On the Reaction Mechanism of Adduct Formation in LOV Domains of the Plant Blue-Light Receptor Phototropin
- 17 August 2004
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 126 (35), 11067-11076
- https://doi.org/10.1021/ja049553q
Abstract
The blue-light sensitive photoreceptor, phototropin, is a flavoprotein which regulates the phototropism response of higher plants. The photoinduced triplet state and the photoreactivity of the flavin-mononucleotide (FMN) cofactor in two LOV domains of Avena sativa, Adiantum capillus-veneris, and Chlamydomonas reinhardtii phototropin have been studied by time-resolved electron paramagnetic resonance (EPR) and UV−vis spectroscopy at low temperatures (T ≤ 80 K). Differences in the electronic structure of the FMN as reflected by altered zero-field splitting parameters of the triplet state could be correlated with changes in the amino acid composition of the binding pocket in wild-type LOV1 and LOV2 as well as in mutant LOV domains. Even at cryogenic temperatures, time-resolved EPR experiments indicate photoreactivity of the wild-type LOV domains, which was further characterized by UV−vis spectroscopy. Wild-type LOV1 and LOV2 were found to form an adduct between the FMN cofactor and the functional cysteine with a yield of 22% and 68%, respectively. The absorption maximum of the low-temperature photoproduct of wild-type LOV2 is red-shifted by about 15 nm as compared with the FMN C(4a)-cysteinyl adduct formed at room temperature. In light of these observations, we discuss a radical-pair reaction mechanism for the primary photoreaction in LOV domains.Keywords
This publication has 49 references indexed in Scilit:
- Primary Reactions of the LOV2 Domain of Phototropin, a Plant Blue-Light PhotoreceptorBiochemistry, 2003
- Intramolecular Proton Transfers and Structural Changes during the Photocycle of the LOV2 Domain of Phototropin 1Journal of Biological Chemistry, 2003
- Ab initio calculation of zero-field splitting and spin-orbit coupling in ground and excited triplets of m-xylyleneJournal of the Chemical Society, Perkin Transactions 2, 1999
- Titration of individual components in a mixture with resolution of difference spectra, pKs, and redox transitionsAnalytical Chemistry, 1982
- Mechanism of light-induced reduction of biological redox centers by amino acids. A flash photolysis study of flavin photoreduction by EDTA and nitrilotriacetateBiochemistry, 1982
- THE PHOTOCHEMISTRY OF RIBOFLAVIN—VI. THE PHOTOPHYSICAL PROPERTIES OF ISOALLOXAZINESPhotochemistry and Photobiology, 1977
- Investigation of the triplet state of flavines and flavoproteins by optical detection of magnetic resonanceBiochemistry, 1974
- Triplet-State Zero-Field Splitting Calculations in Aromatic Hydrocarbons and HeterocyclesThe Journal of Chemical Physics, 1970
- TRIPLET STATE STUDIES OF FLAVINS BY ELECTRON PARAMAGNETIC RESONANCE—IPhotochemistry and Photobiology, 1964
- TRIPLET STATE STUDIES OF FLAVlNS BY ELECTRON PARAMAGNETIC RESONANCE—IIPhotochemistry and Photobiology, 1964