| Literature DB >> 33318209 |
Huiying Li1, Qiansen Zhang1, Yiran Gu2, Yingyin Wu1, Yamei Wang2, Liren Wang1, Shijie Feng2, Yaqiang Hu1, Yansen Zheng1, Yongmei Li1, Haifeng Ye1, Bin Zhou3, Longnian Lin2, Mingyao Liu4, Huaiyu Yang4, Dali Li4.
Abstract
Precise genetic engineering in specific cell types within an intact organism is intriguing yet challenging, especially in a spatiotemporal manner without the interference caused by chemical inducers. Here we engineered a photoactivatable Dre recombinase based on the identification of an optimal split site and demonstrated that it efficiently regulated transgene expression in mouse tissues spatiotemporally upon blue light illumination. Moreover, through a double-floxed inverted open reading frame strategy, we developed a Cre-activated light-inducible Dre (CALID) system. Taking advantage of well-defined cell-type-specific promoters or a well-established Cre transgenic mouse strain, we demonstrated that the CALID system was able to activate endogenous reporter expression for either bulk or sparse labeling of CaMKIIα-positive excitatory neurons and parvalbumin interneurons in the brain. This flexible and tunable system could be a powerful tool for the dissection and modulation of developmental and genetic complexity in a wide range of biological systems.Entities:
Keywords: cell labeling; optogenetics; photoactivatable Dre recombinase
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Year: 2020 PMID: 33318209 PMCID: PMC7777003 DOI: 10.1073/pnas.2003991117
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205