Aggarwal Abhi, Negrean Adrian, Chen Yang, Iyer Rishyashring, Reep Daniel, Liu Anyi, Palutla Anirudh, Xie Michael E, MacLennan Bryan J, Hagihara Kenta M, Kinsey Lucas W, Sun Julianna L, Yao Pantong, Zheng Jihong, Tsang Arthur, Tsegaye Getahun, Zhang Yonghai, Patel Ronak H, Arthur Benjamin J, Hiblot Julien, Leippe Philipp, Tarnawski Miroslaw, Marvin Jonathan S, Vevea Jason D, Turaga Srinivas C, Tebo Alison G, Carandini Matteo, Federico Rossi L, Kleinfeld David, Konnerth Arthur, Svoboda Karel, Turner Glenn C, Hasseman Jeremy, Podgorski Kaspar
Allen Institute for Neural Dynamics, Seattle, Washington, USA.
Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, Virginia, USA.
bioRxiv. 2025 Mar 31:2025.03.20.643984. doi: 10.1101/2025.03.20.643984.
Identifying the input-output operations of neurons requires measurements of synaptic transmission simultaneously at many of a neuron's thousands of inputs in the intact brain. To facilitate this goal, we engineered and screened 3365 variants of the fluorescent protein glutamate indicator iGluSnFR3 in neuron culture, and selected variants in the mouse visual cortex. Two variants have high sensitivity, fast activation (< 2 ms) and deactivation times tailored for recording large populations of synapses (iGluSnFR4s, 153 ms) or rapid dynamics (iGluSnFR4f, 26 ms). By imaging action-potential evoked signals on axons and visually-evoked signals on dendritic spines, we show that iGluSnFR4s/4f primarily detect local synaptic glutamate with single-vesicle sensitivity. The indicators detect a wide range of naturalistic synaptic transmission, including in the vibrissal cortex layer 4 and in hippocampal CA1 dendrites. iGluSnFR4 increases the sensitivity and scale (4s) or speed (4f) of tracking information flow in neural networks .
识别神经元的输入-输出操作需要在完整大脑中,同时对神经元数千个输入中的许多突触传递进行测量。为了实现这一目标,我们在神经元培养中设计并筛选了荧光蛋白谷氨酸指示剂iGluSnFR3的3365个变体,并在小鼠视觉皮层中选择了变体。两个变体具有高灵敏度、快速激活(<2毫秒)和失活时间,分别针对记录大量突触(iGluSnFR4s,153毫秒)或快速动力学(iGluSnFR4f,26毫秒)进行了调整。通过对轴突上动作电位诱发信号和树突棘上视觉诱发信号进行成像,我们表明iGluSnFR4s/4f主要以单囊泡灵敏度检测局部突触谷氨酸。这些指示剂可检测广泛的自然突触传递,包括在触须皮层第4层和海马CA1树突中。iGluSnFR4提高了神经网络中跟踪信息流的灵敏度和规模(4s)或速度(4f)。