首页> 美国卫生研究院文献>The Journal of Biological Chemistry >20-Hydroxyecdysone (20E) Primary Response Gene E75 Isoforms Mediate Steroidogenesis Autoregulation and Regulate Developmental Timing in Bombyx
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20-Hydroxyecdysone (20E) Primary Response Gene E75 Isoforms Mediate Steroidogenesis Autoregulation and Regulate Developmental Timing in Bombyx

机译:20羟蜕皮激素(20E)主要反应基因E75亚型介导类固醇的自动调节并调节家蚕的发育时间。

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摘要

The temporal control mechanisms that precisely control animal development remain largely elusive. The timing of major developmental transitions in insects, including molting and metamorphosis, is coordinated by the steroid hormone 20-hydroxyecdysone (20E). 20E involves feedback loops to maintain pulses of ecdysteroid biosynthesis leading to its upsurge, whereas the underpinning molecular mechanisms are not well understood. Using the silkworm Bombyx mori as a model, we demonstrated that E75, the 20E primary response gene, mediates a regulatory loop between ecdysteroid biosynthesis and 20E signaling. E75 isoforms A and C directly bind to retinoic acid receptor-related response elements in Halloween gene promoter regions to induce gene expression thus promoting ecdysteroid biosynthesis and developmental transition, whereas isoform B antagonizes the transcriptional activity of isoform A/C through physical interaction. As the expression of E75 isoforms is differentially induced by 20E, the E75-mediated regulatory loop represents a fine autoregulation of steroidogenesis, which contributes to the precise control of developmental timing.
机译:精确控制动物发育的时间控制机制仍然难以捉摸。甾体激素20-羟基蜕皮激素(20E)协调昆虫发生主要的过渡性转变,包括蜕皮和变态。 20E涉及反馈回路,以维持蜕皮类固醇生物合成的脉冲,从而导致其激增,而对基础分子机制的了解却很少。使用家蚕作为模型,我们证明了E75(20E主要反应基因)介导蜕皮甾类生物合成与20E信号传导之间的调节环。 E75亚型A和C直接与万圣节基因启动子区域的视黄酸受体相关反应元件结合,诱导基因表达,从而促进蜕皮甾类生物合成和发育过渡,而亚型B通过物理相互作用拮抗亚型A / C的转录活性。由于20E差异诱导E75亚型的表达,因此E75介导的调节环代表了类固醇生成的良好自动调节,这有助于精确控制发育时机。

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