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首页> 外文期刊>Photosynthesis Research >Structure of the cytochrome b 6 f complex: new prosthetic groups, Q-space, and the ‘hors d’oeuvres hypothesis’ for assembly of the complex
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Structure of the cytochrome b 6 f complex: new prosthetic groups, Q-space, and the ‘hors d’oeuvres hypothesis’ for assembly of the complex

机译:细胞色素b 6 f复合物的结构:新的修复基团,Q-空间和用于组装该复合物的“方法”假设

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摘要

3-Å crystal structures of the cytochrome b 6 f complex have provided a structural framework for the photosynthetic electron transport chain. The structures of the 220,000 molecular weight dimeric cytochrome b 6 f complex from the thermophilic cyanobacterium, Mastigocladis laminosus (Kurisu et al. 2003, Science 302: 1009–1014), and the green alga, Chlamydomonas reinhardtii (Stroebel et al. 2003, Nature 426: 413–418), are very similar. The latter is the first structure of a integral membrane photosynthetic electron transport complex from a eukaryotic source. The M. laminosus and C. reinhardtii structures have provided structural information and experimental insights to the properties and functions of three native and novel prosthetic groups, a chlorophyll a, a β-carotene, and a unique heme x, one copy of which is found in each monomer of the cytochrome b 6 f complex, but not the cytochrome bc 1 complex from the mitochondrial respiratory chain of animals and yeast. Several functional insights have emerged from the structures including the function of the dimer; the properties of heme x; the function of the inter-monomer quinone-exchange cavity; a quinone diffusion pathway through relatively narrow crevices or portals; a modified reaction scheme for n-side quinone redox reactions; a necessarily novel mechanism for quenching of the bound chlorophyll triplet state; a possible role for the bound chlorophyll a in activation of the LHC kinase; and a structural and assembly role for the four small PetG, L, M, and N subunits. An ‘hors d’oeuvres hypothesis’ for assembly of the complex is proposed for the small ‘hydrophobic stick’ or ‘picket fence’ polypeptides at the periphery of the complex, based on the cis-positive orientation of the small hydrophobic subunits and the ‘toothpick’ binding mode of the β-carotene.
机译:细胞色素b 6 f配合物的3-Å晶体结构为光合作用的电子传输链提供了结构框架。嗜热蓝细菌Mastigocladis laminosus(Kurisu等人2003,Science 302:1009-1014)和绿藻Chlamydomonas reinhardtii(Stroebel等人)的220,000分子量二聚体细胞色素b 6 f复合物的结构(2003,Nature 426:413-418),非常相似。后者是来自真核生物源的完整膜光合作用电子传输复合物的第一个结构。 M. laminosus和C. reinhardtii结构为三个天然和新型假体组,叶绿素a,β-胡萝卜素和独特的血红素x的结构和功能提供了结构信息和实验见识,其中一个被发现在动物和酵母线粒体呼吸链中,细胞色素b 6 f复合体的每个单体中都没有,而细胞色素bc 1 复合体中没有。从结构中出现了一些功能见解,包括二聚体的功能。血红素x的性质;单体间醌交换腔的功能;醌通过相对狭窄的缝隙或入口的扩散途径; n侧醌氧化还原反应的改进反应方案;淬灭结合的叶绿素三重态的必要新机制;结合的叶绿素a在LHC激酶激活中的可能作用;以及四个PetG,L,M和N小亚基的结构和组装作用。根据小疏水亚基的顺式阳性取向和“小分子”的“正态假设”,提出了在复合物外围的小“疏水棒”或“栅栏”多肽的组装方法。 β-胡萝卜素的“牙签”结合模式。

著录项

  • 来源
    《Photosynthesis Research》 |2005年第1期|133-143|共11页
  • 作者单位

    Department of Biological Sciences Lilly Hall of Life Sciences Purdue University;

    Department of Biological Sciences Lilly Hall of Life Sciences Purdue University;

    Department of Biological Sciences Lilly Hall of Life Sciences Purdue University;

    Department of Biological Sciences Lilly Hall of Life Sciences Purdue UniversityDepartment of Life Sciences Graduate School of Arts and Sciences University of Tokyo;

    Department of Biological Sciences Lilly Hall of Life Sciences Purdue University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    β-carotene; chlorophyll a; cytochrome bn 6n f complex; heme x; quinone-exchange cavity;

    机译:β-胡萝卜素;叶绿素a;细胞色素bn 6n f配合物;血红素x;醌交换腔;

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