various genetically encoded molecular tools that can detect and perturb the target biochemical activities at a subcellular level have been developed
First-pass extracted concept
genetically encoded molecular tools for subcellular GPCR signaling
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These molecular tools have applications for studying the spatiotemporal organization of GPCR signaling in living cells to obtain a more comprehensive understanding of signaling architecture.
Spatiotemporal organization of GPCR signaling is essential for efficient control of multifaceted signaling pathways.
Fluorescent protein-based biosensors and related molecular tools allow direct elucidation of spatiotemporal mechanisms of GPCR signaling regulation at a subcellular level.
Genetically encoded molecular tools have been developed that can detect and perturb target biochemical activities at a subcellular level to study GPCR signaling structure and cellular functionality.