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A molecular genetic approach to the biosynthesis of the insect steroid molting hormone.

机译:昆虫类固醇蜕皮激素生物合成的分子遗传学方法。

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摘要

Insect growth, development, and molting depend upon a critical titer of the principal molting hormone of arthropods, 20-hydroxyecdysone (20E). Although the structure of 20E as a polyhydroxylated steroid was determined more than five decades ago, the exact steps in its biosynthesis have eluded identification. Over the past several years, the use of the fly database and the techniques and paradigms of biochemistry, analytical chemistry, and molecular genetics have allowed the cloning and sequencing of four genes in the Halloween gene family of Drosophila melanogaster, all of them encoding cytochrome P450 (CYP) enzymes, each of which mediates one of the four terminal hydroxylation steps in 20E biosynthesis. Further, the sequence of these hydroxylations has been determined, and developmental alterations in the expression of each of these genes have been quantified during both embryonic and postembryonic life.
机译:昆虫的生长,发育和蜕皮取决于节肢动物的主要蜕皮激素20-羟基蜕皮激素(20E)的临界滴定度。尽管二十多年前作为多羟基化类固醇的结构已被确定,但其生物合成的确切步骤尚待鉴定。在过去的几年中,利用果蝇数据库以及生物化学,分析化学和分子遗传学的技术和范例,已克隆和测序了果蝇万圣节基因家族中的四个基因,所有这些基因均编码细胞色素P450 (CYP)酶,每个酶介导20E生物合成中四个末端羟基化步骤之一。此外,已经确定了这些羟基化的序列,并且已经在胚胎和胚胎后的生活中定量了这些基因中每一个的表达的发育变化。

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