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重组酶独立型 AAV 用于顺行跨突触示踪。

Recombinase-independent AAV for anterograde transsynaptic tracing.

机构信息

Department of Molecular Biology and Genetics, Aarhus University, Aarhus, Denmark.

DANDRITE, The Danish Research Institute of Translational Neuroscience, Aarhus, Denmark.

出版信息

Mol Brain. 2023 Sep 15;16(1):66. doi: 10.1186/s13041-023-01053-7.

Abstract

Viral transsynaptic labeling has become indispensable for investigating the functional connectivity of neural circuits in the mammalian brain. Adeno-associated virus serotype 1 (AAV1) allows for anterograde transneuronal labeling and manipulation of postsynaptic neurons. However, it is limited to delivering an AAV1 expressing a recombinase which relies on using transgenic animals or genetic access to postsynaptic neurons. We reasoned that a strong expression level could overcome this limitation. To this end, we used a self-complementary AAV of serotype 1 (scAAV1) under a strong promoter (CAG). We demonstrated the anterograde transneuronal efficiency of scAAV1 by delivering a fluorescent marker in mouse retina-superior colliculus and thalamic-amygdala pathways in a recombinase-independent manner in the mouse brain. In addition to investigating neuronal connectivity, anterograde transsynaptic AAVs with a strong promoter may be suitable for functional mapping and imaging.

摘要

病毒跨突触标记已成为研究哺乳动物大脑神经回路功能连接不可或缺的手段。腺相关病毒血清型 1(AAV1)可用于顺行跨神经元标记和操纵突触后神经元。然而,它仅限于传递表达重组酶的 AAV1,而这依赖于使用转基因动物或对突触后神经元的基因访问。我们认为高表达水平可以克服这一限制。为此,我们使用了在强启动子(CAG)下的自我互补型 AAV1(scAAV1)。我们通过在小鼠大脑中以非依赖重组酶的方式在视网膜-上丘和丘脑-杏仁核通路中传递荧光标记物,证明了 scAAV1 的顺行跨神经元效率。除了研究神经元连接性外,具有强启动子的顺行跨突触 AAV 可能适用于功能映射和成像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9af8/10504749/683a9eaf28a5/13041_2023_1053_Fig1_HTML.jpg

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