首页> 外文期刊>Scientific reports. >Inhibitory luminopsins: genetically-encoded bioluminescent opsins for versatile, scalable, and hardware-independent optogenetic inhibition
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Inhibitory luminopsins: genetically-encoded bioluminescent opsins for versatile, scalable, and hardware-independent optogenetic inhibition

机译:抑制性发光素:通过基因编码的生物发光视蛋白,可进行多功能,可扩展且独立于硬件的光遗传学抑制

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Optogenetic techniques provide an unprecedented ability to precisely manipulate neural activity in the context of complex neural circuitry. Although the toolbox of optogenetic probes continues to expand at a rapid pace with more efficient and responsive reagents, hardware-based light delivery is still a major hurdle that limits its practical use in vivo . We have bypassed the challenges of external light delivery by directly coupling a bioluminescent light source (a genetically encoded luciferase) to an inhibitory opsin, which we term an inhibitory luminopsin (iLMO). iLMO was shown to suppress action potential firing and synchronous bursting activity in vitro in response to both external light and luciferase substrate. iLMO was further shown to suppress single-unit firing rate and local field potentials in the hippocampus of anesthetized rats. Finally, expression of iLMO was scaled up to multiple structures of the basal ganglia to modulate rotational behavior of freely moving animals in a hardware-independent fashion. This novel class of optogenetic probes demonstrates how non-invasive inhibition of neural activity can be achieved, which adds to the versatility, scalability, and practicality of optogenetic applications in freely behaving animals.
机译:光遗传学技术提供了前所未有的能力,可以在复杂的神经回路中精确地操纵神经活动。尽管光遗传学探针的工具箱将继续以更高效和响应更快的试剂快速发展,但基于硬件的光传输仍然是限制其在体内实际应用的主要障碍。我们通过将生物发光光源(遗传编码的荧光素酶)直接耦合到抑制性视蛋白(我们称之为抑制性发光素(iLMO))来绕过外部光传输的挑战。结果表明,iLMO能够抑制体外对外部光和荧光素酶底物的动作电位激发和同步爆发活性。进一步显示,iLMO可以抑制麻醉大鼠海马中的单位放电率和局部场电位。最后,iLMO的表达被扩大到基底神经节的多个结构,以独立于硬件的方式调节自由移动动物的旋转行为。这类新型的光遗传学探针展示了如何实现对神经活动的非侵入性抑制,从而增加了光遗传学应用在行为自由的动物中的多功能性,可扩展性和实用性。

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