Literature DB >> 32574560

Soma-Targeted Imaging of Neural Circuits by Ribosome Tethering.

Yiming Chen1, Heeun Jang2, Perry W E Spratt1, Seher Kosar3, David E Taylor1, Rachel A Essner3, Ling Bai3, David E Leib1, Tzu-Wei Kuo1, Yen-Chu Lin3, Mili Patel1, Aygul Subkhangulova2, Saul Kato4, Evan H Feinberg5, Kevin J Bender4, Zachary A Knight6, Jennifer L Garrison7.   

Abstract

Neuroscience relies on techniques for imaging the structure and dynamics of neural circuits, but the cell bodies of individual neurons are often obscured by overlapping fluorescence from axons and dendrites in surrounding neuropil. Here, we describe two strategies for using the ribosome to restrict the expression of fluorescent proteins to the neuronal soma. We show first that a ribosome-tethered nanobody can be used to trap GFP in the cell body, thereby enabling direct visualization of previously undetectable GFP fluorescence. We then design a ribosome-tethered GCaMP for imaging calcium dynamics. We show that this reporter faithfully tracks somatic calcium dynamics in the mouse brain while eliminating cross-talk between neurons caused by contaminating neuropil. In worms, this reporter enables whole-brain imaging with faster kinetics and brighter fluorescence than commonly used nuclear GCaMPs. These two approaches provide a general way to enhance the specificity of imaging in neurobiology.
Copyright © 2020. Published by Elsevier Inc.

Entities:  

Keywords:  C. elegans; GCaMP; calcium imaging; ribo-GCaMP; ribosomal tagging; soma-targeting; whole-brain imaging

Mesh:

Substances:

Year:  2020        PMID: 32574560      PMCID: PMC7540731          DOI: 10.1016/j.neuron.2020.05.005

Source DB:  PubMed          Journal:  Neuron        ISSN: 0896-6273            Impact factor:   18.688


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