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Development of New Molecular Catalysts for Dioxygen Activation and Biomimetic Fuel Cell

Development of New Molecular Catalysts for Dioxygen Activation and Biomimetic Fuel Cell
用于分子氧活化和仿生燃料电池的新型分子催化剂的开发
批准号:
14204073
负责人:
NARUTA Yoshinri
金额:
$27.04万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (A)
财政年份:
2002
资助国家:
日本
项目状态:
已结题
起止时间:
2002 至 2004

项目摘要

项目成果

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中文摘要
翻译
Cytochrome c oxidase(CcO)is known to be a family of enzymes,which metabolite dioxygen to water by an efficient four-electron reduction pathway with concomitant translocation of proton through membranes in mitochondria。The enzyme contains heme(Hemea_3),(His)_3Cu(Cu_B),and His-cross linked Tyr at the active site.The exact functions,however,of these components as well as its dioxygen reduction mechanism。The enzyme is also interested on the similarity of its reaction with one at the O2 electrode of a fuel cell.Thus,theWe first examined the preparation of heme-Cu complexes and tried to clarify their reactivity with O_2as well as the structure of the resultant peroxy complexes.Tris(Pyridylmethyl)amine-tethered iron porphyrin was reacted with O2 to give the corresponding peroxo complex in a quite high stability.We obtained its single crystals and its X-ray crystallographic analysis showed the peroxo complex takingµ-η^2:η^1 structure.This was the first example of the structura…More l determination of hetero-dimetallic peroxo complexes。Howerver,the peroxo complexes were stable and only showed gradual decomposition to the correspondingµ-oxo one.In order to simulate the dioxygen reaction at the enzyme,the remaining residues,Tyr-His and His as an axial ligand to heme a_3,are considered to be important。We have prepared an elaborate model,which bears all components at the CcO active site。This model exhibited an interesting reaction:First,it gave the corresponding peroxo complex[Fe^<III>-O_2-Cu^<II>],possiblyµ-1,2form,at a low temperature.It was gradually converted to the superoxy one[Fe^<III>-O_2·/Cu^I],where the Cu ion was Cu^I.Since peroxy-to-superoxy transformation has never been reported so far,this is a new reaction.This reaction partly simulates the early stage one of O_2reaction in the enzyme.Thus,the Tyr group in the Tyr-His crosslink could play an important role for stabilization of the superoxy complex in the enzyme as a H+donor。The success of the O2 complex at the accurate active site model opens the new way to clarify its further reaction。Less:Less
英文摘要
Cytochrome c oxidase (CcO) is known to be a family of enzymes, which metabolite dioxygen to water by an efficient four-electron reduction pathway with concomitant translocation of proton through membranes in mitochondria. The enzyme contains heme(hemea_3), (his)_3Cu(Cu_B), and His-cross linked Tyr at the active site. The exact functions, however, of these components as well as its dioxygen reduction mechanism. The enzyme is also interested on the similarity of its reaction with one at the O2 electrode of a fuel cell. Thus, theWe first examined the preparation of heme-Cu complexes and tried to clarify their reactivity with O_2 as well as the structure of the resultant peroxy complexes. Tris(pyridylmethyl)amine-tethered iron porphyrin was reacted with O2 to give the corresponding peroxo complex in a quite high stability. We obtained its single crystals and its X-ray crystallographic analysis showed the peroxo complex taking μ-η^2:η^1 structure. This was the first example of the structura … More l determination of hetero-dimetallic peroxo complexes. Howerver, the peroxo complexes were stable and only showed gradual decomposition to the corresponding μ-oxo one.In order to simulate the dioxygen reaction at the enzyme, the remaining residues, Tyr-His and His as an axial ligand to heme a_3, are considered to be important. We have prepared an elaborate model, which bears all components at the CcO active site. This model exhibited an interesting reaction : First, it gave the corresponding peroxo complex [Fe^<III>-O_2-Cu^<II>], possibly μ-1,2 form, at a low temperature. It was gradually converted to the superoxy one [Fe^<III>-O_2・/Cu^I], where the Cu ion was Cu^I. Since peroxy-to-superoxy transformation has never been reported so far, this is a new reaction. This reaction partly simulates the early stage one of O_2 reaction in the enzyme. Thus, the Tyr group in the Tyr-His crosslink could play an important role for stabilization of the superoxy complex in the enzyme as a H+ donor. The success of the O2 complex at the accurate active site model opens the new way to clarify its further reaction. Less
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会议论文
光合成と呼吸:水と酸素の相互変換に関与する金属酵素とその化学モデル
光合作用和呼吸:参与水和氧相互转化的金属酶及其化学模型
DOI: --
发表时间: 2004
期刊: 触媒 46・4
影响因子: --
作者: [T.Chishiro, Y.Naruta et al., 成田吉徳]
通讯作者: 成田吉徳
化学 元素が彩る暮らしと未来
化学 元素着色的生活和未来
DOI: --
发表时间: 2006
期刊:
影响因子: --
作者: [H. Hasegawa, H. Kitano, S. Akasaka, T. I noue, F. Chen, M. Takenaka, H. Yoshida, M. Azuma, 成田 吉徳]
通讯作者: 成田 吉徳
B.-H.Ye: "A Novel Synthesis of Water-soluble Porphyrins by a Regio-specific Sulfonization"Tetrahedron. 59(20). 3593-3601 (2003)
B.-H.Ye:“通过区域特异性磺化新型合成水溶性卟啉”四面体。
DOI: --
发表时间:
期刊:
影响因子: --
作者: []
通讯作者:
Characterization of Phenoxyl Radical in Model Complexes for the Cu_B site of Cytochrome c Oxidase : Steady-State and Transient Absorption, UV resonance Raman, EPR, and DFT Studies for [M^IIBIAIPBr]Br
细胞色素 c 氧化酶 Cu_B 位点模型复合物中苯氧基自由基的表征:[M^IIBIAIPBr]Br 的稳态和瞬时吸收、UV 共振拉曼、EPR 和 DFT 研究
DOI: --
发表时间: 2006
期刊: J.Am.Chem.Soc. 126(印刷中)
影响因子: --
作者: [Hirai, Y., Y.Nagano et al.]
通讯作者: Y.Nagano et al.
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