采用轴突特异性钙成像技术在体内测量传入活动。
In vivo measurement of afferent activity with axon-specific calcium imaging.
作者信息
Broussard Gerard Joey, Liang Yajie, Fridman Marina, Unger Elizabeth K, Meng Guanghan, Xiao Xian, Ji Na, Petreanu Leopoldo, Tian Lin
机构信息
Department of Biochemistry and Molecular Medicine, University of California Davis, Davis, CA, USA.
Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, VA, USA.
出版信息
Nat Neurosci. 2018 Sep;21(9):1272-1280. doi: 10.1038/s41593-018-0211-4. Epub 2018 Aug 20.
In vivo calcium imaging from axons provides direct interrogation of afferent neural activity, informing the neural representations that a local circuit receives. Unlike in somata and dendrites, axonal recording of neural activity-both electrically and optically-has been difficult to achieve, thus preventing comprehensive understanding of neuronal circuit function. Here we developed an active transportation strategy to enrich GCaMP6, a genetically encoded calcium indicator, uniformly in axons with sufficient brightness, signal-to-noise ratio, and photostability to allow robust, structure-specific imaging of presynaptic activity in awake mice. Axon-targeted GCaMP6 enables frame-to-frame correlation for motion correction in axons and permits subcellular-resolution recording of axonal activity in previously inaccessible deep-brain areas. We used axon-targeted GCaMP6 to record layer-specific local afferents without contamination from somata or from intermingled dendrites in the cortex. We expect that axon-targeted GCaMP6 will facilitate new applications in investigating afferent signals relayed by genetically defined neuronal populations within and across specific brain regions.
对轴突进行体内钙成像可直接探究传入神经活动,从而了解局部回路所接收的神经表征。与在胞体和树突中不同,对神经活动进行轴突记录(包括电记录和光记录)一直难以实现,因此阻碍了对神经元回路功能的全面理解。在此,我们开发了一种主动运输策略,以在轴突中均匀富集基因编码钙指示剂GCaMP6,其具有足够的亮度、信噪比和光稳定性,能够在清醒小鼠中对突触前活动进行可靠的、结构特异性成像。靶向轴突的GCaMP6可实现轴突运动校正的逐帧相关性,并允许在以前无法进入的脑深部区域进行亚细胞分辨率的轴突活动记录。我们使用靶向轴突的GCaMP6来记录层特异性局部传入神经,而不会受到皮层中胞体或交织树突的污染。我们预计,靶向轴突的GCaMP6将有助于在研究特定脑区内和跨特定脑区的基因定义神经元群体所传递的传入信号方面开展新的应用。