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Light-dependent interactions between the Drosophila circadian clock factors cryptochrome, jetlag, and timeless

机译:果蝇昼夜节律之间的光依赖性相互作用影响隐色,时差和永恒

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Circadian clocks regulate daily fluctuations of many physiological and behavioral aspects in life. They are synchronized with the environment via light or temperature cycles [1]. Natural fluctuations of the day length (photoperiod) and temperature necessitate a daily reset of the circadian clock on the molecular level. In Drosophila, the blue-light photoreceptor Cryptochrome (Cry) mediates a rapid light-dependent degradation of the clock protein Timeless (Tim) via the F box protein Jetlag (Jet) and the proteasome, which initiates the resetting of the molecular clock [2, 3]. Cry is also degraded in the light but whereas the degradation of Tim is well characterized [4-8], the mechanism for light-dependent degradation of Cry is mostly unknown. Until now it was believed that these two degradation pathways are distinct [4, 9]. Here we reveal that Jetlag also interacts with Cry in a light-dependent manner. After illumination, Jetlag induces massive degradation of Cry, which can be prevented in vitro and in vivo by adding Tim as an antagonist. We show that the affinity of Tim for Cry and Jetlag determines the sequential order of Tim and Cry degradation and thus reveal an intimate connection between the light-dependent degradation of these two proteins by the same proteasomal pathway.
机译:昼夜节律调节生活中许多生理和行为方面的日常波动。它们通过光照或温度循环与环境同步[1]。日长(光周期)和温度的自然波动需要在分子水平上每天重新设置生物钟。在果蝇中,蓝光感光体隐铬(Cry)通过F盒蛋白Jetlag(Jet)和蛋白酶体介导时钟蛋白Timeless(Tim)的快速光依赖性降解,从而启动了分子时钟的重置[2。 ,3]。 Cry在光中也会降解,但是Tim的降解已得到很好的表征[4-8],但光依赖的Cry降解的机理尚不清楚。到目前为止,人们认为这两种降解途径是截然不同的[4,9]。在这里,我们揭示了Jetlag也以光依赖的方式与Cry交互。光照后,Jetlag诱导Cry大量降解,通过添加Tim作为拮抗剂可以在体内和体外防止Cry降解。我们表明,蒂姆对Cry和Jetlag的亲和力决定了Tim和Cry降解的顺序,因此揭示了这两种蛋白通过相同的蛋白酶体途径的光依赖性降解之间的密切联系。

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