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性别致死基因早期启动子中的多个反应元件确保了其雌性特异性表达模式。

Multiple response elements in the Sex-lethal early promoter ensure its female-specific expression pattern.

作者信息

Estes P A, Keyes L N, Schedl P

机构信息

Department of Molecular Biology, Princeton University, New Jersey 08544.

出版信息

Mol Cell Biol. 1995 Feb;15(2):904-17. doi: 10.1128/MCB.15.2.904.

Abstract

The choice of sexual identity in somatic tissues of the fruit fly Drosophila melanogaster is determined early in embryogenesis by the X-chromosome-to-autosome (X/A) ratio. The system that signals the X/A ratio selects the sexual development pathway by determining the activity state of the binary switch Sex-lethal (Sxl). In 2X/2A animals, the X/A signalling system turns the Sxl gene on, ultimately activating an RNA-splicing autoregulatory feedback loop which serves to maintain the female state during the remainder of development. In 1X/2A animals, this autoregulatory feedback loop is not activated and the male state is subsequently maintained by the default splicing machinery. In the studies reported here, we have examined how the X/A signalling system controls the initial choice of sexual identity through its action on a special early embryonic Sxl promoter, Sxl-Pe. We show that in the early embryo, the activity of Sxl-Pe is controlled in a highly dose-sensitive fashion by the genes on the X chromosome that function as numerator elements and by genes located on the autosomes that function as denominator elements. Functional dissection of Sxl-Pe indicates that activating the promoter in females requires the cumulative action of multiple numerator genes which appear to exert their effects through reiterated cis-acting target sites in the promoter. Conversely, maintaining the promoter silent in males requires the repressive activities of denominator genes, and at least one of the denominator genes also appears to function through target sequences within the promoter.

摘要

果蝇黑腹果蝇体细胞中性别的选择在胚胎发育早期由X染色体与常染色体(X/A)的比例决定。发出X/A比例信号的系统通过确定二元开关性别致死(Sxl)的活性状态来选择性别发育途径。在2X/2A动物中,X/A信号系统开启Sxl基因,最终激活一个RNA剪接自调节反馈环,该反馈环在发育的剩余阶段维持雌性状态。在1X/2A动物中,这个自调节反馈环未被激活,随后雄性状态由默认的剪接机制维持。在本文报道的研究中,我们研究了X/A信号系统如何通过作用于一个特殊的早期胚胎Sxl启动子Sxl-Pe来控制性别身份的初始选择。我们表明,在早期胚胎中,Sxl-Pe的活性以高度剂量敏感的方式由作为分子元件的X染色体上的基因和作为分母元件的常染色体上的基因控制。对Sxl-Pe的功能剖析表明,在雌性中激活启动子需要多个分子基因的累积作用,这些基因似乎通过启动子中重复的顺式作用靶位点发挥作用。相反,在雄性中保持启动子沉默需要分母基因的抑制活性,并且至少有一个分母基因似乎也通过启动子内的靶序列发挥作用。

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