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生物钟基因的热敏剪接与季节性适应

Thermosensitive splicing of a clock gene and seasonal adaptation.

作者信息

Chen W-F, Low K H, Lim C, Edery I

机构信息

Department of Molecular Biology and Biochemistry, Rutgers University, Center for Advanced Biotechnology and Medicine, Piscataway, New Jersey 08854, USA.

出版信息

Cold Spring Harb Symp Quant Biol. 2007;72:599-606. doi: 10.1101/sqb.2007.72.021.

Abstract

Similar to many diurnal animals, the daily distribution of activity in Drosophila exhibits a bimodal pattern with clock-controlled morning and evening peaks separated by a midday "siesta." In prior work, we showed that the thermosensitive splicing of a 3'-terminal intron in the RNA product from the Drosophila period (per) gene (dper) is critical for temperature-induced adjustments in the timing of evening activity. Cold temperatures enhance the splicing efficiency of this intron (termed dmpi8, Drosophila melanogaster per intron 8), an event that stimulates the daily accumulation of dper RNA and protein, leading to earlier evening activity. Conversely, warm temperatures attenuate dmpi8 splicing efficiency contributing to delayed evening activity, likely ensuring that flies avoid activity during the hot midday sun when they are at increased risk of desiccation. Here, we discuss the underlying molecular mechanisms governing the thermosensitive splicing of dmpi8 and how it contributes to seasonal changes in the daily activity patterns of Drosophila. On a broader perspective, RNA-RNA interactions likely have fundamental roles in the thermal adaptation of life forms to the daily and seasonal changes in temperature.

摘要

与许多昼行性动物类似,果蝇的日常活动分布呈现双峰模式,由生物钟控制的早晚活动高峰被中午的“午休”隔开。在之前的研究中,我们发现果蝇周期基因(per)(dper)RNA产物中一个3'末端内含子的温度敏感剪接对于温度诱导的晚间活动时间调整至关重要。低温会提高这个内含子(称为dmpi8,黑腹果蝇per内含子8)的剪接效率,这一事件会刺激dper RNA和蛋白质的每日积累,导致晚间活动提前。相反,温暖温度会减弱dmpi8的剪接效率,导致晚间活动延迟,这可能确保果蝇在炎热的中午阳光直射时避免活动,因为此时它们脱水风险增加。在这里,我们讨论了控制dmpi8温度敏感剪接的潜在分子机制,以及它如何影响果蝇日常活动模式的季节性变化。从更广泛的角度来看,RNA-RNA相互作用可能在生命形式对每日和季节性温度变化的热适应中发挥着基本作用。

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