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高度保守的果蝇无眼基因在黑腹果蝇中作为生物钟组件发挥作用。

Highly conserved Drosophila ananassae timeless gene functions as a clock component in Drosophila melanogaster.

作者信息

Nishinokubi Izumi, Shimoda Masami, Kako Koichiro, Sakai Takaomi, Fukamizu Akiyoshi, Ishida Norio

机构信息

Clock Cell Biology Group, Institute for Biological Resource and Functions, National Institute of Advanced Industrial Science and Technology, Central 6, 1-1-1 Higashi, Tsukuba 305-8566, Japan.

出版信息

Gene. 2003 Mar 27;307:183-90. doi: 10.1016/s0378-1119(03)00468-2.

Abstract

The behavior and physiology of Drosophila are subject to rhythms that are controlled by the circadian clock genes, period, timeless, clock and cycle, all of which are thought to participate in central pacemaker control. The molecular mechanism of rhythm in Drosophila has been studied in detail. However, rhythm and clock genes have mostly been analyzed in Drosophila melanogaster. To confirm whether the tim gene exists and works as a clock component in other Drosophila species, we cloned a tim homolog from Drosophila ananassae that shared 85.9% similarity with Drosophila melanogaster tim at the amino acid level. In addition, the PER interaction domains and NLS were highly conserved. Introduction of the D. ananassae tim homolog rescued the rhythm of the locomotor activity of about 44% of a population of D. melanogaster tim(01) flies. At the molecular level, hs-tim introduced not only TIM but PER oscillation in transgenic flies. These results indicate that the tim gene in D. ananassae functions as a component of the circadian clock in D. melanogaster.

摘要

果蝇的行为和生理受昼夜节律时钟基因的控制,这些基因包括周期基因(period)、无时间基因(timeless)、时钟基因(clock)和循环基因(cycle),它们都被认为参与中央起搏器的控制。果蝇节律的分子机制已得到详细研究。然而,节律和时钟基因大多是在黑腹果蝇中进行分析的。为了确认tim基因在其他果蝇物种中是否存在并作为时钟组件发挥作用,我们从拟果蝇中克隆了一个tim同源基因,该基因在氨基酸水平上与黑腹果蝇的tim基因有85.9%的相似性。此外,PER相互作用结构域和核定位信号高度保守。导入拟果蝇的tim同源基因挽救了约44%的黑腹果蝇tim(01)品系果蝇的运动活动节律。在分子水平上,热休克诱导的tim(hs-tim)不仅在转基因果蝇中诱导了TIM振荡,还诱导了PER振荡。这些结果表明,拟果蝇中的tim基因在黑腹果蝇中作为昼夜节律时钟的一个组件发挥作用。

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