ralf stanewsky

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"ralf stanewsky"
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Adam Bradlaugh grad student 2012-2017 (FlyTree)
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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
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