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光驱动质子泵实现高性能基因靶向光学神经沉默。

High-performance genetically targetable optical neural silencing by light-driven proton pumps.

机构信息

The MIT Media Laboratory, Synthetic Neurobiology Group, and Department of Biological Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

Nature. 2010 Jan 7;463(7277):98-102. doi: 10.1038/nature08652.

Abstract

The ability to silence the activity of genetically specified neurons in a temporally precise fashion would provide the opportunity to investigate the causal role of specific cell classes in neural computations, behaviours and pathologies. Here we show that members of the class of light-driven outward proton pumps can mediate powerful, safe, multiple-colour silencing of neural activity. The gene archaerhodopsin-3 (Arch) from Halorubrum sodomense enables near-100% silencing of neurons in the awake brain when virally expressed in the mouse cortex and illuminated with yellow light. Arch mediates currents of several hundred picoamps at low light powers, and supports neural silencing currents approaching 900 pA at light powers easily achievable in vivo. Furthermore, Arch spontaneously recovers from light-dependent inactivation, unlike light-driven chloride pumps that enter long-lasting inactive states in response to light. These properties of Arch are appropriate to mediate the optical silencing of significant brain volumes over behaviourally relevant timescales. Arch function in neurons is well tolerated because pH excursions created by Arch illumination are minimized by self-limiting mechanisms to levels comparable to those mediated by channelrhodopsins or natural spike firing. To highlight how proton pump ecological and genomic diversity may support new innovation, we show that the blue-green light-drivable proton pump from the fungus Leptosphaeria maculans (Mac) can, when expressed in neurons, enable neural silencing by blue light, thus enabling alongside other developed reagents the potential for independent silencing of two neural populations by blue versus red light. Light-driven proton pumps thus represent a high-performance and extremely versatile class of 'optogenetic' voltage and ion modulator, which will broadly enable new neuroscientific, biological, neurological and psychiatric investigations.

摘要

能够以时间精确的方式沉默基因指定的神经元的活动,将为研究特定细胞类型在神经计算、行为和病理学中的因果作用提供机会。在这里,我们展示了光驱动外向质子泵类的成员可以介导强大、安全、多色的神经活动沉默。来自 Halorubrum sodomense 的古菌视紫红质-3 (Arch) 基因在小鼠皮层中病毒表达并被黄光照射时,可使清醒大脑中的神经元接近 100%沉默。Arch 在低光功率下产生数百皮安的电流,并且在体内容易实现的光功率下支持接近 900 皮安的神经沉默电流。此外,与对光响应进入长时间失活状态的光驱动氯离子泵不同,Arch 会自发地从光依赖性失活中恢复。Arch 的这些特性适合介导在行为相关时间尺度上对大量脑体积进行光学沉默。由于 Arch 照明产生的 pH 偏移通过自限机制被最小化到与通道视紫红质或自然尖峰放电介导的水平相当的水平,因此 Arch 在神经元中的功能得到了很好的耐受。为了突出质子泵的生态和基因组多样性如何支持新的创新,我们展示了来自真菌 Leptosphaeria maculans (Mac) 的蓝绿光驱动质子泵,当在神经元中表达时,可以通过蓝光实现神经沉默,从而与其他已开发的试剂一起,有可能通过蓝光与红光独立地对两个神经元群体进行沉默。因此,光驱动质子泵代表了一类高性能、极其多功能的“光遗传学”电压和离子调节剂,将广泛支持新的神经科学、生物学、神经学和精神病学研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/305a/2939492/c31c55c5c413/nihms-158466-f0001.jpg

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