Photoantenna is essential to energy transduction in photoinduced biological machinery. A photoenzyme, photolyase, has a light-harvesting pigment of methenyltetrahydrofolate (MTHF) that transfers its excitation energy to the catalytic flavin cofactor FADH¯ to enhance DNA-repair efficiency. Here we report our systematic characterization and direct determination of the ultrafast dynamics of resonance energy transfer from excited MTHF to three flavin redox states in <i>E. coli</i> photolyase by capturing the intermediates formed through the energy transfer and thus excluding the electron-transfer quenching pathway. We observed 170 ps for excitation energy transferring to the fully reduced hydroquinone FADH¯, 20 ps to the fully oxidized FAD, and...
International audienceIn Escherichia coli photolyase, excitation of the FAD cofactor in its semiredu...
Photolyase uses light energy to split UV-induced cyclobutane dimers in damaged DNA, but its molecula...
One of the detrimental effects of UV radiation on DNA is the formation of the (6-4) photoproduct (6-...
Photoantenna is essential to energy transduction in photoinduced biological machinery. A photoenzyme...
Author Institution: OSU Biophysics Program, The Ohio-State UniversityDNA photolyase enzyme splits th...
One of the detrimental effects of UV radiation on DNA is the formation of the (6-4) photoproduct (6-...
International audienceThe light-dependent DNA repair enzyme photolyase contains a unique evolutionar...
International audienceThe light-dependent DNA repair enzyme photolyase contains a unique evolutionar...
Author Institution: Departments of Physics, Chemistry, and Biochemistry, Programs of Biophysics, Che...
International audienceIn isolated, catalytically inactive, DNA photolyase from Escherichia coli (E. ...
Author Institution: Department of Physics, Chemistry and Biochemistry, OSU Biophysics, Chemical Phys...
ABSTRACT: Photolyase contains a flavin cofactor in a fully reduced form as its functional state to r...
AbstractMore than 50 years ago, initial experiments on enzymatic photorepair of ultraviolet (UV)-dam...
International audienceIn Escherichia coli photolyase, excitation of the FAD cofactor in its semiredu...
Photolyase uses light energy to split UV-induced cyclobutane dimers in damaged DNA, but its molecula...
One of the detrimental effects of UV radiation on DNA is the formation of the (6-4) photoproduct (6-...
Photoantenna is essential to energy transduction in photoinduced biological machinery. A photoenzyme...
Author Institution: OSU Biophysics Program, The Ohio-State UniversityDNA photolyase enzyme splits th...
One of the detrimental effects of UV radiation on DNA is the formation of the (6-4) photoproduct (6-...
International audienceThe light-dependent DNA repair enzyme photolyase contains a unique evolutionar...
International audienceThe light-dependent DNA repair enzyme photolyase contains a unique evolutionar...
Author Institution: Departments of Physics, Chemistry, and Biochemistry, Programs of Biophysics, Che...
International audienceIn isolated, catalytically inactive, DNA photolyase from Escherichia coli (E. ...
Author Institution: Department of Physics, Chemistry and Biochemistry, OSU Biophysics, Chemical Phys...
ABSTRACT: Photolyase contains a flavin cofactor in a fully reduced form as its functional state to r...
AbstractMore than 50 years ago, initial experiments on enzymatic photorepair of ultraviolet (UV)-dam...
International audienceIn Escherichia coli photolyase, excitation of the FAD cofactor in its semiredu...
Photolyase uses light energy to split UV-induced cyclobutane dimers in damaged DNA, but its molecula...
One of the detrimental effects of UV radiation on DNA is the formation of the (6-4) photoproduct (6-...