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Antagonistic Smad transcription factors control the daueron-dauer switch in C. elegans

机译:拮抗Smad转录因子控制秀丽隐杆线虫的dauer / non-dauer开关

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摘要

The C. elegans daf-8 gene encodes an R-Smad that is expressed in a subset of head neurons, the intestine, gonadal distal tip cells and the excretory cell. We found that DAF-8, which inhibits the DAF-3 Co-Smad, is associated with DAF-3 and the DAF-14 Smad in vivo and in vitro. Overexpression of daf-8 conferred a dauer-defective phenotype and suppressed constitutive dauer formation in daf-8 and daf-14 mutants. In contrast to mammalian systems described thus far, active DAF-3 drives a feedback regulatory loop that represses transcription of daf-7 (a TGF. ligand) and daf-8 by directly binding to their regulatory regions. Hence, DAF-8 and DAF-3 are mutually antagonistic. The feedback repression may reinforce the developmental switch by allowing DAF-3 to freely activate dauer transcription in target tissues, unless sufficiently inhibited by DAF-8 and DAF-14. In the adult, DAF-8 downregulates lag-2 expression in the distal tip cells, thus promoting germ line meiosis. This function does not involve DAF-3, thereby avoiding the feedback loop that functions in the dauer switch.
机译:秀丽隐杆线虫daf-8基因编码在头部神经元,肠,性腺远端末端细胞和排泄细胞的子集中表达的R-Smad。我们发现抑制DAF-3 Co-Smad的DAF-8在体内外都与DAF-3和DAF-14 Smad相关。 daf-8的过量表达赋予daau-defective表型,并抑制daf-8和daf-14突变体的组成性dauer形成。与迄今为止描述的哺乳动物系统相反,活性DAF-3驱动一个反馈调节环,该环通过直接结合daf-7(TGF。配体)和daf-8的调控区域来抑制其转录。因此,DAF-8和DAF-3是相互对立的。反馈抑制可以通过允许DAF-3自由激活靶组织中的dauer转录来增强发育转换,除非被DAF-8和DAF-14充分抑制。在成年人中,DAF-8下调了末梢细胞中lag-2的表达,从而促进了生殖细胞的减数分裂。此功能不涉及DAF-3,从而避免了在dauer开关中起作用的反馈回路。

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