光遗传学
视蛋白
互补
生物
神经科学
视紫红质
细胞生物学
表型
遗传学
视网膜
生物化学
基因
作者
Savanna S. Skeeters,Tyler Camp,Huaxun Fan,Kai Zhang
标识
DOI:10.1016/j.coph.2022.102236
摘要
A comprehensive understanding of signaling mechanisms helps interpret fundamental biological processes and restore cell behavior from pathological conditions. Signaling outcome depends not only on the activity of each signaling component but also on their dynamic interaction in time and space, which remains challenging to probe by biochemical and cell-based assays. Opsin-based optogenetics has transformed neural science research with its spatiotemporal modulation of the activity of excitable cells. Motivated by this advantage, opsin-free optogenetics extends the power of light to a larger spectrum of signaling molecules. This review summarizes commonly used opsin-free optogenetic strategies, presents a historical overview of split protein complementation, and highlights the adaptation of split protein recombination as optogenetic sensors and actuators.
科研通智能强力驱动
Strongly Powered by AbleSci AI