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Homeotic functions of the Teashirt transcription factor during adult Drosophila development

机译:在果蝇发育过程中茶衬衫转录因子的同源功能

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During Drosophila development region-specific regulation of target genes by Hox proteins is modulated by genetic interactions with various cofactors and genetic collaborators. During embryogenesis one such modulator of Hox target specificity is the zinc-finger transcription factor Teashirt (Tsh) that is expressed in the developing trunk and cooperatively functions with trunk-specific Hox proteins to promote appropriate segment fate. This embryonic function of Tsh is characterized as homeotic since loss of embryonic Tsh activity leads to transformation of trunk segments toward head identity. In addition to this embryonic homeotic role, Tsh also performs vital Hox-independent functions through patterning numerous embryonic, larval and adult structures. Here we address whether the homeotic function of Tsh is maintained throughout development by investigating its contribution to patterning the adult abdomen. We show that Tsh is expressed throughout the developing abdomen and that this expression is dependent on the three Bithorax Hox proteins Ultrabithorax, Abdominal-A and Abdominal-B. Conditional reduction of Tsh activity during pupation reveals broad homeotic roles for this transcription factor throughout the adult abdomen. Additionally we show that, as during embryogenesis, the tsh paralog tiptop ( tio ) plays a partially redundant role in this homeotic activity.
机译:在果蝇发育过程中,Hox蛋白对靶基因的区域特异性调节是通过与各种辅因子和遗传协作者的遗传相互作用来调节的。在胚胎发生过程中,Hox靶标特异性的一种此类调节剂是锌指转录因子Teashirt(Tsh),它在发育中的躯干中表达,并与躯干特异的Hox蛋白协同起作用,以促进适当的区段命运。 Tsh的这种胚胎功能被称为同种异体,因为丧失了胚胎Tsh活性导致躯干节段向头部同一性转化。除了这种胚胎同源作用外,Tsh还通过构图许多胚胎,幼虫和成年结构来执行重要的不依赖Hox的功能。在这里,我们通过研究Tsh对成年腹部模式的贡献来探讨Tsh的同源功能是否在整个发育过程中得以维持。我们显示Tsh在整个发育中的腹部表达,并且该表达取决于三种Bithorax Hox蛋白Ultrabithorax,A-A和B-A。化up期间Tsh活性的有条件降低表明整个成年腹部中该转录因子具有广泛的同源作用。此外,我们显示,在胚胎发生过程中,tsh旁系同源体的toptop(tio)在这种顺势活动中扮演了部分多余的角色。

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