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Engineered BRET-Based Biologic Light Sources Enable Spatiotemporal Control over Diverse Optogenetic Systems

机译:基于精神的BROT基生物光源使得瞬间对不同的光学系统进行时尚控制

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摘要

Light-inducible optogenetic systems offer precise spatiotemporal control over a myriad of biologic processes. Unfortunately, current systems are inherently limited by their dependence on external light sources for their activation. Further, the utility of laser/LED-based illumination strategies are often constrained by the need for invasive surgical procedures to deliver such devices and local heat production, photobleaching and phototoxicity that compromises cell and tissue viability. To overcome these limitations, we developed a novel BRET-activated optogenetics (BEACON) system that employs biologic light to control optogenetic tools. BEACON is driven by self-illuminating bioluminescent-fluorescent proteins that generate "spectrally tuned" biologic light via bioluminescence resonance energy transfer (BRET). Notably, BEACON robustly activates a variety of commonly used optogenetic systems in a spatially restricted fashion, and at physiologically relevant time scales, to levels that are achieved by conventional laser/LED light sources.
机译:光诱导型光学系统提供精确的时尚对无数的生物过程。不幸的是,目前的系统本质上受到它们对外部光源的依赖性的影响。此外,基于激光/ LED的照明策略的效用通常受到侵入性外科手术的需要,以提供这种装置和局部热量生产,光漂白和光毒性,该装置损害细胞和组织活力。为了克服这些限制,我们开发了一种新型布雷特激活的Optogentics(信标)系统,采用生物光来控制致敏工具。信标由自亮的生物发光荧光蛋白驱动,通过生物发光谐振能量转移(BRET)产生“光谱调谐”生物光。值得注意的是,信标以空间限制的方式鲁棒地激活各种常用的致灭毒系统,并且在生理上相关的时间尺度,通过传统激光/ LED光源实现的水平。

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