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一种用于靶向和操纵不同中间神经元亚型的增强子-腺相关病毒工具箱。

An enhancer-AAV toolbox to target and manipulate distinct interneuron subtypes.

作者信息

Furlanis Elisabetta, Dai Min, Garcia Brenda Leyva, Tran Thien, Vergara Josselyn, Pereira Ana, Gorissen Bram L, Wills Sara, Vlachos Anna, Hairston Ariel, Dwivedi Deepanjali, Du Sarah, McMahon Justin, Huang Shuhan, Morabito Annunziato, Vazquez Arenski, Kim Soyoun, Lee Anthony T, Chang Edward F, Razzaq Taha, Qazi Ahmed, Vargish Geoffrey, Yuan Xiaoqing, Caccavano Adam, Hunt Steven, Chittajallu Ramesh, McLean Nadiya, Hewitt Lauren, Paranzino Emily, Rice Haley, Cummins Alex C, Plotnikova Anya, Mohanty Arya, Tangen Anne Claire, Shin Jung Hoon, Azadi Reza, Eldridge Mark A G, Alvarez Veronica A, Averbeck Bruno B, Alyahyay Mansour, Vallejo Tania Reyes, Soheib Mohammed, Vattino Lucas G, MacGregor Cathryn P, Chatain Carolina Piletti, Banks Emmie, Olah Viktor Janos, Naskar Shovan, Hill Sophie, Liebergall Sophie, Badiani Rohan, Hyde Lili, Hanley Ella, Xu Qing, Allaway Kathryn C, Goldberg Ethan M, Rowan Matthew J M, Nowakowski Tomasz J, Lee Soohyun, Favuzzi Emilia, Kaeser Pascal S, Sjulson Lucas, Batista-Brito Renata, Takesian Anne E, Ibrahim Leena A, Iqbal Asim, Pelkey Kenneth A, McBain Chris J, Dimidschstein Jordane, Fishell Gord, Wang Yating

出版信息

bioRxiv. 2025 Apr 22:2024.07.17.603924. doi: 10.1101/2024.07.17.603924.

Abstract

In recent years, we and others have identified a number of enhancers that, when incorporated into rAAV vectors, can restrict the transgene expression to particular neuronal populations. Yet, viral tools to access and manipulate specific neuronal subtypes are still limited. Here, we performed systematic analysis of single cell genomic data to identify enhancer candidates for each of the telencephalic interneuron subtypes. We established a set of enhancer-AAV tools that are highly specific for distinct cortical interneuron populations and striatal cholinergic interneurons. These enhancers, when used in the context of different effectors, can target (fluorescent proteins), observe activity (GCaMP) and manipulate (opto-genetics) specific neuronal subtypes. We also validated our enhancer-AAV tools across species. Thus, we provide the field with a powerful set of tools to study neural circuits and functions and to develop precise and targeted therapy.

摘要

近年来,我们和其他研究人员已经鉴定出一些增强子,当将它们整合到重组腺相关病毒(rAAV)载体中时,可以将转基因表达限制在特定的神经元群体中。然而,用于访问和操纵特定神经元亚型的病毒工具仍然有限。在这里,我们对单细胞基因组数据进行了系统分析,以鉴定端脑中间神经元各亚型的增强子候选物。我们建立了一组增强子-AAV工具,这些工具对不同的皮质中间神经元群体和纹状体胆碱能中间神经元具有高度特异性。这些增强子在不同效应器的背景下使用时,可以靶向(荧光蛋白)、观察活性(GCaMP)并操纵(光遗传学)特定的神经元亚型。我们还在不同物种中验证了我们的增强子-AAV工具。因此,我们为该领域提供了一套强大的工具,用于研究神经回路和功能以及开发精确且有针对性的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8c6/12036706/5bc7902c3903/nihpp-2024.07.17.603924v4-f0001.jpg

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