作者
Josephine Jüttner,Arnold Szabó,Brigitte Gross-Scherf,Rei Morikawa,Santiago B. Rompani,Péter Hantz,Tamás Szikra,Federico Esposti,Cameron S. Cowan,Arjun Bharioke,Claudia P. Patino-Alvarez,Özkan Keles,Ákos Kusnyerik,Thierry Azoulay,Dominik Hartl,Arnaud R. Krebs,Dirk Schübeler,Rozina Ida Hajdú,Ákos Lukáts,János Németh,Zoltán Zsolt Nagy,Kun‐Chao Wu,Ronghan Wu,Lue Xiang,Xiaolong Fang,Zi‐Bing Jin,David Goldblum,Pascal W. Hasler,Hendrik P. N. Scholl,Jacek Król,Botond Roska
摘要
Targeting genes to specific neuronal or glial cell types is valuable for both understanding and repairing brain circuits. Adeno-associated viruses (AAVs) are frequently used for gene delivery, but targeting expression to specific cell types is an unsolved problem. We created a library of 230 AAVs, each with a different synthetic promoter designed using four independent strategies. We show that a number of these AAVs specifically target expression to neuronal and glial cell types in the mouse and non-human primate retina in vivo and in the human retina in vitro. We demonstrate applications for recording and stimulation, as well as the intersectional and combinatorial labeling of cell types. These resources and approaches allow economic, fast and efficient cell-type targeting in a variety of species, both for fundamental science and for gene therapy.