谷氨酸受体
荧光团
荧光
AMPA受体
生物物理学
突触
化学
半胱氨酸
生物化学
生物
神经科学
受体
量子力学
物理
酶
作者
Kenji Takikawa,Daisuke Asanuma,Shigeyuki Namiki,Hirokazu Sakamoto,Tetsuro Ariyoshi,Naoya Kimpara,Kenzo Hirose
标识
DOI:10.1002/anie.201407181
摘要
Abstract Fluorescent sensors are powerful tools for visualizing cellular molecular dynamics. We present a high‐throughput screening system, designated hybrid‐type fluorescence indicator development (HyFInD), to identify optimal position‐specific fluorophore labeling in hybrid‐type sensors consisting of combinations of ligand‐binding protein mutants with small molecular fluorophores. We screened sensors for glutamate among hybrid molecules obtained by the reaction of four cysteine‐reactive fluorescence probes with a set of cysteine‐scanning mutants of the 274 amino acid S1S2 domain of AMPA‐type glutamate receptor GluA2 subunit. HyFInD identified a glutamate‐responsive probe (enhanced glutamate optical sensor: eEOS) with a dynamic range >2400 %, good photostability, and high selectivity. When eEOS was specifically tethered to neuronal surfaces, it reliably visualized the spatiotemporal dynamics of glutamate release at single synapses, revealing synapse‐to‐synapse heterogeneity of short‐term plasticity.
科研通智能强力驱动
Strongly Powered by AbleSci AI