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首页> 外文期刊>Molecular and Cellular Endocrinology >Woc (without children) gene control of ecdysone biosynthesis in Drosophila melanogaster.
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Woc (without children) gene control of ecdysone biosynthesis in Drosophila melanogaster.

机译:Woc(无孩子)果蝇蜕皮激素生物合成的基因控制。

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The first step in ecdysteroidogenesis, i.e. the 7,8-dehydrogenation of dietary cholesterol (C) to 7-dehydrocholesterol (7dC), is blocked in Drosophila melanogaster homozygous woc (without children) third instar larval ring glands (source of ecdysone). Unlike ring glands from wild-type D. melanogaster larvae, glands from woc mutants cannot convert radiolabelled C or 25-hydroxycholesterol (25C) to 7dC or 7-dehydro-25-hydroxycholesterol (7d25C) in vitro, nor to ecdysone (E). Yet, when these same glands are incubated with synthetic tracer 7d25C, the rate of metabolism of this polar Delta(5,7)-sterol into E is identical to that observed with glands from comparably staged wild-type larvae. The absence of this enzymatic activity in vivo is probably the direct cause of the observed low whole-body ecdysteroid titers in late third instar homozygous mutant larvae, the low ecdysteroid secretory activity in vitro of brain-ring gland complexes from these animals, and the failure of the larvae to pupariate (undergo metamorphosis). Oral administration of 7dC, but not C, results in a dramatic increase in ecdysteroid production both in vivo and in vitro by the woc mutant brain-ring gland complexes and affects a partial rescue to the beginning of pupal-adult development, but no further, despite elevated whole-body ecdysteroid titers. Data previously reported (Wismar et al., 2000) indicate that the woc gene encodes a zinc-finger protein that apparently modulates the activity of the 7,8-dehydrogenase.
机译:蜕皮类固醇生成的第一步,即饮食性胆固醇(C)从7,8-脱氢变成7-脱氢胆固醇(7dC),在果蝇(Drosophila melanogaster纯合子)(没有孩子)的第三龄幼虫环腺体(蜕皮激素来源)中被阻止。与野生型D. melanogaster幼虫的环状腺体不同,来自woc突变体的腺体在体外无法将放射性标记的C或25-羟基胆固醇(25C)转化为7dC或7-脱氢-25-羟基胆固醇(7d25C),也不能将蜕皮激素(E)转化为。但是,当将这些相同的腺体与合成示踪剂7d25C一起温育时,该极性Delta(5,7)-甾醇向E的代谢速率与从相对分级的野生型幼虫的腺体中观察到的速率相同。体内缺乏这种酶活性可能直接导致了三龄后龄纯合突变体幼虫的全身蜕皮类固醇滴度低,这些动物的脑环腺复合体的体外蜕皮类固醇分泌活性低以及失败的直接原因。幼虫至化up(进行变态)。口服7dC(而非C)会导致woc突变型脑环腺体复合物在体内和体外的蜕皮类固醇生成量显着增加,并且影响rescue成人发育开始的部分挽救,但没有进一步的进展,尽管全身蜕皮类固醇滴度升高。先前报道的数据(Wismar等,2000)表明,woc基因编码一个锌指蛋白,该蛋白明显调节7,8-脱氢酶的活性。

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