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An Enhanced Green Fluorescence Protein-based Assay for Studying Neurite Outgrowth in Primary Neurons
Published on: October 19, 2019
An Ultraresponsive Green Biosensor for Robust in Vivo Imaging of Synaptic Zinc Dynamics
Hao Zhang1,2, Manoj Kumar3, Raquel Correia4
1Department of Chemistry, University of Virginia, Charlottesville, Virginia 22904, United States.
None:
Despite its crucial role in neurotransmission and neural processing, direct in vivo measurement of Zn2+ transients has been hindered by the limited responsiveness and stability of available fluorescent indicators. Here, we report hpGRISZ (high-performance green indicator for synaptic Zn2+), an ultraresponsive, thermostable, turn-on green fluorescent biosensor engineered for high brightness, large dynamic range, and affinity tuned for detecting extracellular synaptic Zn2+ release. We comprehensively characterized hpGRISZ in vitro, in mammalian cells, and in vivo. A membrane-anchored version of hpGRISZ traffics robustly to the cell surface under physiological conditions, where it retains strong responsiveness and enables robust wide-field, two-photon, and fiber photometry recordings in awake mice. Using hpGRISZ, we visualized synaptic Zn2+ dynamics across multiple brain regions and neuronal circuits, revealing direct evidence of Zn2+ signaling during auditory processing in the cortex and during aversive responses in the amygdala. hpGRISZ thus establishes a versatile platform for dissecting the spatiotemporal dynamics of synaptic Zn2+ and its roles in neural circuit function in vivo.
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