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A genetically encoded far-red fluorescent indicator for imaging synaptically released Zn2.


ABSTRACT: Synaptic zinc ion (Zn2+) has emerged as a key neuromodulator in the brain. However, the lack of research tools for directly tracking synaptic Zn2+ in the brain of awake animals hinders our rigorous understanding of the physiological and pathological roles of synaptic Zn2+. In this study, we developed a genetically encoded far-red fluorescent indicator for monitoring synaptic Zn2+ dynamics in the nervous system. Our engineered far-red fluorescent indicator for synaptic Zn2+ (FRISZ) displayed a substantial Zn2+-specific turn-on response and low-micromolar affinity. We genetically anchored FRISZ to the mammalian extracellular membrane via a transmembrane (TM) ⍺ helix and characterized the resultant FRISZ-TM construct at the mammalian cell surface. We used FRISZ-TM to image synaptic Zn2+ in the auditory cortex in acute brain slices and awake mice in response to electric and sound stimuli, respectively. Thus, this study establishes a technology for studying the roles of synaptic Zn2+ in the nervous system.

SUBMITTER: Wu T 

PROVIDER: S-EPMC9977179 | biostudies-literature | 2023 Mar

REPOSITORIES: biostudies-literature

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A genetically encoded far-red fluorescent indicator for imaging synaptically released Zn<sup>2</sup>.

Wu Tianchen T   Kumar Manoj M   Zhang Jing J   Zhao Shengyu S   Drobizhev Mikhail M   McCollum Mason M   Anderson Charles T CT   Wang Ying Y   Pokorny Antje A   Tian Xiaodong X   Zhang Yiyu Y   Tzounopoulos Thanos T   Ai Hui-Wang HW  

Science advances 20230301 9


Synaptic zinc ion (Zn<sup>2+</sup>) has emerged as a key neuromodulator in the brain. However, the lack of research tools for directly tracking synaptic Zn<sup>2+</sup> in the brain of awake animals hinders our rigorous understanding of the physiological and pathological roles of synaptic Zn<sup>2+</sup>. In this study, we developed a genetically encoded far-red fluorescent indicator for monitoring synaptic Zn<sup>2+</sup> dynamics in the nervous system. Our engineered far-red fluorescent indica  ...[more]

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