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Transcriptional regulation of insect steroid hormone biosynthesis and its role in controlling timing of molting and metamorphosis

机译:昆虫类固醇激素生物合成的转录调控及其在蜕皮和变态时间控制中的作用

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摘要

The developmental transition from juvenile to adult is often accompanied by many systemic changes in morphology, metabolism, and reproduction. Curiously, both mammalian puberty and insect metamorphosis are triggered by a pulse of steroid hormones, which can harmonize gene expression profiles in the body and thus orchestrate drastic biological changes. However, understanding of how the timing of steroid hormone biosynthesis is regulated at the molecular level is poor. The principal insect steroid hormone, ecdysteroid, is biosynthesized from dietary cholesterol in the specialized endocrine organ called the prothoracic gland. The periodic pulses of ecdysteroid titers determine the timing of molting and metamorphosis. To date, at least nine families of ecdysteroidogenic enzyme genes have been identified. Expression levels of these genes correlate well with ecdysteroid titers, indicating that the transcriptional regulatory network plays a critical role in regulating the ecdysteroid biosynthesis pathway. In this article, we summarize the transcriptional regulation of ecdysteroid biosynthesis. We first describe the development of prothoracic gland cells during Drosophila embryogenesis, and then provide an overview of the transcription factors that act in ecdysteroid biosynthesis and signaling. We also discuss the external signaling pathways that target these transcriptional regulators. Furthermore, we describe conserved and/or diverse aspects of steroid hormone biosynthesis in insect species as well as vertebrates.
机译:从少年到成年的发育过渡通常伴随着形态,代谢和繁殖方面的许多系统性变化。奇怪的是,哺乳动物青春期和昆虫的蜕变都是由类固醇激素的脉冲触发的,它们可以协调体内的基因表达谱,从而协调剧烈的生物学变化。但是,对如何在分子水平上调节类固醇激素生物合成的时机的了解很差。主要的昆虫类固醇激素蜕皮类固醇是由膳食胆固醇在称为前胸腺的专门内分泌器官中生物合成的。蜕皮激素滴度的周期性脉冲决定蜕皮和变态的时间。迄今为止,已经鉴定出至少九个蜕皮甾类激素酶基因家族。这些基因的表达水平与蜕皮甾体滴度密切相关,表明转录调节网络在调节蜕皮甾体生物合成途径中起关键作用。在本文中,我们总结了蜕皮甾类生物合成的转录调控。我们首先描述果蝇胚胎发生过程中胸腺细胞的发育,然后概述在蜕皮甾类生物合成和信号传导中起作用的转录因子。我们还讨论了针对这些转录调节因子的外部信号通路。此外,我们描述了昆虫物种和脊椎动物中类固醇激素生物合成的保守和/或不同方面。

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