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Dual Role of Jun N-Terminal Kinase Activity in Bone Morphogenetic Protein-Mediated Drosophila Ventral Head Development

机译:Jun N终端激酶活性在骨形态发生蛋白介导的果蝇腹侧头发育中的双重作用。

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摘要

The Drosophila bone morphogenetic protein encoded by () controls ventral head morphogenesis by expression in the head primordia, eye-antennal imaginal discs. These are epithelial sacs made of two layers: columnar disc proper cells and squamous cells of the peripodial epithelium. expression related to head formation occurs in the peripodial epithelium; cis-regulatory mutations disrupting this expression display defects in sensory vibrissae, rostral membrane, gena, and maxillary palps. Here we document that disruption of this expression causes apoptosis in peripodial cells and underlying disc proper cells. We further show that peripodial Dpp acts directly on the disc proper, indicating that Dpp must cross the disc lumen to act. We demonstrate that palp defects are mechanistically separable from the other mutant phenotypes; both are affected by the c-Jun N-terminal kinase pathway but in opposite ways. Slight reduction of both Jun N-terminal kinase and Dpp activity in peripodial cells causes stronger vibrissae, rostral membrane, and gena defects than Dpp alone; additionally, strong reduction of Jun N-terminal kinase activity alone causes identical defects. A more severe reduction of results in similar vibrissae, rostral membrane, and gena defects, but also causes mutant maxillary palps. This latter defect is correlated with increased peripodial Jun N-terminal kinase activity and can be caused solely by ectopic activation of Jun N-terminal kinase. We conclude that formation of sensory vibrissae, rostral membrane, and gena tissue in head morphogenesis requires the action of Jun N-terminal kinase in peripodial cells, while excessive Jun N-terminal kinase signaling in these same cells inhibits the formation of maxillary palps.
机译:()编码的果蝇骨形态发生蛋白通过在头原基,眼-肠-肾上腺视盘中表达来控制腹侧头的形态发生。这些是由两层组成的上皮囊:柱状椎间盘固有细胞和周生上皮的鳞状细胞。与头形成有关的表达发生在周膜上皮中。顺式调节突变破坏该表达在感觉触须,延髓膜,性腺和上颌触诊中显示缺陷。在这里,我们证明了这种表达的破坏会导致周膜细胞和基础椎间盘固有细胞凋亡。我们进一步表明,周缘Dpp直接作用于椎间盘本身,表明Dpp必须穿过椎间盘管腔才能起作用。我们证明,手掌缺损与其他突变表型在机械上是可分离的。两者均受c-Jun N端激酶途径的影响,但方向相反。与单独使用Dpp相比,周缘细胞中Jun N端激酶和Dpp活性的略微降低会引起更强的触须,延髓膜和性腺缺陷。此外,单独的Jun N末端激酶活性强烈降低会导致相同的缺陷。更严重的结果减少类似的触须,延髓膜和性腺缺陷,但也导致突变的上颌触诊。后一种缺陷与周围的Jun N-末端激酶活性增加有关,并且可以仅由Jun N-末端激酶的异位激活引起。我们得出结论,在头部形态发生中感觉触角,鼻膜和性腺组织的形成需要周细胞中的Jun N末端激酶的作用,而在这些相​​同细胞中过多的Jun N末端激酶信号传导会抑制上颚的形成。

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