Cho W, Yoon Y, Liu S-L, Baek K, Sheng R
University of Illinois at Chicago, Chicago, IL, United States; Kyung Hee University, Yongin, South Korea.
Konkuk University, Seoul, South Korea.
Methods Enzymol. 2017;583:19-33. doi: 10.1016/bs.mie.2016.09.005. Epub 2016 Oct 18.
Membrane lipids are dynamic molecules and their local concentrations serve as regulatory signals for diverse biological processes. To achieve quantitative in situ imaging of various lipids, we developed a ratiometric analysis using fluorescence biosensors, each of which is composed of an engineered lipid-binding protein and a covalently attached solvatochromic fluorophore. To cover a wide range of lipid concentration, lipid-binding proteins are engineered to have variable dynamic ranges. These tunable sensors allow robust and sensitive in situ quantitative lipid imaging in mammalian cells, providing new insight into the spatiotemporal dynamics and fluctuation of key signaling lipids. The sensor strategy is also applicable to in situ quantification of multiple cellular lipids or a single lipid in the opposing leaflets of cell membranes.
膜脂是动态分子,其局部浓度作为多种生物学过程的调节信号。为了实现对各种脂质的定量原位成像,我们开发了一种使用荧光生物传感器的比率分析方法,每个传感器由工程化的脂质结合蛋白和共价连接的溶剂化显色荧光团组成。为了覆盖广泛的脂质浓度范围,对脂质结合蛋白进行工程改造以具有可变的动态范围。这些可调谐传感器能够在哺乳动物细胞中进行稳健且灵敏的原位脂质定量成像,为关键信号脂质的时空动态和波动提供了新的见解。该传感器策略也适用于对细胞膜相对小叶中的多种细胞脂质或单一脂质进行原位定量。