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Using light to control signaling cascades in live neurons.

机译:使用光控制活神经元中的信号级联。

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摘要

Understanding the complexity of neuronal biology requires the manipulation of cellular processes with high specificity and spatio-temporal precision. The recent development of synthetic photo-activatable proteins designed using the light-oxygen-voltage and phytochrome domains provides a new set of tools for genetically targeted optical control of cell signaling. Their modular design, functional diversity, precisely controlled activity and in vivo applicability offer many advantages for investigating neuronal function. Although designing these proteins is still a considerable challenge, future advances in rational protein design and a deeper understanding of their photoactivation mechanisms will allow the development of the next generation of optogenetic techniques.
机译:要了解神经元生物学的复杂性,就需要以高度的特异性和时空精度来操纵细胞过程。使用光-氧-电压和植物色素结构域设计的合成的可光激活蛋白质的最新发展为遗传上靶向控制细胞信号传导的光学提供了一组新工具。它们的模块化设计,功能多样性,精确控制的活性和体内适用性为研究神经元功能提供了许多优势。尽管设计这些蛋白质仍然是一个巨大的挑战,但是合理的蛋白质设计的未来进展以及对它们光激活机制的更深入的了解将使下一代光遗传技术的发展成为可能。

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