AbstractMolecular photoswitches provide a promising way for selective regulation of nanoscaled biological systems. It has been shown that conformational changes of azobenzene, one of the widely used photoswitches, can be used to reversibly control DNA duplex formation. Here, we investigate the conformational response of DNA upon azobenzene binding and isomerization, using a threoninol linker that has been experimentally investigated recently. To this end, nonequilibrium molecular dynamics simulations are carried out using a switching potential describing the photoinduced isomerization. Attachment of azobenzene leads to a distortion of the DNA helical conformation that is similar for the trans and cis forms. However, the trans form is stabil...
Thesis (Ph.D.)--University of Washington, 2015-12The azobenzene-modified DNA is an oligonucleotide m...
Introducing photoswitches into the DNA G-quadruplex provides excellent opportunities to control fold...
Azobenzene incorporated into DNA has a photoisomerization quantum yield that depends on the DNA sequ...
AbstractMolecular photoswitches provide a promising way for selective regulation of nanoscaled biolo...
Photoresponsive azobenzene-modified DNA (RNA) has become a very fruitful material for nanotechnology...
The photoresponsive azobenzene‐tethered DNAs have received growing experimental attention because of...
The photoregulation of nucleic acids by azobenzene photoswitches has recently attracted con- sidera...
Photoswitch-modified DNA is being studied for applications including light-harvesting molecular moto...
As shown in recent experimental studies, photoswitches like azobenzene can act as efficient regulato...
Modified DNA carrying an azobenzene was successfully applied to the photo-regulation of DNA/RNA hybr...
The photoregulation of nucleic acids by azobenzene photoswitches has recently attracted considerable...
The photoregulation of nucleic acids by azobenzene photoswitches has recently attracted considerabl...
Short, complementary DNA single strands with mismatched base pairs cannot undergo spontaneous format...
Multiple azobenzene moieties were tethered to DNA on D-threoninol linker, and formation and dissocia...
Thesis (Ph.D.)--University of Washington, 2015-12The azobenzene-modified DNA is an oligonucleotide m...
Introducing photoswitches into the DNA G-quadruplex provides excellent opportunities to control fold...
Azobenzene incorporated into DNA has a photoisomerization quantum yield that depends on the DNA sequ...
AbstractMolecular photoswitches provide a promising way for selective regulation of nanoscaled biolo...
Photoresponsive azobenzene-modified DNA (RNA) has become a very fruitful material for nanotechnology...
The photoresponsive azobenzene‐tethered DNAs have received growing experimental attention because of...
The photoregulation of nucleic acids by azobenzene photoswitches has recently attracted con- sidera...
Photoswitch-modified DNA is being studied for applications including light-harvesting molecular moto...
As shown in recent experimental studies, photoswitches like azobenzene can act as efficient regulato...
Modified DNA carrying an azobenzene was successfully applied to the photo-regulation of DNA/RNA hybr...
The photoregulation of nucleic acids by azobenzene photoswitches has recently attracted considerable...
The photoregulation of nucleic acids by azobenzene photoswitches has recently attracted considerabl...
Short, complementary DNA single strands with mismatched base pairs cannot undergo spontaneous format...
Multiple azobenzene moieties were tethered to DNA on D-threoninol linker, and formation and dissocia...
Thesis (Ph.D.)--University of Washington, 2015-12The azobenzene-modified DNA is an oligonucleotide m...
Introducing photoswitches into the DNA G-quadruplex provides excellent opportunities to control fold...
Azobenzene incorporated into DNA has a photoisomerization quantum yield that depends on the DNA sequ...