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The Spalt transcription factors regulate cell proliferation, survival and epithelial integrity downstream of the Decapentaplegic signalling pathway

机译:Spalt转录因子调节Decapentaplegic信号通路下游的细胞增殖,存活和上皮完整性

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The expression of the spalt genes is regulated by the Decapentaplegic signalling pathway in the Drosophila wing. These genes participate in the patterning of the longitudinal wing veins by regulating the expression of vein-specific genes, and in the establishment of cellular affinities in the central region of the wing blade epithelium. The Spalt proteins act as transcription factors, most likely regulating gene expression by repression, but the identity of their target genes in the wing is still unknown. As a preliminary step to unravel the genetic hierarchy controlled by the Spalt proteins, we have analysed their requirements during wing development, and addressed to what extent they mediate all the functions of the Decapentaplegic pathway in this developmental system. We identify additional functions for Spalt in cell division, survival, and maintenance of epithelial integrity. Thus, Spalt activity is required to promote cell proliferation, acting in the G2/M transition of the cell cycle. The contribution of Spalt to cell division is limited to the central region of the wing blade, as they do not mediate the extra growth triggered by Decapentaplegic signalling in the peripheral regions of the wing disc. In addition, Spalt function is required to maintain cell viability in cells exposed to high levels of Decapentaplegic signalling. This aspect of Spalt function is related to the repression of JNK signalling in the spalt domain of expression. Finally, we further characterise the requirements of Spalt to maintain epithelial integrity by regulating cellular affinities between cells located in the central wing region. Our results indicate that Spalt function mediates most of the requirements identified for Decapentaplegic signalling, contributing to establish the cellular qualities that differentiate central versus peripheral territories in the wing blade.
机译:Spalt基因的表达是由果蝇翅膀中的Decapentaplegic信号通路调节的。这些基因通过调节静脉特异性基因的表达,参与了纵向翼静脉的形成,并参与了翼叶片上皮中央区域的细胞亲和力的建立。 Spalt蛋白起转录因子的作用,最有可能通过抑制来调节基因表达,但是它们在翼中靶基因的身份仍然未知。作为揭开Spalt蛋白质控制的遗传等级的第一步,我们分析了它们在机翼发育过程中的需求,并探讨了它们在何种程度上介导了Capcapentaplegic途径在该发育系统中的所有功能。我们确定Spalt在细胞分裂,存活和维持上皮完整性方面的其他功能。因此,需要Spalt活性来促进细胞增殖,并在细胞周期的G2 / M过渡中起作用。 Spalt对细胞分裂的贡献仅限于机翼叶片的中心区域,因为它们不介导由机能障碍信号在机翼盘周围区域触发的额外生长。此外,需要Spalt功能来维持暴露于高水平十足功能性信号传导的细胞中的细胞活力。 Spalt功能的这个方面与表达spalt结构域中JNK信号转导的抑制有关。最后,我们进一步表征Spalt通过调节位于中央翼区的细胞之间的细胞亲和力来维持上皮完整性的要求。我们的结果表明Spalt功能介导了确定的十足瘫痪信号传递的大多数要求,有助于建立区分翼片中中央区域和周边区域的细胞质量。

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