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Conserved regions of the timeless (tim) clock gene in Drosophila analyzed through phylogenetic and functional studies.

机译:通过系统发育和功能研究分析果蝇中的永恒(tim)时钟基因的保守区域。

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摘要

Circadian (approximately 24-hr) rhythms in Drosophila melanogaster depend upon cyclic expression of the period (per) and timeless (tim) genes, which encode interacting components of the endogenous clock. The per gene has been isolated from other insects and, more recently, a per ortholog was found in mammals where its expression oscillates in a circadian fashion. We report here the complete sequence of a tim gene from another species, Drosophila virilis. TIM is better conserved than the PER protein is between these two species (76 vs. 54% overall amino acid identity), and putative functional domains, such as the PER interaction domains and the nuclear localization signal, are highly conserved. The acidic domain and the cytoplasmic localization domain, however, are within the least conserved regions. In addition, the initiating methionine in the D. virilis gene lies downstream of the proposed translation start for the original D. melanogaster tim cDNA and corresponds to the one used by D. simulans and D. yakuba. Among the most conserved parts of TIM is a region of unknown function near the N terminus. We show here that deletion of a 32 amino acid segment within this region affects rescue of rhythms in arrhythmic tim01 flies. Flies carrying a full-length tim transgene displayed rhythms with approximately 24-hr periods, indicating that a fully functional clock can be restored in tim01 flies through expression of a tim transgene. Deletion of the segment mentioned above resulted in very long activity rhythms with periods ranging from 30.5 to 48 hr.
机译:果蝇的昼夜节律(约24小时)取决于周期(每个)和永恒(tim)基因的循环表达,它们编码内源时钟的相互作用成分。 per基因已经从其他昆虫中分离出来,最近,在哺乳动物中发现了per perlog,其表达以昼夜节律振荡。我们在此报告了另一种果蝇(Drosophila virilis)tim基因的完整序列。与这两个物种之间的PER蛋白相比,TIM的保守性更好(76%vs. 54%的总氨基酸同一性),并且高度保守的假定功能域(如PER相互作用域和核定位信号)。然而,酸性结构域和胞质定位结构域位于最不保守的区域内。此外,在毒梭菌基因中的起始甲硫氨酸位于拟议的黑腹果蝇tim cDNA的拟议翻译起点的下游,并对应于拟杆菌和yakuba。 TIM最保守的部分是靠近N末端的功能未知的区域。我们在这里显示该区域内的32个氨基酸段的删除影响心律失常tim01苍蝇的节律的抢救。携带全长tim转基因的果蝇显示大约24小时的节律,表明可以通过表达tim转基因在tim01果蝇中恢复完全功能的时钟。删除上面提到的部分导致非常长的活动节奏,周期从30.5到48小时。

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