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Analysis of Arabidopsis Dynamin-Related Protein 1 and 2 (DRP1 and DRP2) Families.

机译:拟南芥与动力蛋白相关的蛋白1和2(DRP1和DRP2)家族的分析。

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摘要

Clathrin-mediated membrane trafficking is essential for multiple stages of plant development, including the processes of cytokinesis and polarized cell expansion. One key player in clathrin-mediated trafficking in animal systems is the polymerizing GTPase dynamin. In plants, two separate families of dynamin-related proteins are involved in clathrin-mediated endocytosis: the dynamin-related-protein 2 (DRP2) family of classical dynamins as well as the DRP1 family of dynamin-related proteins. In addition to their endocytic roles, members of the DRP1 and possibly the DRP2 family also play a distinct role in formation of the cell plate during cytokinesis. Chapter 2 of this thesis is a study of the fundamental properties of the non-classical dynamin-related protein DRP1A. Bacterially expressed, GTPase active DRP1A forms large homopolymers that can interact with negatively charged liposomes. However, these homopolymers do not form regular spirals, do not undergo dynamic disassembly and do not cause liposome tubulation, suggesting that additional factors or modifications are necessary for DRP1A's in vivo function. Chapter 3 of this thesis examines the role of the DRP2 family in plant development, as illuminated by analysis of drp2a and drp2b double insertional mutants, which display an early arrest during both male and female gametophyte development, demonstrating that the DRP2 family is independently essential for plant development. Unlike pollen from the drp1C-1 mutant, arrested drp2ab gametes do not display defects in plasma membrane morphology, suggesting that the DRP2 family may function in a distinct membrane-trafficking pathway. The appendices to this thesis include preliminary work on putative DRP1A interacting proteins, the generation of a DRP2-GFP construct for live imaging, and the groundwork for an investigation of clathrin light chain localization and function.
机译:网格蛋白介导的膜运输对植物发育的多个阶段至关重要,包括胞质分裂和极化细胞扩增过程。网格蛋白介导的动物系统运输的一个关键参与者是聚合的GTPase动力蛋白。在植物中,网格蛋白介导的胞吞作用涉及两个独立的动力蛋白相关蛋白家族:经典动力蛋白的动力蛋白相关蛋白2(DRP2)家族和动力蛋白相关蛋白的DRP1家族。除了它们的胞吞作用外,DRP1家族以及可能的DRP2家族成员在胞质分裂过程中在细胞板的形成中也起着独特的作用。本文的第二章是对非经典动力相关蛋白DRP1A的基本性质的研究。细菌表达的GTPase活性DRP1A形成可以与带负电荷的脂质体相互作用的大均聚物。但是,这些均聚物不会形成规则的螺旋状结构,不会进行动态分解,也不会引起脂质体微管形成,表明DRP1A的体内功能需要其他因素或修饰。本论文的第3章通过对drp2a和drp2b双插入突变体的分析阐明了DRP2家族在植物发育中的作用,这些突变体在雄配子体发育过程中均表现出早期停滞,表明DRP2家族对于植物发展。与来自drp1C-1突变体的花粉不同,被捕的drp2ab配子在质膜形态上没有显示缺陷,这表明DRP2家族可能在独特的膜贩运途径中起作用。本论文的附录包括有关假定的DRP1A相互作用蛋白的初步工作,用于实时成像的DRP2-GFP构建体的产生以及研究网格蛋白轻链定位和功能的基础。

著录项

  • 作者

    Backues, Steven K.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Biology Cell.;Biology Plant Physiology.;Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 192 p.
  • 总页数 192
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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