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首页> 外文期刊>PLoS Genetics >GOLPH3 Is Essential for Contractile Ring Formation and Rab11 Localization to the Cleavage Site during Cytokinesis in Drosophila melanogaster
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GOLPH3 Is Essential for Contractile Ring Formation and Rab11 Localization to the Cleavage Site during Cytokinesis in Drosophila melanogaster

机译:GOLPH3对于Cytokinesis中的Cytalic> Drosophila Melanogaster 中的Cytokinesis期间,Rab11本地化是必不可少的。

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摘要

The highly conserved Golgi phosphoprotein 3 (GOLPH3) protein has been described as a Phosphatidylinositol 4-phosphate [PI(4)P] effector at the Golgi. GOLPH3 is also known as a potent oncogene, commonly amplified in several human tumors. However, the molecular pathways through which the oncoprotein GOLPH3 acts in malignant transformation are largely unknown. GOLPH3 has never been involved in cytokinesis. Here, we characterize the Drosophila melanogaster homologue of human GOLPH3 during cell division. We show that GOLPH3 accumulates at the cleavage furrow and is required for successful cytokinesis in Drosophila spermatocytes and larval neuroblasts. In premeiotic spermatocytes GOLPH3 protein is required for maintaining the organization of Golgi stacks. In dividing spermatocytes GOLPH3 is essential for both contractile ring and central spindle formation during cytokinesis. Wild type function of GOLPH3 enables maintenance of centralspindlin and Rho1 at cell equator and stabilization of Myosin II and Septin rings. We demonstrate that the molecular mechanism underlying GOLPH3 function in cytokinesis is strictly dependent on the ability of this protein to interact with PI(4)P. Mutations that abolish PI(4)P binding impair recruitment of GOLPH3 to both the Golgi and the cleavage furrow. Moreover telophase cells from mutants with defective GOLPH3-PI(4)P interaction fail to accumulate PI(4)P-and Rab11-associated secretory organelles at the cleavage site. Finally, we show that GOLPH3 protein interacts with components of both cytokinesis and membrane trafficking machineries in Drosophila cells. Based on these results we propose that GOLPH3 acts as a key molecule to coordinate phosphoinositide signaling with actomyosin dynamics and vesicle trafficking during cytokinesis. Because cytokinesis failures have been associated with premalignant disease and cancer, our studies suggest novel insight into molecular circuits involving the oncogene GOLPH3 in cytokinesis. Author Summary In animal cell cytokinesis, constriction of an actomyosin ring at the equatorial cortex of dividing cells must be finely coordinated with plasma membrane remodeling and vesicle trafficking at the cleavage furrow. Accurate control of these events during cell cleavage is essential for maintaining ploidy and preventing neoplastic transformation. GOLPH3 has been recognized as a potent oncogene, involved in the development of several human tumors. However, the precise roles played by GOLPH3 in tumorigenesis are not yet understood. In this manuscript we demonstrate for the first time the requirement for GOLPH3 for cytokinesis. GOLPH3 protein localizes at the cleavage site of Drosophila dividing cells and is essential for cytokinesis in male meiotic cells and larval neuroblasts. We show that this protein acts as a key molecule in coupling plasma membrane remodeling with actomyosin ring assembly and stability during cytokinesis. Our studies indicate a novel connection between GOLPH3 and the molecular mechanisms of cytokinesis, opening new fields of investigation into the tumor cell biology of this oncogene.
机译:高度保守的高尔基磷蛋白3(GOLPH3)蛋白已被描述为在GOLGI的磷脂酰肌醇4-磷酸溶胶[PI(4)P]效应子。 GOLPH3也称为有效的癌基因,通常在几种人类肿瘤中扩增。然而,癌蛋白GOLPH3以恶性转化作用的分子途径在很大程度上是未知的。 GOLPH3从未参与过细胞因子。在这里,我们在细胞分裂期间表征人类狼疮的果蝇同源物。我们表明GOLPH3在切割沟中累积,并且在果蝇精胶质细胞和幼虫神经细胞中成功的细胞因子是所必需的。在首映精子细胞中,需要GOLPH3蛋白来维持GOLGI堆的组织。在分裂精胶质细胞中,GOLPH3对于细胞因子期间的收缩环和中央主轴形成是必不可少的。 GOLPH3的野生型功能使得CENTRALSPINDLIN和RHO1在细胞赤道中维持和肌蛋白II和SEDIN环的稳定化。我们证明,Cytokinesis在细胞因子中的分子机制是严格依赖于该蛋白与PI(4)p相互作用的能力。废除pi(4)p结合损伤损伤golgi和裂解沟槽的突变。此外,来自GOLPH3-PI(4)P相互作用的突变体的簇细胞未能在切割位点积累PI(4)p-COFEX和RAB11相关的分泌细胞器。最后,我们表明GOLPH3蛋白质与细胞因子和膜贩运机械在果蝇细胞中的组分相互作用。基于这些结果,我们提出了GOLPH3作为关键分子,以协调磷酸亚肌腱信号与肌肌瘤动态和囊泡在细胞因子期间的囊泡。因为细胞因子失败与癌前疾病和癌症有关,所以我们的研究表明,对涉及细胞因子的癌基因戈尔氏菌的分子电路进行了新颖的洞察力。作者概述在动物细胞细胞因子中,在分割细胞的赤道皮质中的抗肌蛋白环的收缩必须用血浆膜重塑和囊泡沟槽进行精细协调。在细胞切割期间对这些事件的精确控制对于维持倍增性和预防肿瘤转化是必不可少的。 GOLPH3已被认为是有效的癌基因,参与了几种人类肿瘤的发展。然而,尚未理解肿瘤发生中的GOLPH3中出现的精确角色。在本手稿中,我们首次证明了Cytokinesis对GOLPH3的要求。 GOLPH3蛋白在果蝇分裂细胞的切割位点定位,对于雄性减数细胞和幼虫细胞中的细胞因子是必不可少的。我们表明该蛋白质充当偶联与肌肌瘤环形组装和细胞因子期间稳定性的血浆膜重塑的关键分子。我们的研究表明了戈尔帕3与细胞因子的分子机制之间的新联合,开启了该癌基因肿瘤细胞生物学的新调查领域。

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