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背篓基因和无翅基因对果蝇中胸背板模式形成的不同贡献。

Different contributions of pannier and wingless to the patterning of the dorsal mesothorax of Drosophila.

作者信息

García-García M J, Ramain P, Simpson P, Modolell J

机构信息

Centro de Biología Molecular Severo Ochoa, CSIC and UAM, Cantoblanco, Spain.

出版信息

Development. 1999 Aug;126(16):3523-32. doi: 10.1242/dev.126.16.3523.

Abstract

In Drosophila, the GATA family transcription factor Pannier and the Wnt secreted protein Wingless are known to be important for the patterning of the notum, a part of the dorsal mesothorax of the fly. Thus, both proteins are necessary for the development of the dorsocentral mechanosensory bristles, although their roles in this process have not been clarified. Here, we show that Pannier directly activates the proneural genes achaete and scute by binding to the enhancer responsible for the expression of these genes in the dorsocentral proneural cluster. Moreover, the boundary of the expression domain of Pannier appears to delimit the proneural cluster laterally, while antagonism of Pannier function by the Zn-finger protein U-shaped sets its limit dorsally. So, Pannier and U-shaped provide positional information for the patterning of the dorsocentral cluster. In contrast and contrary to previous suggestions, Wingless does not play a similar role, since the levels and vectorial orientation of its concentration gradient in the dorsocentral area can be greatly modified without affecting the position of the dorsocentral cluster. Thus, Wingless has only a permissive role on dorsocentral achaete-scute expression. We also provide evidence indicating that Pannier and U-shaped are main effectors of the regulation of wingless expression in the presumptive notum.

摘要

在果蝇中,已知GATA家族转录因子Pannier和Wnt分泌蛋白无翅(Wingless)对于果蝇背侧中胸一部分的背板模式形成很重要。因此,这两种蛋白对于背中央机械感觉刚毛的发育都是必需的,尽管它们在这个过程中的作用尚未阐明。在这里,我们表明Pannier通过结合负责这些基因在背中央神经前体细胞簇中表达的增强子,直接激活神经前体基因achaete和scute。此外,Pannier表达结构域的边界似乎在侧面界定了神经前体细胞簇,而锌指蛋白U形对Pannier功能的拮抗作用则在背侧设定了其界限。所以,Pannier和U形为背中央细胞簇的模式形成提供了位置信息。相比之下,与之前的观点相反,无翅并不起类似作用,因为其在背中央区域的浓度梯度水平和矢量方向可以在不影响背中央细胞簇位置的情况下大幅改变。因此,无翅对背中央achaete - scute表达仅起许可作用。我们还提供了证据表明Pannier和U形是假定背板中无翅表达调控的主要效应因子。

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