Department of Genetics, Stanford University School of Medicine, Stanford, CA, USA.
Stanford Neurosciences Graduate Program, Stanford University School of Medicine, Stanford, CA, USA.
Nat Neurosci. 2021 Apr;24(4):572-583. doi: 10.1038/s41593-020-00795-0. Epub 2021 Feb 15.
The spinal cord is a fascinating structure that is responsible for coordinating movement in vertebrates. Spinal motor neurons control muscle activity by transmitting signals from the spinal cord to diverse peripheral targets. In this study, we profiled 43,890 single-nucleus transcriptomes from the adult mouse spinal cord using fluorescence-activated nuclei sorting to enrich for motor neuron nuclei. We identified 16 sympathetic motor neuron clusters, which are distinguishable by spatial localization and expression of neuromodulatory signaling genes. We found surprising skeletal motor neuron heterogeneity in the adult spinal cord, including transcriptional differences that correlate with electrophysiologically and spatially distinct motor pools. We also provide evidence for a novel transcriptional subpopulation of skeletal motor neuron (γ*). Collectively, these data provide a single-cell transcriptional atlas ( http://spinalcordatlas.org ) for investigating the organizing molecular logic of adult motor neuron diversity, as well as the cellular and molecular basis of motor neuron function in health and disease.
脊髓是一个令人着迷的结构,负责协调脊椎动物的运动。脊髓运动神经元通过将信号从脊髓传递到不同的外周靶标来控制肌肉活动。在这项研究中,我们使用荧光激活核分选技术对成年小鼠脊髓的 43890 个单核转录组进行了分析,以富集运动神经元核。我们鉴定了 16 个交感运动神经元簇,这些簇可通过空间定位和神经调质信号基因的表达来区分。我们在成年脊髓中发现了令人惊讶的骨骼运动神经元异质性,包括与电生理和空间上不同的运动池相关的转录差异。我们还为骨骼运动神经元 (γ*) 的一个新的转录亚群提供了证据。总的来说,这些数据为研究成年运动神经元多样性的组织分子逻辑以及运动神经元在健康和疾病中的功能的细胞和分子基础提供了一个单细胞转录图谱 (http://spinalcordatlas.org)。