Abstract
The periods of circadian clocks are relatively temperature-insensitive. Indeed, the per L mutation in the Drosophila melanogaster period gene, a central component of the clock, affects temperature compensation as well as period length. The per protein (PER) contains a dimerization domain (PAS) within which the per L mutation is located. Amino acid substitutions at the per L position rendered PER dimerization temperature-sensitive. In addition, another region of PER interacted with PAS, and the per L mutation enhanced this putative intramolecular interaction, which may compete with PAS-PAS intermolecular interactions. Therefore, temperature compensation of circadian period in Drosophila may be due in part to temperature-independent PER activity, which is based on competition between inter- and intramolecular interactions with similar temperature coefficients.
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CITATION STYLE
Huang, Z. J., Curtin, K. D., & Rosbash, M. (1995). PER Protein Interactions and Temperature Compensation of a Circadian Clock in Drosophila. Science, 267(5201), 1169–1172. https://doi.org/10.1126/science.7855598
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