大阪大学 · 生化学・遺伝学・分子生物学
Genji Kurisu教授の研究室は、膜タンパク質や金属酵素の構造生物学に焦点を当てており、特に光栄養生物における電子伝達系や金属イオンを含む酵素の構造と機能の解明を進めています。特に、光システムI・II間の電子伝達を担うcytochrome b6f複合体や、[FeFe]-ヒドロゲナーゼ、チロシナーゼ、硫酸塩還元酵素などの金属中心酵素の立体構造と反応機構を、X線結晶構造解析や低温電子線画像法を用いて解明しています。また、合成モデルと酵素の統合による半合成酵素の構築や、酵素の成熟過程における構造的変化の解明にも取り組んでいます。
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The cytochrome b6f complex provides the electronic connection between the photosystem I and photosystem II reaction centers of oxygenic photosynthesis and generates a transmembrane electrochemical proton gradient for adenosine triphosphate synthesis. A 3.0 angstrom crystal structure of the dimeric b6f complex from the thermophilic cyanobacterium Mastigocladus laminosus reveals a large quinone exchange cavity, stabilized by lipid, in which plastoquinone, a quinone-analog inhibitor, and a novel he
Plugging into the pump Photosynthetic organisms use light to fix carbon dioxide in a process that requires both chemical reducing equivalents and adenosine triphosphate (ATP). Balancing the ratio of these inputs is accomplished by a short circuit in electron flow through photosynthetic complex I, a proton pump that contributes to ATP production but does not increase net reducing equivalents in the cell. Schuller et al. solved a cryo–electron microscopy structure of photosynthetic complex I (see
[FeFe]-hydrogenases are nature's fastest catalysts for the evolution or oxidation of hydrogen. Numerous synthetic model complexes for the [2Fe] subcluster (2Fe<sub>H</sub>) of their active site are known, but so far none of these could compete with the enzymes. The complex Fe<sub>2</sub>[μ-(SCH<sub>2</sub>)<sub>2</sub>X](CN)<sub>2</sub>(CO)<sub>4</sub><sup>2-</sup> with X = NH was shown to integrate into the apo-form of [FeFe]-hydrogenases to yield a fully active enzyme. Here we report the first
Tyrosinase, a dinuclear copper monooxygenase/oxidase, plays a crucial role in the melanin pigment biosynthesis. The structure and functions of tyrosinase have so far been studied extensively, but the post-translational maturation process from the pro-form to the active form has been less explored. In this study, we provide the crystal structures of Aspergillus oryzae full-length pro-tyrosinase in the holo- and the apo-forms at 1.39 and 2.05 Å resolution, respectively, revealing that Phe(513) on
The structure of the complex of maize sulfite reductase (SiR) and ferredoxin (Fd) has been determined by X-ray crystallography. Co-crystals of the two proteins prepared under different conditions were subjected to the diffraction analysis and three possible structures of the complex were solved. Although topological relationship of SiR and Fd varied in each of the structures, two characteristics common to all structures were found in the pattern of protein-protein interactions and positional arr
A zinc endoprotease produced by Streptomyces caespitosus (ScNP) specifically hydrolyzes the peptide bond at the imino side of aromatic residues and is the smallest protease found to date. Although ScNP carries the zinc-binding sequence HEXXH, its primary structure of 132 amino acid residues differs from those of other known zinc metalloendoproteases. X-ray structural analysis of ScNP at 1.6 Å resolution revealed that despite a lack of sequence homology, the common topological feature of main-cha
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