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Mitochondrial dynamics and optical conformation changes in DsRed as studied by Fourier imaging correlation spectroscopy.

机译:傅里叶成像相关光谱法研究DsRed中的线粒体动力学和光学构象变化。

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摘要

Novel experiments that probe the dynamics of intracellular species, including the center-of-mass displacements and internal conformational transitions of biological macromolecules, have the potential to reveal the complex biochemical mechanisms operating within the cell. This work presents the implementation and development of Fourier imaging correlation spectroscopy (FICS), a phase-selective approach to fluorescence spectroscopy that measures the collective coordinate fluctuations of fluorescently labeled microscopic particles. In FICS experiments, a spatially modulated optical grating excites a fluorescently labeled sample. Phase-synchronous detection of the fluorescence, with respect to the phase of the exciting optical grating, can be used to monitor the fluctuations of partially averaged spatial coordinates. These data are then analyzed by two-point and four-point time correlation functions to provide a statistically meaningful understanding of the dynamics under observation. FICS represents a unique route to elevate signal levels, while acquiring detailed information about molecular coordinate trajectories.;Mitochondria of mammalian cells are known to associate with cytoskeletal proteins, and their motions are affected by the stability of microtubules and microfilaments. Within the cell it is possible to fluorescently label the mitochondria and study its dynamic behavior with FICS. The dynamics of S. cerevisiae yeast mitochondria are characterized at four discrete length scales (ranging from 0.6–1.19 μm) and provide detailed information about the influence of specific cytoskeletal elements. Using the microtubule and microfilament destabilizing agents, Nocodazole and Latrunculin A, it is determined that microfilaments are required for normal yeast mitochondrial motion while microtubules have no effect. Experiments with specific actin mutants revealed that actin is responsible for enhanced mobility on length scales greater than 0.6 μm.;The versatility of FICS expands when individual molecules are labeled with fluorescent chromophores. In recent experiments on the tetrameric fluorescent protein DsRed, polarization-modulated FICS (PM-FICS) is demonstrated to separate conformational dynamics from molecular translational dynamics. The optical switching pathways of DsRed, a tetrameric complex of fluorescent protein subunits, are examined. An analysis of PM-FICS coordinate trajectories, in terms of 2D spectra and joint probability distributions, provides detailed information about the transition pathways between distinct dipole-coupled DsRed conformations.;This dissertation includes co-authored and previously published material.
机译:探测细胞内物种动力学的新实验,包括生物大分子的质心位移和内部构象转变,有可能揭示细胞内复杂的生化机制。这项工作介绍了傅立叶成像相关光谱学(FICS)的实现和发展,该技术是一种荧光光谱的相选择方法,用于测量荧光标记的微观粒子的集体坐标波动。在FICS实验中,空间调制的光栅会激发荧光标记的样品。相对于激发光栅的相位,荧光的相位同步检测可用于监视部分平均的空间坐标的波动。然后,通过两点和四点时间相关函数对这些数据进行分析,以提供对观测动态的统计意义上的理解。 FICS代表着一条独特的途径来提高信号水平,同时获得有关分子坐标轨迹的详细信息。哺乳动物细胞的线粒体与细胞骨架蛋白相关联,其运动受微管和微丝稳定性的影响。在细胞内,可以用荧光标记线粒体并通过FICS研究其动态行为。酿酒酵母酵母线粒体的动力学特征是在四个离散的长度尺度上(范围从0.6到1.19μm),并提供了有关特定细胞骨架成分影响的详细信息。使用微管和微丝去稳定剂,诺考达唑和Latrunculin A,可以确定正常酵母线粒体运动需要微丝,而微管没有作用。特定肌动蛋白突变体的实验表明,肌动蛋白在大于0.6μm的长度范围内增强了迁移能力;当单个分子被荧光发色团标记时,FICS的多功能性得以扩展。在四聚体荧光蛋白DsRed的最新实验中,偏振调节FICS(PM-FICS)被证明可以将构象动力学与分子翻译动力学分开。检查了DsRed(一种荧光蛋白亚基的四聚体复合物)的光交换路径。从二维光谱和联合概率分布的角度对PM-FICS坐标轨迹进行了分析,提供了有关不同偶极偶合的DsRed构象之间跃迁途径的详细信息。

著录项

  • 作者

    Senning, Eric Nicolas.;

  • 作者单位

    University of Oregon.;

  • 授予单位 University of Oregon.;
  • 学科 Chemistry Biochemistry.;Physics Condensed Matter.;Biophysics General.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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