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动态反馈回路作为开关,在果蝇中形成诱导成熟的类固醇脉冲。

Dynamic feedback circuits function as a switch for shaping a maturation-inducing steroid pulse in Drosophila.

机构信息

Department of Biology, University of Copenhagen, 2100 Copenhagen, Denmark.

出版信息

Development. 2013 Dec;140(23):4730-9. doi: 10.1242/dev.099739. Epub 2013 Oct 30.

Abstract

Steroid hormones trigger the onset of sexual maturation in animals by initiating genetic response programs that are determined by steroid pulse frequency, amplitude and duration. Although steroid pulses coordinate growth and timing of maturation during development, the mechanisms generating these pulses are not known. Here we show that the ecdysone steroid pulse that drives the juvenile-adult transition in Drosophila is determined by feedback circuits in the prothoracic gland (PG), the major steroid-producing tissue of insect larvae. These circuits coordinate the activation and repression of hormone synthesis, the two key parameters determining pulse shape (amplitude and duration). We show that ecdysone has a positive-feedback effect on the PG, rapidly amplifying its own synthesis to trigger pupariation as the onset of maturation. During the prepupal stage, a negative-feedback signal ensures the decline in ecdysone levels required to produce a temporal steroid pulse that drives developmental progression to adulthood. The feedback circuits rely on a developmental switch in the expression of Broad isoforms that transcriptionally activate or silence components in the ecdysone biosynthetic pathway. Remarkably, our study shows that the same well-defined genetic program that stimulates a systemic downstream response to ecdysone is also utilized upstream to set the duration and amplitude of the ecdysone pulse. Activation of this switch-like mechanism ensures a rapid, self-limiting PG response that functions in producing steroid oscillations that can guide the decision to terminate growth and promote maturation.

摘要

甾体激素通过启动由甾体脉冲频率、幅度和持续时间决定的遗传反应程序,引发动物的性成熟。虽然甾体脉冲协调了发育过程中的生长和成熟的时间,但产生这些脉冲的机制尚不清楚。在这里,我们表明,在果蝇中驱动幼体-成虫转变的蜕皮甾酮脉冲是由前胸腺(PG)中的反馈回路决定的,PG 是昆虫幼虫主要的甾体产生组织。这些回路协调激素合成的激活和抑制,这两个关键参数决定了脉冲的形状(幅度和持续时间)。我们表明,蜕皮甾酮对 PG 具有正反馈作用,迅速放大其自身的合成,以触发蛹化作为成熟的开始。在预蛹期,负反馈信号确保了蜕皮甾酮水平的下降,这是产生驱动向成年发育进展的时间性甾体脉冲所必需的。反馈回路依赖于 Broad 同工型表达的发育开关,该开关转录激活或沉默蜕皮甾酮生物合成途径中的成分。值得注意的是,我们的研究表明,刺激蜕皮甾酮对系统下游反应的相同明确遗传程序也被用于在上游设定蜕皮甾酮脉冲的持续时间和幅度。这种类似开关的机制的激活确保了 PG 快速、自我限制的反应,该反应在产生甾体振荡中起作用,甾体振荡可以指导终止生长和促进成熟的决策。

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