荧光团
荧光
绿色荧光蛋白
斯托克斯位移
对偶(语法数字)
化学
生物物理学
融合
物理
生物化学
生物
光学
艺术
哲学
文学类
基因
语言学
作者
J. Obinna Ejike,Mayuri Sadoine,Yi Shen,Yuuma Ishikawa,Erdem Sunal,Sebastian Hänsch,Anna Hamacher,Wolf B. Frommer,Michael M. Wudick,Robert E. Campbell,Thomas J. Kleist
出处
期刊:Biochemistry
[American Chemical Society]
日期:2023-12-19
卷期号:63 (1): 171-180
标识
DOI:10.1021/acs.biochem.3c00451
摘要
Genetically encoded sensors enable quantitative imaging of analytes in live cells. Sensors are commonly constructed by combining ligand-binding domains with one or more sensitized fluorescent protein (FP) domains. Sensors based on a single FP can be susceptible to artifacts caused by changes in sensor levels or distribution in vivo. To develop intensiometric sensors with the capacity for ratiometric quantification, dual-FP Matryoshka sensors were generated by using a single cassette with a large Stokes shift (LSS) reference FP nested within the reporter FP (cpEGFP). Here, we present a genetically encoded calcium sensor that employs green apple (GA) Matryoshka technology by incorporating a newly designed red LSSmApple fluorophore. LSSmApple matures faster and provides an optimized excitation spectrum overlap with cpEGFP, allowing for monochromatic coexcitation with blue light. The LSS of LSSmApple results in improved emission spectrum separation from cpEGFP, thereby minimizing fluorophore bleed-through and facilitating imaging using standard dichroic and red FP (RFP) emission filters. We developed an image analysis pipeline for yeast (
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