Tryptophan and tyrosine radical intermediates play crucial roles in many biological charge transfer processes. Particularly in flavoprotein photochemistry, short-lived reaction intermediates can be studied by the complementary techniques of ultrafast visible and infrared spectroscopy. The spectral properties of tryptophan radical are well established, and the formation of neutral tyrosine radicals has been observed in many biological processes. However, only recently, the formation of a cation tyrosine radical was observed by transient visible spectroscopy in a few systems. Here, we assigned the infrared vibrational markers of the cationic and neutral tyrosine radical at 1483 and 1502 cm−1 (in deuterated buffer), respectively, in a variant ...
*S Supporting Information ABSTRACT: BLUF (blue light using flavin) domain proteins are an important ...
AbstractBLUF domains constitute a recently discovered class of photoreceptor proteins found in bacte...
Femtosecond spectroscopy was used in combination with site-directed mutagenesis to study the influen...
International audienceTryptophan and tyrosine radical intermediates play crucial roles in many biolo...
International audienceTyrosine (TyrOH) and tryptophan radicals play important roles as intermediates...
AbstractPhotosystem II contains two redox-active tyrosine residues, termed D and Z, which have diffe...
AbstractTyrosine radicals play catalytic roles in essential metalloenzymes. Their properties—midpoin...
International audienceGlucose oxidase is a flavoprotein that is relatively wellstudied as a physico-...
International audienceRadicals of flavin adenine dinucleotide (FAD), as well as tyrosine and tryptop...
AbstractPhotosystem II (PSII) contains a redox-active tyrosine, Z. Difference Fourier transform infr...
AbstractThe structure and environment of redox active tyrosines present in several metalloenzymes ca...
BLUF (blue light using flavin) domain proteins are an important family of blue light-sensing protein...
AbstractThe transient absorption at 296 nm was part of the spectroscopic evidence that initiated the...
AbstractPhotosystem II (PSII) is a multisubunit complex, which catalyzes the photo-induced oxidation...
*S Supporting Information ABSTRACT: BLUF (blue light using flavin) domain proteins are an important ...
AbstractBLUF domains constitute a recently discovered class of photoreceptor proteins found in bacte...
Femtosecond spectroscopy was used in combination with site-directed mutagenesis to study the influen...
International audienceTryptophan and tyrosine radical intermediates play crucial roles in many biolo...
International audienceTyrosine (TyrOH) and tryptophan radicals play important roles as intermediates...
AbstractPhotosystem II contains two redox-active tyrosine residues, termed D and Z, which have diffe...
AbstractTyrosine radicals play catalytic roles in essential metalloenzymes. Their properties—midpoin...
International audienceGlucose oxidase is a flavoprotein that is relatively wellstudied as a physico-...
International audienceRadicals of flavin adenine dinucleotide (FAD), as well as tyrosine and tryptop...
AbstractPhotosystem II (PSII) contains a redox-active tyrosine, Z. Difference Fourier transform infr...
AbstractThe structure and environment of redox active tyrosines present in several metalloenzymes ca...
BLUF (blue light using flavin) domain proteins are an important family of blue light-sensing protein...
AbstractThe transient absorption at 296 nm was part of the spectroscopic evidence that initiated the...
AbstractPhotosystem II (PSII) is a multisubunit complex, which catalyzes the photo-induced oxidation...
*S Supporting Information ABSTRACT: BLUF (blue light using flavin) domain proteins are an important ...
AbstractBLUF domains constitute a recently discovered class of photoreceptor proteins found in bacte...
Femtosecond spectroscopy was used in combination with site-directed mutagenesis to study the influen...