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一种设计的腺相关病毒变体允许高效逆行进入投射神经元。

A Designer AAV Variant Permits Efficient Retrograde Access to Projection Neurons.

作者信息

Tervo D Gowanlock R, Hwang Bum-Yeol, Viswanathan Sarada, Gaj Thomas, Lavzin Maria, Ritola Kimberly D, Lindo Sarah, Michael Susan, Kuleshova Elena, Ojala David, Huang Cheng-Chiu, Gerfen Charles R, Schiller Jackie, Dudman Joshua T, Hantman Adam W, Looger Loren L, Schaffer David V, Karpova Alla Y

机构信息

Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, VA 20147, USA.

Department of Chemical Engineering and Helen Wills Neuroscience Institute, University of California, Berkeley, Berkeley, CA 94720, USA.

出版信息

Neuron. 2016 Oct 19;92(2):372-382. doi: 10.1016/j.neuron.2016.09.021. Epub 2016 Oct 6.

Abstract

Efficient retrograde access to projection neurons for the delivery of sensors and effectors constitutes an important and enabling capability for neural circuit dissection. Such an approach would also be useful for gene therapy, including the treatment of neurodegenerative disorders characterized by pathological spread through functionally connected and highly distributed networks. Viral vectors, in particular, are powerful gene delivery vehicles for the nervous system, but all available tools suffer from inefficient retrograde transport or limited clinical potential. To address this need, we applied in vivo directed evolution to engineer potent retrograde functionality into the capsid of adeno-associated virus (AAV), a vector that has shown promise in neuroscience research and the clinic. A newly evolved variant, rAAV2-retro, permits robust retrograde access to projection neurons with efficiency comparable to classical synthetic retrograde tracers and enables sufficient sensor/effector expression for functional circuit interrogation and in vivo genome editing in targeted neuronal populations. VIDEO ABSTRACT.

摘要

高效逆行进入投射神经元以递送传感器和效应器是神经回路剖析的一项重要且具有推动作用的能力。这种方法对于基因治疗也将是有用的,包括治疗以通过功能连接且高度分布的网络进行病理传播为特征的神经退行性疾病。特别是病毒载体,是用于神经系统的强大基因递送工具,但所有可用工具都存在逆行运输效率低下或临床潜力有限的问题。为满足这一需求,我们应用体内定向进化技术,将强大的逆行功能设计到腺相关病毒(AAV)的衣壳中,AAV是一种在神经科学研究和临床中已显示出前景的载体。一种新进化的变体rAAV2-retro,能够以与经典合成逆行示踪剂相当的效率强大地逆行进入投射神经元,并能在靶向神经元群体中实现足够的传感器/效应器表达,用于功能回路询问和体内基因组编辑。视频摘要。

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