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Torso RTK controls Capicua degradation by changing its subcellular localization

机译:躯干RTK通过更改其亚细胞定位来控制Capicua降解

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The transcriptional repressor Capicua (Cic) controls multiple aspects of Drosophila embryogenesis and has been implicated in vertebrate development and human diseases. Receptor tyrosine kinases (RTKs) can antagonize Cic-dependent gene repression, but the mechanisms responsible for this effect are not fully understood. Based on genetic and imaging studies in the early Drosophila embryo, we found that Torso RTK signaling can increase the rate of Cic degradation by changing its subcellular localization. We propose that Cic is degraded predominantly in the cytoplasm and show that Torso reduces the stability of Cic by controlling the rates of its nucleocytoplasmic transport. This model accounts for the experimentally observed spatiotemporal dynamics of Cic in the early embryo and might explain RTK-dependent control of Cic in other developmental contexts.
机译:转录阻遏物Capicua(Cic)控制果蝇胚胎发生的多个方面,并与脊椎动物的发育和人类疾病有关。受体酪氨酸激酶(RTKs)可以拮抗Cic依赖的基因阻遏,但是导致这种作用的机制尚不完全清楚。基于早期果蝇胚胎的遗传和影像学研究,我们发现Torso RTK信号传导可通过改变其亚细胞定位来提高Cic降解率。我们提出Cic主要在细胞质中降解,并表明Torso通过控制其核质运输速率降低了Cic的稳定性。该模型解释了早期胚胎中实验观察到的Cic时空动态,并且可能解释了在其他发育情况下RTK依赖的Cic控制。

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