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timSL突变体影响黑腹果蝇昼夜节律周期的特定部分。

The timSL mutant affects a restricted portion of the Drosophila melanogaster circadian cycle.

作者信息

Rutila J E, Maltseva O, Rosbash M

机构信息

Howard Hughes Medical Institute, Brandeis University, Department of Biology, Waltham, MA 02454-9110, USA.

出版信息

J Biol Rhythms. 1998 Oct;13(5):380-92. doi: 10.1177/074873098129000200.

Abstract

The circadian rhythm genes period (per) and timeless (tim) are central to contemporary studies on Drosophila circadian rhythms. Mutations in these genes give rise to arrhythmic or period-altered phenotypes, and per and tim gene expression is under clock control. per and tim proteins (PER and TIM) also undergo circadian changes in level and phosphorylation state. The authors previously described a period-altering tim mutation, timSL, with allele-specific effects in different per backgrounds. This mutation also affected the TIM phosphorylation profile during the mid-late night. The authors show here that the single amino acid alteration in TIM-SL is indeed responsible for the phenotype, as a timSL transgene recapitulates the original mutant phenotype and shortens the period of perL flies by 3 h. The authors also show that this mutation has comparable effects in a light-dark cycle, as timSL also accelerates the activity offset during the mid-late night of perL flies. Importantly, timSL advances predominantly the mid-late night region of the perL phase response curve, consistent with the notion that this portion of the cycle is governed by unique rate-limiting steps. The authors propose that TIM and PER phosphorylation are normally rate determining during the mid-late night region of the circadian cycle.

摘要

昼夜节律基因周期基因(per)和无时间基因(tim)是当代果蝇昼夜节律研究的核心。这些基因的突变会导致无节律或周期改变的表型,并且per和tim基因的表达受生物钟控制。per和tim蛋白(PER和TIM)在水平和磷酸化状态上也会发生昼夜变化。作者之前描述了一种改变周期的tim突变体timSL,在不同的per背景下具有等位基因特异性效应。这种突变还影响了深夜至午夜期间的TIM磷酸化谱。作者在此表明,TIM-SL中的单个氨基酸改变确实导致了该表型,因为timSL转基因重现了原始突变体表型,并使perL果蝇的周期缩短了3小时。作者还表明,这种突变在明暗周期中具有类似的效应,因为timSL也加速了perL果蝇深夜至午夜期间的活动偏移。重要的是,timSL主要提前了perL相位反应曲线的深夜至午夜区域,这与该周期部分受独特的限速步骤控制的观点一致。作者提出,在昼夜周期的深夜至午夜区域,TIM和PER磷酸化通常是速率决定因素。

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