...
首页> 外文期刊>Frontiers in Cell and Developmental Biology >The Ran Pathway in Drosophila melanogaster Mitosis
【24h】

The Ran Pathway in Drosophila melanogaster Mitosis

机译:果蝇有丝分裂的Ran途径。

获取原文

摘要

Over the last two decades, the small GTPase Ran has emerged as a central regulator of both mitosis and meiosis, particularly in the generation, maintenance and regulation of the microtubule (MT)-based bipolar spindle. Ran-regulated pathways in mitosis bear many similarities to the well-characterized functions of Ran in nuclear transport and, as with transport, the majority of these mitotic effects are mediated through affecting the physical interaction between karyopherins and Spindle Assembly Factors (SAFs) - a loose term describing proteins or protein complexes involved in spindle assembly through promoting nucleation, stabilization, and/or depolymerization of MTs, through anchoring MTs to specific structures such as centrosomes, chromatin or kinetochores, or through sliding MTs along each other to generate the force required to achieve bipolarity. As such, the Ran-mediated pathway represents a crucial functional module within the wider spindle assembly landscape. Research into mitosis using the model organism Drosophila melanogaster has contributed substantially to our understanding of centrosome and spindle function. However, in comparison to mammalian systems, very little is known about the contribution of Ran-mediated pathways in Drosophila mitosis. This article sets out to summarize our understanding of the roles of the Ran pathway components in Drosophila mitosis, focusing on the syncytial blastoderm embryo, arguing that, far from being superfluous, it can provide important insights into the conserved functions on Ran during spindle formation.
机译:在过去的二十年中,小的GTPase Ran已成为有丝分裂和减数分裂的中央调节剂,特别是在基于微管(MT)的双极纺锤体的产生,维持和调节中。 Ran调控的有丝分裂途径与Ran在核运输中功能明确的功能有许多相似之处,并且与运输一样,这些有丝分裂效应中的大多数是通过影响核球蛋白与纺锤体组装因子(SAFs)之间的物理相互作用来介导的。宽松的术语,用于描述通过促进MT的成核,稳定和/或解聚,通过将MT锚定到特定结构(如中心体,染色质或动植物)或通过彼此滑动MT以产生所需力而参与纺锤体组装的蛋白质或蛋白质复合物实现双极性。这样,Ran介导的途径代表了更广泛的主轴组装领域中的关键功能模块。使用模型生物果蝇(Drosophila melanogaster)对有丝分裂的研究对我们对中心体和纺锤体功能的理解做出了重大贡献。但是,与哺乳动物系统相比,关于Ran介导的途径在果蝇有丝分裂中的作用了解甚少。本文着重总结了我们对Ran途径组分在果蝇有丝分裂中的作用的理解,重点是合胞体胚盘胚胎,认为除了多余之外,它还可以为纺锤体形成过程中Ran的保守功能提供重要见解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号