Near-infrared (NIR, 740-780 nm) optogenetic systems are well-suited to spectral multiplexing with blue-light-controlled tools. Here, we present two protocols, one for regulation of gene transcription and another for control of protein localization, that use a NIR-responsive bacterial phytochrome BphP1-QPAS1 optogenetic pair. In the first protocol, cells are transfected with the optogenetic constructs for independently controlling gene transcription by NIR (BphP1-QPAS1) and blue (LightOn) light. The NIR and blue-light-controlled gene transcription systems show minimal spectral crosstalk and induce a 35- to 40-fold increase in reporter gene expression. In the second protocol, the BphP1-QPAS1 pair is combined with a light-oxygen-voltage-sensin...
Fluorescent proteins (FPs) engineered from bacterial phytochromes attract attention as probes for in...
Genetically encoded tools for the regulation of endogenous molecules (RNA, DNA elements and protein)...
SummaryNear-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) a...
Near-infrared (NIR, 740-780 nm) optogenetic systems are well-suited to spectral multiplexing with bl...
Near-infrared (NIR) optogenetic systems for transcription regulation are in high demand because NIR ...
Near-infrared (NIR) light-inducible binding of bacterial phytochrome BphP1 to its engineered partner...
Techniques of protein regulation, such as conditional gene expression, RNA interference, knock-in an...
Since mammalian tissue is relatively transparent to near-infrared (NIR) light, NIR fluorescentprotei...
Optogenetic manipulation and optical imaging in the near-infrared range allow non-invasive light-con...
Optogenetics is a technology wherein researchers combine light and genetically engineered photorecep...
Optogenetic gene expression systems can control transcription with spatial and temporal detail unequ...
The ability to manipulate expression of exogenous genes in particular regions of living organisms ha...
The emergence and future of mammalian synthetic biology depends on technologies for orchestrating an...
Optogenetic switches are emerging molecular tools for studying cellular processes as they offer high...
In optogenetics, as in nature, sensory photoreceptors serve to control cellular processes by light. ...
Fluorescent proteins (FPs) engineered from bacterial phytochromes attract attention as probes for in...
Genetically encoded tools for the regulation of endogenous molecules (RNA, DNA elements and protein)...
SummaryNear-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) a...
Near-infrared (NIR, 740-780 nm) optogenetic systems are well-suited to spectral multiplexing with bl...
Near-infrared (NIR) optogenetic systems for transcription regulation are in high demand because NIR ...
Near-infrared (NIR) light-inducible binding of bacterial phytochrome BphP1 to its engineered partner...
Techniques of protein regulation, such as conditional gene expression, RNA interference, knock-in an...
Since mammalian tissue is relatively transparent to near-infrared (NIR) light, NIR fluorescentprotei...
Optogenetic manipulation and optical imaging in the near-infrared range allow non-invasive light-con...
Optogenetics is a technology wherein researchers combine light and genetically engineered photorecep...
Optogenetic gene expression systems can control transcription with spatial and temporal detail unequ...
The ability to manipulate expression of exogenous genes in particular regions of living organisms ha...
The emergence and future of mammalian synthetic biology depends on technologies for orchestrating an...
Optogenetic switches are emerging molecular tools for studying cellular processes as they offer high...
In optogenetics, as in nature, sensory photoreceptors serve to control cellular processes by light. ...
Fluorescent proteins (FPs) engineered from bacterial phytochromes attract attention as probes for in...
Genetically encoded tools for the regulation of endogenous molecules (RNA, DNA elements and protein)...
SummaryNear-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) a...