Suppr超能文献

用于无偏发现神经回路中功能连接细胞的光遗传学工具箱。

An optogenetic toolbox for unbiased discovery of functionally connected cells in neural circuits.

作者信息

Förster Dominique, Dal Maschio Marco, Laurell Eva, Baier Herwig

机构信息

Department Genes-Circuits-Behavior, Max Planck Institute of Neurobiology, Am Klopferspitz 18, 82152, Martinsried, Germany.

出版信息

Nat Commun. 2017 Jul 24;8(1):116. doi: 10.1038/s41467-017-00160-z.

Abstract

Optical imaging approaches have revolutionized our ability to monitor neural network dynamics, but by themselves are unable to link a neuron's activity to its functional connectivity. We present a versatile genetic toolbox, termed 'Optobow', for all-optical discovery of excitatory connections in vivo. By combining the Gal4-UAS system with Cre/lox recombination, we target the optogenetic actuator ChrimsonR and the sensor GCaMP6 to stochastically labeled, nonoverlapping and sparse subsets of neurons. Photostimulation of single cells using two-photon computer-generated holography evokes calcium responses in downstream neurons. Morphological reconstruction of neurite arbors, response latencies and localization of presynaptic markers suggest that some neuron pairs recorded here are directly connected, while others are two or more synapses apart from each other. With this toolbox, we discover wiring principles between specific cell types in the larval zebrafish tectum. Optobow should be useful for identification and manipulation of networks of interconnected neurons, even in dense neural tissues.Mechanisms of neural processing can only be understood by revealing patterns of connectivity among the cellular components of the circuit. Here the authors report a new genetic toolbox, 'Optobow', which enables simultaneous optogenetic activation of single neurons in zebrafish and measuring the activity of downstream neurons in the network.

摘要

光学成像方法彻底改变了我们监测神经网络动态的能力,但仅凭其自身无法将神经元的活动与其功能连接联系起来。我们提出了一种通用的基因工具箱,称为“Optobow”,用于在体内全光学发现兴奋性连接。通过将Gal4-UAS系统与Cre/lox重组相结合,我们将光遗传学激活器ChrimsonR和传感器GCaMP6靶向随机标记的、不重叠且稀疏的神经元子集。使用双光子计算机生成全息术对单个细胞进行光刺激会在下游神经元中引发钙反应。神经突分支的形态重建、反应潜伏期和突触前标记物的定位表明,这里记录的一些神经元对是直接相连的,而其他神经元对则相隔两个或更多突触。借助这个工具箱,我们发现了斑马鱼幼体视顶盖中特定细胞类型之间的连接原理。Optobow对于识别和操纵相互连接的神经元网络应该是有用的,即使是在密集的神经组织中。只有通过揭示回路细胞成分之间的连接模式,才能理解神经处理的机制。在此,作者报告了一种新的基因工具箱“Optobow”,它能够在斑马鱼中同时对单个神经元进行光遗传学激活,并测量网络中下游神经元的活动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df70/5524645/8684f20dd525/41467_2017_160_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验