The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the structure and function of individual cell types in the brain. Enhancer trapping has proved extremely useful for the genetic manipulation of selective cell types in Drosophila. We have developed an enhancer trap strategy in mammals by generating transgenic mice with lentiviral vectors carrying single-copy enhancer-detector probes encoding either the marker gene lacZ or Cre recombinase. This transgenic strategy allowed us to genetically identify a wide variety of neuronal subpopulations in distinct brain regions. Enhancer detection by lentiviral transgenesis could thus provide a complementary method for generating transgenic mouse libraries for ...
Viral genetic tools to target specific brain cell types in humans and non-genetic model organisms wi...
SummaryAn increasingly powerful approach for studying brain circuits relies on targeting genetically...
Elucidating the transcriptional circuitry controlling forebrain development requires an understandin...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
The rapid pace of cell type identification by new single-cell analysis methods has not been met with...
There is a continuing need for driver strains to enable cell-type-specific manipulation in the nervo...
The brain is a vast network of different types of neurons. Interactions between these different type...
available in PMC 2016 March 04An increasingly powerful approach for studying brain circuits relies o...
We describe a method that combines Cre-recombinase knockin mice and viral-mediated gene transfer to ...
SummaryOptogenetics has been enthusiastically pursued in recent neuroscience research, and the causa...
SummaryTargeting genetically encoded tools for neural circuit dissection to relevant cellular popula...
SummaryAn increasingly powerful approach for studying brain circuits relies on targeting genetically...
We have deployed recombinant adeno-associated viruses equipped with tetracycline-controlled genetic ...
Viral genetic tools to target specific brain cell types in humans and non-genetic model organisms wi...
SummaryAn increasingly powerful approach for studying brain circuits relies on targeting genetically...
Elucidating the transcriptional circuitry controlling forebrain development requires an understandin...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
The rapid pace of cell type identification by new single-cell analysis methods has not been met with...
There is a continuing need for driver strains to enable cell-type-specific manipulation in the nervo...
The brain is a vast network of different types of neurons. Interactions between these different type...
available in PMC 2016 March 04An increasingly powerful approach for studying brain circuits relies o...
We describe a method that combines Cre-recombinase knockin mice and viral-mediated gene transfer to ...
SummaryOptogenetics has been enthusiastically pursued in recent neuroscience research, and the causa...
SummaryTargeting genetically encoded tools for neural circuit dissection to relevant cellular popula...
SummaryAn increasingly powerful approach for studying brain circuits relies on targeting genetically...
We have deployed recombinant adeno-associated viruses equipped with tetracycline-controlled genetic ...
Viral genetic tools to target specific brain cell types in humans and non-genetic model organisms wi...
SummaryAn increasingly powerful approach for studying brain circuits relies on targeting genetically...
Elucidating the transcriptional circuitry controlling forebrain development requires an understandin...