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CDK8 mediates the dietary effects on developmental transition in Drosophila

机译:CDK8介导饮食对果蝇发育过渡的影响。

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The complex interplay between genetic and environmental factors, such as diet and lifestyle, defines the initiation and progression of multifactorial diseases, including cancer, cardiovascular and metabolic diseases, and neurological disorders. Given that most of the studies have been performed in controlled experimental settings to ensure the consistency and reproducibility, the impacts of environmental factors, such as dietary perturbation, on the development of animals with different genotypes and the pathogenesis of these diseases remain poorly understood. By analyzing the cdk8 and cyclin C (cycC) mutant larvae in Drosophila, we have previously reported that the CDK8-CycC complex coordinately regulates lipogenesis by repressing dSREBP (sterol regulatory element-binding protein)-activated transcription and developmental timing by activating EcR (ecdysone receptor)-dependent gene expression. Here we report that dietary nutrients, particularly proteins and carbohydrates, modulate the developmental timing through the CDK8/CycC/EcR pathway. We observed that cdk8 and cycC mutants are sensitive to the levels of dietary proteins and seven amino acids (arginine, glutamine, isoleucine, leucine, methionine, threonine, and valine). Those mutants are also sensitive to dietary carbohydrates, and they are more sensitive to monosaccharides than disaccharides. These results suggest that CDK8-CycC mediates the dietary effects on lipid metabolism and developmental timing in Drosophila larvae.
机译:饮食和生活方式等遗传和环境因素之间的复杂相互作用决定了包括癌症,心血管和代谢性疾病以及神经系统疾病在内的多因素疾病的发生和发展。鉴于大多数研究都是在可控制的实验环境中进行的,以确保一致性和可重复性,因此人们对诸如饮食扰动等环境因素对不同基因型动物的发育以及这些疾病的发病机理的影响知之甚少。通过分析果蝇中的cdk8和细胞周期蛋白C(cycC)突变幼虫,我们先前曾报道CDK8-CycC复合物通过抑制dSREBP(固醇调节元件结合蛋白)激活的转录和通过激活EcR(蜕皮激素)的发育时机来协调脂肪形成。受体)依赖性基因表达。在这里我们报告饮食营养,特别是蛋白质和碳水化合物,通过CDK8 / CycC / EcR途径调节发育时机。我们观察到cdk8和cycC突变体对饮食蛋白和七个氨基酸(精氨酸,谷氨酰胺,异亮氨酸,亮氨酸,蛋氨酸,苏氨酸和缬氨酸)的水平敏感。这些突变体也对饮食中的碳水化合物敏感,并且它们对单糖的敏感性高于对二糖的敏感性。这些结果表明,CDK8-CycC介导了饮食对果蝇幼虫脂质代谢和发育时机的影响。

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