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Alternative Splicing Modulates Ubx Protein Function in Drosophila melanogaster

机译:替代剪接调节果蝇中的Ubx蛋白功能。

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摘要

The Drosophila Hox gene Ultrabithorax (Ubx) produces a family of protein isoforms through alternative splicing. Isoforms differ from one another by the presence of optional segments—encoded by individual exons—that modify the distance between the homeodomain and a cofactor-interaction module termed the “YPWM” motif. To investigate the functional implications of Ubx alternative splicing, here we analyze the in vivo effects of the individual Ubx isoforms on the activation of a natural Ubx molecular target, the decapentaplegic (dpp) gene, within the embryonic mesoderm. These experiments show that the Ubx isoforms differ in their abilities to activate dpp in mesodermal tissues during embryogenesis. Furthermore, using a Ubx mutant that reduces the full Ubx protein repertoire to just one single isoform, we obtain specific anomalies affecting the patterning of anterior abdominal muscles, demonstrating that Ubx isoforms are not functionally interchangeable during embryonic mesoderm development. Finally, a series of experiments in vitro reveals that Ubx isoforms also vary in their capacity to bind DNA in presence of the cofactor Extradenticle (Exd). Altogether, our results indicate that the structural changes produced by alternative splicing have functional implications for Ubx protein function in vivo and in vitro. Since other Hox genes also produce splicing isoforms affecting similar protein domains, we suggest that alternative splicing may represent an underestimated regulatory system modulating Hox gene specificity during fly development.
机译:果蝇Hox基因Ultrabithorax(Ubx)通过选择性剪接产生一系列蛋白同工型。同工型彼此之间的不同之处在于,存在可选片段(由各个外显子编码),这些片段修饰了同源域和称为“ YPWM”基元的辅因子相互作用模块之间的距离。为了研究Ubx选择性剪接的功能含义,在这里我们分析了单个Ubx同工型对天然中胚层Ubx分子靶标(十足瘫痪(dpp)基因)的激活的体内作用。这些实验表明,在胚胎发生过程中,Ubx亚型在中胚层组织中激活dpp的能力不同。此外,使用Ubx突变体将完整的Ubx蛋白库减少到一个单一的同工型,我们获得了影响前腹肌图案的特定异常现象,证明了Ubx同工型在胚胎中胚层发育过程中不能在功能上互换。最后,一系列体外实验显示,在存在辅因子Extradenticle(Exd)的情况下,Ubx同工型结合DNA的能力也有所不同。总之,我们的结果表明,通过选择性剪接产生的结构变化在体内和体外对Ubx蛋白质功能具有功能意义。由于其他Hox基因也会产生影响相似蛋白质结构域的剪接同工型,因此我们建议在剪接过程中,选择性剪接可能会低估调节 Hox 基因特异性的调节系统。

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