European Journal of Biochemistry · 2003 · 97 citations · 33 references
Cryptochromes are blue-light photoreceptors sharing sequence similarity to photolyases, a class of flavoenzymes catalyzing repair of UV-damaged DNA via electron transfer mechanisms. Despite significant amino acid sequence similarity in both catalytic and cofactor-binding domains, cryptochromes lack DNA repair functions associated with photolyases, and the molecular mechanism involved in cryptochrome signaling remains obscure. Here, we report a novel ATP binding and autophosphorylation activity associated with Arabidopsis cry1 protein purified from a baculovirus expression system. Autophosphorylation occurs on serine residue(s) and is absent in preparations of cryptochrome depleted in flavin and/or misfolded. Autophosphorylation is stimulated by light in vitro and oxidizing agents that act as flavin antagonists prevent this stimulation. Human cry1 expressed in baculovirus likewise shows ATP binding and autophosphorylation activity, suggesting this novel enzymatic activity may be important to the mechanism of action of both plant and animal cryptochromes.
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Interacting Molecular Loops in the Mammalian Circadian Clock
Lauren P. Shearman, Sriram Sathyanarayanan, David R. Weaver et al. · Science · 2000 · 1.3K citations
Crystal Structure of DNA Photolyase from <i>Escherichia coli</i>
Hee-Won Park, Sang‐Tae Kim, Aziz Sancar et al. · Science · 1995 · 576 citations
Direct Interaction of <i>Arabidopsis</i> Cryptochromes with COP1 in Light Control Development
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