Specific and behaviorally consequential astrocyte Gq GPCR signaling attenuation in vivo with iβARK

使用 iβARK 在体内衰减特定且对行为有影响的星形胶质细胞 Gq GPCR 信号

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作者:Jun Nagai, Arash Bellafard, Zhe Qu, Xinzhu Yu, Matthias Ollivier, Mohitkumar R Gangwani, Blanca Diaz-Castro, Giovanni Coppola, Sarah M Schumacher, Peyman Golshani, Viviana Gradinaru, Baljit S Khakh

Abstract

Astrocytes respond to neurotransmitters and neuromodulators using G-protein-coupled receptors (GPCRs) to mediate physiological responses. Despite their importance, there has been no method to genetically, specifically, and effectively attenuate astrocyte Gq GPCR pathways to explore consequences of this prevalent signaling mechanism in vivo. We report a 122-residue inhibitory peptide from β-adrenergic receptor kinase 1 (iβARK; and inactive D110A control) to attenuate astrocyte Gq GPCR signaling. iβARK significantly attenuated Gq GPCR Ca2+ signaling in brain slices and, in vivo, altered behavioral responses, spared other GPCR responses, and did not alter astrocyte spontaneous Ca2+ signals, morphology, electrophysiological properties, or gene expression in the striatum. Furthermore, brain-wide attenuation of astrocyte Gq GPCR signaling with iβARK using PHP.eB adeno-associated viruses (AAVs), when combined with c-Fos mapping, suggested nuclei-specific contributions to behavioral adaptation and spatial memory. iβARK extends the toolkit needed to explore functions of astrocyte Gq GPCR signaling within neural circuits in vivo.

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