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The Drosophila cell cycle kinase PAN GU forms an active complex with PLUTONIUM and GNU to regulate embryonic divisions

机译:果蝇细胞周期激酶PAN GU与PLUTONIUM和GNU形成活性复合物调节胚胎分裂。

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摘要

Early embryonic cell cycles in Drosophila consist of rapidly alternating S and M phases. Three genes, pan gu (png), plutonium (plu), and giant nuclei (gnu) coordinate these early S-M cycles by ensuring adequate Cyclin B protein levels. Mutations in any of these genes result in unregulated DNA replication and a lack of mitosis (“giant nuclei” phenotype). png encodes a serine/threonine protein kinase, and plu and gnu encode small, novel proteins. We show that PNG, PLU, and GNU constitute a novel protein kinase complex that specifically regulates S-M cell cycles. All three proteins are required for PNG kinase activity and are phosphorylated by PNG in vitro. Yeast two-hybrid screening revealed a direct interaction between PNG and PLU, and their co-expression is required for physical association and activation of PNG kinase. Artificial dimerization of PLU via fusion to either GST or FK506 binding protein (in the presence of dimerizing agent) abrogates the requirement for GNU to activate PNG kinase. We propose a model in which GNU normally regulates embryonic cell cycles by promoting transient dimerization of a core PNG/PLU complex, thereby stimulating PNG kinase activity.
机译:果蝇的早期胚胎细胞周期由快速交替的S和M期组成。盘古(PNG),p(PLU)和巨核(GNU)这三个基因通过确保足够的Cyclin B蛋白水平来协调这些早期的S-M周期。这些基因中的任何一个突变都会导致DNA复制不受控制,并且缺乏有丝分裂(“巨核”表型)。 png编码丝氨酸/苏氨酸蛋白激酶,而plu和gnu编码小的新颖蛋白。我们显示PNG,PLU和GNU构成了一种新型的蛋白激酶复合物,该复合物专门调节S-M细胞周期。这三种蛋白质都是PNG激酶活性所必需的,并在体外被PNG磷酸化。酵母双杂交筛选显示PNG和PLU之间直接相互作用,并且它们的共表达是物理缔合和激活PNG激酶所必需的。通过与GST或FK506结合蛋白融合(在存在二聚剂的情况下),PLU的人工二聚化消除了对GNU激活PNG激酶的需求。我们提出了一个模型,其中GNU通过促进核心PNG / PLU复合物的瞬时二聚化来正常调节胚胎细胞周期,从而刺激PNG激酶活性。

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