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Interfacial electron transfer of cytochrome c and conjugated polyelectrolyte /surfactant complexes.

机译:细胞色素c和共轭聚电解质/表面活性剂复合物的界面电子转移。

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摘要

Cytochrome c (cyt c) acts as an electron shuttle in biological respiration and photosynthesis. Although the understanding of this protein and its electron transfer (ET) reaction is relatively highly developed, many of its aspects remain unclear. We use supramolecular assemblies of cytochrome c to understand its ET at an interface in terms of how the ET depends on solution composition, SAM composition, temperature, immobilization methods and the nature of the electron tunneling pathway. From these studies we have learned: (1) the formal potential and the surface charge of cytochrome c are modified when binding to a negatively charged surface; (2) cytochrome c molecules assume a wide distribution of geometries when electrostatically binding to a negatively charged surface, which leads to a wide distribution of ET rate constants; (3) when the protein is within 14 A of the electrode, the ET rate is controlled by local frictional motions rather than by electron tunneling; (4) the binding-inactive sites, the diluent molecules on the SAM can provide alternative electron tunneling pathways from electrode surface to the heme of cytochrome c, and in suitable conditions the diluent molecules dominate in the electron tunneling pathway.;Poly (phenylethynylene) (PPE) based conjugated polyelectrolytes are a class of polyions having rigid backbones. We present a fluorescence correlation spectroscopy (FCS) study on the hydrodynamic properties of complexes formed by two PPE-SO3- polymers, having different charge density, with octadecyl trimethylammoniumbromide (OTAB) below the critical micelle concentration. The concentration ratio COTAB/Cmonomer ranges from 0.2 to 1800. The hydrodynamic radius of the complexes as a function of OTAB concentration has three regimes. In the low concentration regime, the complex has a comparable size with the polymer in deionized water. In the intermediate concentration regime the complexes have the largest size and substantial heterogeneity. In the high concentration regime, the complexes have a size that is about three times larger than that in the low concentration regime. The results significantly extend the understanding of the interaction between polyelectrolyte and ionic surfactant, and indicate that the rigidity of polymer backbone and COTAB/Cmonomer concentration ratio act to determine the composition of polyelectrolyte/surfactant complexes.
机译:细胞色素c(cyt c)在生物呼吸和光合作用中充当电子穿梭。尽管对该蛋白质及其电子转移(ET)反应的理解相对高度发达,但其许多方面仍不清楚。我们使用细胞色素c的超分子组装来了解其在界面上的ET,即ET如何取决于溶液组成,SAM组成,温度,固定化方法和电子隧穿路径的性质。从这些研究中我们了解到:(1)当与带负电的表面结合时,细胞色素c的形式势和表面电荷被修饰; (2)当细胞色素c分子静电结合到带负电的表面上时,其几何形状分布很广,这导致ET速率常数分布很广; (3)当蛋白质在电极的14 A范围内时,ET速率是通过局部摩擦运动而不是通过电子隧穿来控制的; (4)非结合位点,SAM上的稀释剂分子可以提供从电极表面到细胞色素c血红素的替代电子隧穿路径,并且在合适的条件下,稀释剂分子在电子隧穿路径中占主导地位;聚(苯乙炔基) (PPE)基共轭聚电解质是一类具有刚性主链的聚离子。我们提出了一种荧光相关光谱法(FCS),研究了由两种具有不同电荷密度的PPE-SO3-聚合物与临界胶束浓度以下的十八烷基三甲基溴化铵(OTAB)形成的配合物的流体力学性质。 COTAB /共聚单体的浓度比为0.2至1800。作为OTAB浓度的函数,配合物的流体力学半径具有三种形式。在低浓度条件下,配合物的大小与去离子水中的聚合物相当。在中等浓度条件下,复合物具有最大的尺寸和基本的异质性。在高浓度方案中,复合物的尺寸约为低浓度方案中的三倍。结果显着扩展了对聚电解质和离子表面活性剂之间相互作用的理解,并表明聚合物主链的刚性和COTAB /共聚单体的浓度比可决定聚电解质/表面活性剂复合物的组成。

著录项

  • 作者

    Yue, Hongjun.;

  • 作者单位

    University of Pittsburgh.;

  • 授予单位 University of Pittsburgh.;
  • 学科 Chemistry Physical.;Chemistry Polymer.;Biophysics General.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 235 p.
  • 总页数 235
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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