ralf stanewsky
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R R, Prüser T, Schulz NKE, et al. (2024) Deciphering a Beetle Clock: Individual and Sex-Dependent Variation in Daily Activity Patterns. Journal of Biological Rhythms. 7487304241263619 |
Chen C, Tamai TK, Xu M, et al. (2024) Functional Analyses of Four Cryptochromes From Aquatic Organisms After Heterologous Expression in Circadian Clock Cells. Journal of Biological Rhythms. 7487304241228617 |
Cavieres-Lepe J, Amini E, Zabel M, et al. (2024) Timed receptor tyrosine kinase signaling couples the central and a peripheral circadian clock in . Proceedings of the National Academy of Sciences of the United States of America. 121: e2308067121 |
Thakkar N, Giesecke A, Bazalova O, et al. (2022) Evolution of casein kinase 1 and functional analysis of new mutants in . Frontiers in Physiology. 13: 1062632 |
Giesecke A, Johnstone PS, Lamaze A, et al. (2022) A novel period mutation implicating nuclear export in temperature compensation of the Drosophila circadian clock. Current Biology : Cb. 33: 336-350.e5 |
Lorber C, Leleux S, Stanewsky R, et al. (2022) Light triggers a network switch between circadian morning and evening oscillators controlling behaviour during daily temperature cycles. Plos Genetics. 18: e1010487 |
Johnstone PS, Ogueta M, Akay O, et al. (2022) Real time, measurement of neuronal and peripheral clocks in . Elife. 11 |
Lamaze A, Chen C, Leleux S, et al. (2022) A natural timeless polymorphism allowing circadian clock synchronization in "white nights". Nature Communications. 13: 1724 |
Eick AK, Ogueta M, Buhl E, et al. (2022) The opposing chloride cotransporters KCC and NKCC control locomotor activity in constant light and during long days. Current Biology : Cb. 32: 1420-1428.e4 |
Klemz S, Wallach T, Korge S, et al. (2021) Protein phosphatase 4 controls circadian clock dynamics by modulating CLOCK/BMAL1 activity. Genes & Development. 35: 1161-1174 |