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The Things That Move and Bind Us: The Roles of Kinesin in Membrane and Receptor Trafficking.

机译:移动和绑定我们的事物:Kinesin在膜和受体运输中的作用。

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摘要

Pseudopod formation during phagocytosis is a limiting step in managing the uptake of particles and here we show that the conventional kinesin is involved in both receptor and membrane delivery to the phagocytic cup. Expression of a mutant kinesin isoform (EGFP-Kif5B-DN) in RAW264.7 cells significantly reduced binding of IgG-sRBCs when macrophages were faced with multiple encounters with opsonized particles. SEM analysis of EGFP-Kif5B-DN expressing cells showed sparse, extremely thin pseudopods. We saw disrupted Rab11 trafficking to the phagocytic cup in EGFP-Kif5B-DN-transfected cells. Our opsonized particle overload assays also implicated phagosome membrane recycling in pseudopod formation. We observed reduced phagosome fission and trafficking in mutant kinesin expressing cells as well as reduced cell surface expression of Fcgamma and Mac-1 receptors. It is evident that anterograde trafficking via kinesin is essential both for receptor recycling from the phagosome as well as delivery of Rab11-containing membrane stores to effect broad and functional pseudopods. We noticed an actin cup defect in EGFP-Kif5B-DN-transfected cells and turned to focal adhesions to investigate the role of kinesin in actin assembly at the membrane. To investigate the role for kinesin in focal adhesion formation we examined nascent focal adhesions formation in CHO-IIA cells. Transfected, EGFP-Kif5B-DN transfected cells were less spread compared to control cells and displayed a "halo" pattern of focal adhesions at the base of the cell. To see if this was a defect in upstream receptors involved in focal adhesion assembly we investigated surface integrin levels in EGFP-Kif5B-DN transfected cells. Using flow cytometry and immunofluorescence analysis we observed decreased levels of beta1-integrin at the surface of EGFP-Kif5B-DN transfected cells, compared to control cells. We investigated the signaling requirements for kinesin-mediated integrin transport and determined that beta1-integrin transport from the recycling compartment is regulated by the PI(3)K-PKB/AKT-GSK-3beta pathway. Thus in the absence of functional kinesin, cells fail to form proper focal adhesion sites due to lack of adhesion and substrate contact resulting in the loss of cell spreading.
机译:吞噬过程中假足的形成是控制颗粒摄取的限制步骤,在这里我们表明常规的驱动蛋白既参与受体也参与向吞噬杯的膜递送。当巨噬细胞与调理过的颗粒多次接触时,RAW264.7细胞中突变型驱动蛋白同工型(EGFP-Kif5B-DN)的表达显着降低了IgG-sRBC的结合。 EGFP-Kif5B-DN表达细胞的SEM分析显示稀疏,极薄的假足。我们在EGFP-Kif5B-DN转染的细胞中看到破坏的Rab11转运至吞噬杯。我们的调理过氧化物颗粒超载试验还涉及假足形成中的吞噬体膜回收。我们观察到突变的驱动蛋白表达细胞中吞噬体裂变和运输减少,以及Fcgamma和Mac-1受体的细胞表面表达减少。显然,通过驱动蛋白的顺行转运对于从吞噬体回收受体以及递送含Rab11的膜储存物以实现广泛的功能性假足都是必不可少的。我们注意到EGFP-Kif5B-DN转染的细胞中的肌动蛋白杯缺陷,并转向粘着斑以研究驱动蛋白在膜的肌动蛋白装配中的作用。为了研究驱动蛋白在粘着斑形成中的作用,我们研究了CHO-IIA细胞中新生的粘着斑形成。与对照细胞相比,转染的EGFP-Kif5B-DN转染的细胞散布较少,并在细胞底部显示了粘着斑的“晕”模式。为了观察这是否是参与粘着斑组装的上游受体的缺陷,我们研究了EGFP-Kif5B-DN转染的细胞中表面整联蛋白水平。使用流式细胞仪和免疫荧光分析,与对照细胞相比,我们观察到EGFP-Kif5B-DN转染的细胞表面β1-整合素水平降低。我们调查了驱动蛋白介导的整联蛋白运输的信号传导要求,并确定从回收室的β1-整联蛋白运输受PI(3)K-PKB / AKT-GSK-3beta途径调控。因此,在不存在功能性驱动蛋白的情况下,细胞由于缺乏粘附力和底物接触而无法形成适当的局部粘附位点,从而导致细胞扩散的丧失。

著录项

  • 作者

    Silver, Kristen.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Biology Molecular.;Biology Cell.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 177 p.
  • 总页数 177
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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