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Affinity for the nuclear compartment and expression during cell differentiation implicate phosphorylated Groucho/TLE1 forms of higher molecular mass in nuclear functions.

机译:核区室的亲和力和细胞分化过程中的表达暗示核功能中较高分子量的磷酸化Groucho / TLE1形式。

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摘要

The Drosophila protein Groucho is involved in embryonic segmentation and neural development, and is implicated in the Notch signal transduction pathway. We are investigating the molecular mechanisms underlying the function of Groucho and of its mammalian homologues, the TLE ('transducin-like Enhancer of split') proteins. We show that Groucho/TLE1 proteins are phosphorylated. We also show that two populations of phosphorylated Groucho proteins can be identified based on their interaction with the nuclear compartment. More slowly migrating proteins with an apparent molecular mass of roughly 110 kDa interact strongly with the nuclei, while faster migrating proteins displaying molecular masses roughly 84-85 kDa show lower affinity for the nuclear compartment. Similarly, TLE1 proteins with an apparent molecular mass of roughly 118 kDa exhibit higher affinity for the nuclear compartment than do faster migrating forms with apparent molecular masses of 90-93 kDa. Moreover, we show that the nuclear, more slowly migrating, TLE1 proteins are induced during neural determination of P19 embryonic carcinoma cells. These results implicate phosphorylation in the activity of Groucho/TLE1 proteins and suggest that phosphorylated forms of higher molecular mass are involved in nuclear functions. Finally, we show that different TLE proteins respond in different ways to the neural commitment of P19 cells, suggesting that individual members of this protein family may have non-redundant functions.
机译:果蝇蛋白Groucho参与胚胎的分割和神经发育,并参与Notch信号转导途径。我们正在研究格劳乔(Groucho)及其哺乳动物同系物TLE(“转导蛋白样分裂增强子”蛋白)功能的分子机制。我们表明,Groucho / TLE1蛋白被磷酸化。我们还显示,可以基于两个群体的磷酸化Groucho蛋白与核区室的相互作用进行鉴定。表观分子量约为110 kDa的迁移速度较慢的蛋白质与核相互作用强烈,而分子质量约为84-85 kDa的较快迁移的蛋白质则对核区的亲和力较低。同样,表观分子量约为118 kDa的TLE1蛋白与表观分子量为90-93 kDa的较快迁移形式相比,对核区室的亲和力更高。此外,我们表明,在神经测定P19胚胎癌细胞的过程中,核的TLE1蛋白迁移速度较慢。这些结果暗示磷酸化在Groucho / TLE1蛋白的活性中,并暗示较高分子量的磷酸化形式参与核功能。最后,我们显示了不同的TLE蛋白以不同的方式对P19细胞的神经反应作出反应,表明该蛋白家族的各个成员可能具有非冗余功能。

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