Photoentrainment in Mammals: A Role for Cryptochrome?
- 1 February 1999
- journal article
- research article
- Published by SAGE Publications in Journal of Biological Rhythms
- Vol. 14 (1) , 4-10
- https://doi.org/10.1177/074873099129000380
Abstract
There is growing evidence in support of the hypothesis that, in mammals, photoreceptive tasks are segregated into those associated with creating a detailed visual image of the environment and those involved in the photic regulation of temporal biology. The hypothesis that this segregation extends to the use of different photoreceptors remains unproven, but published reports from several mammalian species that circadian photoentrainment survives a degree of retinal degeneration sufficient to induce visual blindness suggest that this may be so. This has lead to speculation that mammals might employ a dedicated ‘circadian photoreceptor’ distinct from the rod and cone cells of the visual system. The location and nature of this putative circadian photoreceptor has become a matter of conjecture. The latest candidates to be put forward as potential circadian photopigments are the mammalian cryptochrome proteins (CRY1 and 2), putative vitamin-B2 based photopigments. To date, published experimental evidence falls short of a definitive demonstration that these proteins form the basis of circadian photoreception in mammals. Consequently, this review aims to assess their suitability for this task in light of what we know regarding the biology of the cyrptochromes and the nature of mammalian photoentrainment.Keywords
This publication has 42 references indexed in Scilit:
- Circadian rhythm of firing rate recorded from single cells in the rat suprachiasmatic brain slicePublished by Elsevier ,2003
- Plants See the Blue LightScience, 1998
- Extraocular Circadian Phototransduction in HumansScience, 1998
- Independent Photoreceptive Circadian Clocks Throughout DrosophilaScience, 1997
- Circadian Rhythms in Cultured Mammalian RetinaScience, 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
- Plant Photomorphogenesis: A green light for cryptochrome researchCurrent Biology, 1995
- A new photoreactivating enzyme that specifically repairs ultraviolet light-induced (6-4)photoproductsNature, 1993
- Retinal receptors in rodents maximally sensitive to ultraviolet lightNature, 1991