Advanced gene regulatory systems are necessary for scientific research, synthetic biology, and gene-based medicine. An ideal system would allow facile spatiotemporal manipulation of gene expression within a cell population that is tunable, reversible, repeatable, and can be targeted to diverse DNA sequences. To meet these criteria, a gene regulation system was engineered that combines light-sensitive proteins and programmable zinc finger transcription factors. This system, light-inducible transcription using engineered zinc finger proteins (LITEZ), uses two light-inducible dimerizing proteins from <i>Arabidopsis thaliana</i>, GIGANTEA and the LOV domain of FKF1, to control synthetic zinc finger transcription factor activity in human cells. ...
The emergence and future of mammalian synthetic biology depends on technologies for orchestrating an...
Engineering methods to spatiotemporally control gene expression is one of the most important goals ...
Growth and differentiation of multicellular systems is orchestrated by spatially restricted gene exp...
ABSTRACT: Advanced gene regulatory systems are necessary for scientific research, synthetic biology,...
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...
Photocaging provides a method to spatially and temporally control biological function and gene expre...
During development, gene expression profiles are tightly regulated in order to ensure the correct as...
The ever-increasing complexity of synthetic gene networks and applications of synthetic biology requ...
The expression of a gene to a protein is one of the most vital biological processes. The use of ligh...
Light is a highly attractive actuator that allows spatiotemporal control of diverse cellular activit...
Optogenetic tools are genetically expressed signaling pathways that transduce extracellular light si...
SummaryTargeted endogenous gene activation is necessary for understanding complex gene networks and ...
Optogenetic gene expression systems can control transcription with spatial and temporal detail unequ...
The emergence and future of mammalian synthetic biology depends on technologies for orchestrating an...
Engineering methods to spatiotemporally control gene expression is one of the most important goals ...
Growth and differentiation of multicellular systems is orchestrated by spatially restricted gene exp...
ABSTRACT: Advanced gene regulatory systems are necessary for scientific research, synthetic biology,...
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...
Photocaging provides a method to spatially and temporally control biological function and gene expre...
During development, gene expression profiles are tightly regulated in order to ensure the correct as...
The ever-increasing complexity of synthetic gene networks and applications of synthetic biology requ...
The expression of a gene to a protein is one of the most vital biological processes. The use of ligh...
Light is a highly attractive actuator that allows spatiotemporal control of diverse cellular activit...
Optogenetic tools are genetically expressed signaling pathways that transduce extracellular light si...
SummaryTargeted endogenous gene activation is necessary for understanding complex gene networks and ...
Optogenetic gene expression systems can control transcription with spatial and temporal detail unequ...
The emergence and future of mammalian synthetic biology depends on technologies for orchestrating an...
Engineering methods to spatiotemporally control gene expression is one of the most important goals ...
Growth and differentiation of multicellular systems is orchestrated by spatially restricted gene exp...