Molecular analysis of zebrafish photolyase/cryptochrome family: two types of cryptochromes present in zebrafish
Open Access
- 1 September 2000
- journal article
- research article
- Published by Wiley in Genes to Cells
- Vol. 5 (9) , 725-738
- https://doi.org/10.1046/j.1365-2443.2000.00364.x
Abstract
Background Cryptochromes (CRY), members of the DNA photolyase/cryptochrome protein family, regulate the circadian clock in animals and plants. Two types of animal CRYs are known, mammalian CRY and Drosophila CRY. Both CRYs participate in the regulation of circadian rhythm, but they have different light dependencies for their reactions and have different effects on the negative feedback loop which generates a circadian oscillation of gene expression. Mammalian CRYs act as a potent inhibitor of transcriptional activator whose reactions do not depend on light, but Drosophila CRY functions as a light‐dependent suppressor of transcriptional inhibitor. Results We cloned seven zebrafish genes that carry members of the DNA photolyase/cryptochrome protein family; one (6‐4)photolyase and six cry genes. A sequence analysis and determination of their in vitro functions showed that these zebrafish cry genes constitute two groups. One has a high sequence similarity to mammalian cry genes and inhibits CLOCK:BMAL1 mediated transcription. The other, which has a higher sequence similarity to the Drosophila cry gene rather than the mammalian cry genes, does not carry transcription inhibitor activity. The expressions of these cry genes oscillate in a circadian manner, but their patterns differ. Conclusions These findings suggest that functionally diverse cry genes are present in zebrafish and each gene has different role in the molecular clock.Keywords
This publication has 50 references indexed in Scilit:
- Light-Dependent Sequestration of TIMELESS by CRYPTOCHROMEScience, 1999
- DCRY is a Drosophila photoreceptor protein implicated in light entrainment of circadian rhythmGenes to Cells, 1999
- Role of the CLOCK Protein in the Mammalian Circadian MechanismScience, 1998
- Cloning, Tissue Expression, and Mapping of a Human Photolyase Homolog with Similarity to Plant Blue-Light ReceptorsGenomics, 1996
- Instability of Quartet Analyses of Molecular Sequence Data by the Maximum Likelihood Method: The Cetacea/Artiodactyla RelationshipsMolecular Phylogenetics and Evolution, 1996
- Similarity Among the Drosophila (6-4)Photolyase, a Human Photolyase Homolog, and the DNA Photolyase-Blue-Light Photoreceptor FamilyScience, 1996
- Putative Human Blue-Light Photoreceptors hCRY1 and hCRY2 Are FlavoproteinsBiochemistry, 1996
- CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choiceNucleic Acids Research, 1994
- The rapid generation of mutation data matrices from protein sequencesBioinformatics, 1992
- Evolutionary trees from DNA sequences: A maximum likelihood approachJournal of Molecular Evolution, 1981