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首页> 外文期刊>ACS nano >A Method to Quantify Molecular Diffusion within Thin Solvated Polymer Films: A Case Study on Films of Natively Unfolded Nucleoporins
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A Method to Quantify Molecular Diffusion within Thin Solvated Polymer Films: A Case Study on Films of Natively Unfolded Nucleoporins

机译:一种定量薄溶剂化聚合物膜内分子扩散的方法:本土展开核磷苷膜的案例研究

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摘要

We present a method to probe molecular and nanoparticle diffusion within thin, solvated polymer coatings. The device exploits the confinement with well-defined geometry that forms at the interface between a planar and a hemispherical surface (of which at least one is coated with polymers) in close contact and uses this confinement to analyze diffusion processes without interference of exchange with and diffusion in the bulk solution. With this method, which we call plane–sphere confinement microscopy (PSCM), information regarding the partitioning of molecules between the polymer coating and the bulk liquid is also obtained. Thanks to the shape of the confined geometry, diffusion and partitioning can be mapped as a function of compression and concentration of the coating in a single experiment. The method is versatile and can be integrated with conventional optical microscopes; thus it should find widespread use in the many application areas exploiting functional polymer coatings. We demonstrate the use of PSCM using brushes of natively unfolded nucleoporin domains rich in phenylalanine–glycine repeats (FG domains). A meshwork of FG domains is known to be responsible for the selective transport of nuclear transport receptors (NTRs) and their macromolecular cargos across the nuclear envelope that separates the cytosol and the nucleus of living cells. We find that the selectivity of NTR uptake by FG domain films depends sensitively on FG domain concentration and that the interaction of NTRs with FG domains obstructs NTR movement only moderately. These observations contribute important information to better understand the mechanisms of selective NTR transport.
机译:我们提出了一种方法来探讨薄,溶剂化的聚合物涂层内的分子和纳米粒子扩散。该装置利用良好定义的几何形状利用界面,该围绕平面和封闭件之间形成的界面(其中至少一种涂覆有聚合物)的界面,并使用该限制来分析扩散过程而不会干扰交换和交换干扰散装溶液中的扩散。利用这种方法,我们呼叫平面 - 球体监禁显微镜(PSCM),还得到了有关聚合物涂层和散装液之间的分子分配的信息。由于狭窄的几何形状的形状,可以在单个实验中作为涂层压缩和浓度的函数映射扩散和分区。该方法是通用的,可以与传统光学显微镜集成;因此,它应该在利用功能性聚合物涂层的许多应用区域中寻找广泛的用途。我们证明了使用富含苯丙氨酸 - 甘氨酸含量的本地展开核偶突域的刷子使用PSCM(FG域)。已知FG结构域的网状作品负责核传输受体(NTRS)的选择性传输及其穿过核包膜的核传输受体(NTRS)及其大分子尸体,该核封套将核心囊和活细胞的细胞核分离。我们发现,FG结构域膜的NTR摄取的选择性敏感地取决于FG结构域浓度,并且NTR与FG域的相互作用仅妨碍了中度的NTR运动。这些观察结果有助于更好地理解选择性NTR运输机制的重要信息。

著录项

  • 来源
    《ACS nano》 |2020年第8期|共15页
  • 作者单位

    School of Biomedical Sciences Faculty of Biological Sciences School of Physics and Astronomy Faculty of Engineering and Physical Sciences Astbury Centre of Structural Molecular Biology and Bragg Centre for Materials Research University of Leeds;

    University Grenoble Alpes CNRS LIPhy;

    School of Biomedical Sciences Faculty of Biological Sciences School of Physics and Astronomy Faculty of Engineering and Physical Sciences Astbury Centre of Structural Molecular Biology and Bragg Centre for Materials Research University of Leeds;

    School of Biomedical Sciences Faculty of Biological Sciences School of Physics and Astronomy Faculty of Engineering and Physical Sciences Astbury Centre of Structural Molecular Biology and Bragg Centre for Materials Research University of Leeds;

    Department of Cellular Logistics Max Planck Institute for Biophysical Chemistry;

    Department of Cellular Logistics Max Planck Institute for Biophysical Chemistry;

    School of Biomedical Sciences Faculty of Biological Sciences School of Physics and Astronomy Faculty of Engineering and Physical Sciences Astbury Centre of Structural Molecular Biology and Bragg Centre for Materials Research University of Leeds;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

    diffusion; absorption; confinement; polymer film; reflection interference contrast microscopy; fluorescence recovery after photobleaching; permeability barrier;

    机译:扩散;吸收;禁闭;聚合物膜;反射干扰对比显微镜;光漂白后的荧光回收;渗透性屏障;

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