动核,其中还包含上呼吸道运动神经元和心脏及肺部的副交感节前神经元。我们基于它们的全基因组表达谱、传出神经回路以及对食管肌肉的控制能力来区分 nAmb 神经元。我们的单细胞 RNA 测序分析预测了三种分子上不同的 nAmb 神经元亚型,并通过亚型特异性标记基因对其进行注释:Crhr2、Vipr2 和 Adcyap1。nAmb 神经元亚型的轴突投射图谱显示 Crhr2 神经元支配食管,这增加了它们控制食管肌肉功能的可能性。因此,对食管中胆碱能 Crhr2 纤维进行焦点光遗传刺激会导致收缩。激活 Crhr2 神经元对心率没有影响,心率是 nAmb 的关键副交感功能,而激活所有 nAmb 神经元则强烈抑制心率。这些结果共同揭示了一个用于食管运动控制的基因定义回路。