To study the molecular mechanism of complex biological systems, it is important to be able to artificially manipulate gene expression in desired target sites with high precision. Based on the light dependent binding of cryptochrome 2 and a cryptochrome interacting bHLH protein, we developed a split lexA transcriptional activation system for use in Drosophila that allows regulation of gene expression in vivo using blue light or two-photon excitation. We show that this system offers high spatiotemporal resolution by inducing gene expression in tissues at various developmental stages. In combination with two-photon excitation, gene expression can be manipulated at precise sites in embryos, potentially offering an important tool with which to e...
Light inducible protein-protein interactions are powerful tools to manipulate biological processes. ...
[[abstract]]The GAL4/UAS gene expression system is a precise means of targeted gene expression emplo...
The GAL4/UAS gene expression system is a precise means of targeted gene expression employed to study...
<div><p>To study the molecular mechanism of complex biological systems, it is important to be able t...
To study the molecular mechanism of complex biological systems, it is important to be able to artifi...
Recent advancements in genetically encoded light-sensitive protein systems, also known as optogeneti...
The ability to drive expression of exogenous genes in different tissues and cell types, under contro...
International audienceDeciphering gene function requires the ability to control gene expression in s...
The dynamic nature of gene expression enables cellular programming, homeostasis and environmental ad...
The dynamic nature of gene expression enables cellular programming, homeostasis and environmental ad...
The dynamic nature of gene expression enables cellular programming, homeostasis and environmental ad...
International audienceAnimal embryo development exhibits a complex choreography of cell movements hi...
<p>(A) Schematic representation of the transgenic construct carrying the total light inducible LexA ...
Optogenetics allows precise, fast and reversible intervention in biological processes. Light-sheet m...
Light inducible protein-protein interactions are powerful tools to manipulate biological processes. ...
[[abstract]]The GAL4/UAS gene expression system is a precise means of targeted gene expression emplo...
The GAL4/UAS gene expression system is a precise means of targeted gene expression employed to study...
<div><p>To study the molecular mechanism of complex biological systems, it is important to be able t...
To study the molecular mechanism of complex biological systems, it is important to be able to artifi...
Recent advancements in genetically encoded light-sensitive protein systems, also known as optogeneti...
The ability to drive expression of exogenous genes in different tissues and cell types, under contro...
International audienceDeciphering gene function requires the ability to control gene expression in s...
The dynamic nature of gene expression enables cellular programming, homeostasis and environmental ad...
The dynamic nature of gene expression enables cellular programming, homeostasis and environmental ad...
The dynamic nature of gene expression enables cellular programming, homeostasis and environmental ad...
International audienceAnimal embryo development exhibits a complex choreography of cell movements hi...
<p>(A) Schematic representation of the transgenic construct carrying the total light inducible LexA ...
Optogenetics allows precise, fast and reversible intervention in biological processes. Light-sheet m...
Light inducible protein-protein interactions are powerful tools to manipulate biological processes. ...
[[abstract]]The GAL4/UAS gene expression system is a precise means of targeted gene expression emplo...
The GAL4/UAS gene expression system is a precise means of targeted gene expression employed to study...