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The nucleolar protein Viriato/Nol12 is required for the growth and differentiation progression activities of the Dpp pathway during Drosophila eye development

机译:果蝇眼发育过程中Dpp途径的生长和分化进展活动需要核仁蛋白Viriato / Nol12

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摘要

Drosophila Decapentaplegic (Dpp), a member of the BMP2/4 class of the TGF-βs, is required for organ growth, patterning and differentiation. However, much remains to be understood about the mechanisms acting downstream of these multiple roles. Here we investigate this issue during the development of the Drosophila eye. We have previously identified viriato (vito) as a dMyc-target gene encoding a nucleolar protein that is required for proper tissue growth in the developing eye. By carrying out a targeted in vivo double-RNAi screen to identify genes and pathways functioning with Vito during eye development, we found a strong genetic interaction between vito and members of the Dpp signaling pathway including the TGF-β receptors tkv (type I), put (type II), and the co-Smad medea (med). Analyzing the expression of the Dpp receptor Tkv and the activation pattern of the pathway’s transducer, p-Mad, we found that vito is required for a correct signal transduction in Dpp-receiving cells. Overall, we validate the use of double RNAi to find specific genetic interactions and, in particular, we uncover a link between the Dpp pathway and Vito, a nucleolar component. vito would act genetically downstream of Dpp, playing an important role in maintaining a sufficient level of Dpp activity for the promotion of eye disc growth and regulation of photoreceptor differentiation in eye development.
机译:果蝇Decapentaplegic(Dpp)是TGF-βsBMP2 / 4类的成员,是器官生长,构图和分化所必需的。但是,关于在这些多重角色的下游起作用的机制还有很多待理解。在这里,我们研究果蝇眼发育过程中的这个问题。我们以前已经确定viriato(vito)为dMyc靶基因,该基因编码核仁蛋白,这是发育中的眼睛正常组织生长所必需的。通过进行有针对性的体内双RNAi筛选以鉴定在眼睛发育过程中具有维托功能的基因和途径,我们发现维托与Dpp信号途径成员(包括TGF-β受体tkv(I型))之间存在很强的遗传相互作用,放置(II型)和共同的Smad美狄亚(med)。分析Dpp受体Tkv的表达和该通路的传感器p-Mad的激活模式后,我们发现vito是Dpp接收细胞中正确信号转导所必需的。总体而言,我们验证了使用双RNAi来查找特定的遗传相互作用,尤其是,我们发现了Dpp途径与核仁成分Vito之间的联系。 vito将在Dpp的基因下游起作用,在维持足够水平的Dpp活性以促进眼盘生长和调节眼发育中的感光细胞分化中起重要作用。

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