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High throughput instrument to screen fluorescent proteins under two-photon excitation

机译:高通量仪器在双光子激发下筛选荧光蛋白

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摘要

Two-photon microscopy together with fluorescent proteins and fluorescent protein-based biosensors are commonly used tools in neuroscience. To enhance their experimental scope, it is important to optimize fluorescent proteins for two-photon excitation. Directed evolution of fluorescent proteins under one-photon excitation is common, but many one-photon properties do not correlate with two-photon properties. A simple system for expressing fluorescent protein mutants is E. coli colonies on an agar plate. The small focal volume of two-photon excitation makes creating a high throughput screen in this system a challenge for a conventional point-scanning approach. We present an instrument and accompanying software that solves this challenge by selectively scanning each colony based on a colony map captured under one-photon excitation. This instrument, called the GIZMO, can measure the two-photon excited fluorescence of 10,000 E. coli colonies in 7 hours. We show that the GIZMO can be used to evolve a fluorescent protein under two-photon excitation.
机译:双光子显微镜与荧光蛋白和荧光蛋白的生物传感器一起是常用的神经科学工具。为了增强其实验范围,重要的是优化两光晶激发的荧光蛋白。在一光子激发下的荧光蛋白的定向演化是常见的,但许多单光子性质与双光子性质不相关。用于表达荧光蛋白突变体的简单系统是琼脂平板上的大肠杆菌菌落。双光子激励的小焦距使得在该系统中创造了一个高吞吐量屏幕,这是传统点扫描方法的挑战。我们介绍了一种仪器和附带的软件,通过基于在一个光子激励下捕获的殖民地映射选择性地扫描每个菌落来解决这一挑战。该仪器称为Gizmo,可以在7小时内测量10,000大肠杆菌菌落的双光子激发荧光。我们表明Gizmo可用于在双光子激发下演化荧光蛋白。

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