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生物钟通过保守的 Pdp1 途径调控果蝇对杀虫剂的反应。

Circadian clock regulates response to pesticides in Drosophila via conserved Pdp1 pathway.

机构信息

Department of Zoology, Oregon State University, Corvallis, Oregon 97331, USA.

出版信息

Toxicol Sci. 2010 Jun;115(2):513-20. doi: 10.1093/toxsci/kfq083. Epub 2010 Mar 26.

Abstract

Daily rhythms generated by the circadian clock regulate many life functions, including responses to xenobiotic compounds. In Drosophila melanogaster, the circadian clock consists of positive elements encoded by cycle (cyc) and Clock (Clk) and negative elements encoded by period (per) and timeless (tim) genes. The epsilon-isoform of the PAR-domain protein 1 (Pdp1epsilon) transcription factor is controlled by positive clock elements and regulates daily locomotor activity rhythms. Pdp1 target genes have not been identified, and its involvement in other clock output pathways is not known. Mammalian orthologs of Pdp1 have been implicated in the regulation of xenobiotic metabolism; therefore, we asked whether Pdp1 has a similar role in the fly. Using pesticides as model toxicants, we determined that disruption of Pdp1epsilon increased pesticide-induced mortality in flies. Flies deficient for cyc also showed increased mortality, while disruption of per and tim had no effect. Day/night and Pdp1-dependent differences in the expression of xenobiotic-metabolizing enzymes Cyp6a2, Cyp6g1, and alpha-Esterase-7 were observed and likely contribute to impaired detoxification. DHR96, a homolog of constitutive androstane receptor and pregnane X receptor, is involved in pesticide response, and DHR96 expression decreased when Pdp1 was suppressed. Taken together, our data uncover a pathway from the positive arm of the circadian clock through Pdp1 to detoxification effector genes, demonstrating a conserved role of the circadian system in modulating xenobiotic toxicity.

摘要

昼夜节律钟生成的日常节律调节许多生命功能,包括对外源化合物的反应。在黑腹果蝇中,昼夜节律钟由周期(cyc)和时钟(Clk)编码的正元件和由时期(per)和无时(tim)基因编码的负元件组成。ε-型 PAR 结构域蛋白 1(Pdp1ε)转录因子受正时钟元件的控制,调节日常运动活动节律。尚未鉴定出 Pdp1 的靶基因,其在其他时钟输出途径中的参与也未知。Pdp1 的哺乳动物同源物参与了外源物代谢的调节;因此,我们询问 Pdp1 在果蝇中是否具有类似的作用。我们使用杀虫剂作为模型毒物,确定了 Pdp1ε 的破坏增加了果蝇对杀虫剂诱导的死亡率。cyc 缺陷的果蝇也表现出更高的死亡率,而 per 和 tim 的破坏则没有影响。昼夜节律和 Pdp1 依赖性差异导致观察到外源物代谢酶 Cyp6a2、Cyp6g1 和α-酯酶-7 的表达,这可能导致解毒能力受损。DHR96 是组成型雄烷受体和孕烷 X 受体的同源物,参与杀虫剂反应,当 Pdp1 受到抑制时,DHR96 的表达减少。总之,我们的数据揭示了一条从昼夜节律钟的正臂通过 Pdp1 到解毒效应基因的途径,证明了昼夜节律系统在调节外源物毒性方面的保守作用。

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