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Titlebook: Biological Electron Transfer Chains: Genetics, Composition and Mode of Operation; G. W. Canters,E. Vijgenboom Book 1998 Springer Science+B

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期刊全稱Biological Electron Transfer Chains: Genetics, Composition and Mode of Operation
影響因子2023G. W. Canters,E. Vijgenboom
視頻videohttp://file.papertrans.cn/188/187356/187356.mp4
學(xué)科分類Nato Science Series C:
圖書封面Titlebook: Biological Electron Transfer Chains: Genetics, Composition and Mode of Operation;  G. W. Canters,E. Vijgenboom Book 1998 Springer Science+B
影響因子From May 3-7,1997, the NATO Advanced Research Workshop on ‘Biological Electron Transfer Chains‘ was organized in Tomar, Portugal. In the application for support the choice of the topic was justified as follows: "[Until recently efforts] have concentrated on the study of the structure and function of individual redox enzymes and proteins. Enough information is now available to make a start with the study of biological electron transfer (E1) at the next higher level of organization, that of the complete ET chain." The interest in the workshop was high: the majority of participants had registered before the workshop was formally announced, which illustrates the popularity of the topic within the biochemical and biophysical communities. The present volume contains a number of reports based on the lectures presented by the key speakers during the meeting. The workshop dealt with the following three themes: a) Electron transfer, which is the subject of Chapter 1. The analysis of ET at the molecular level is still fundamental for an understanding of how ET chains operate in vivo. After 40 years of research the contours of the subject are becoming clear now. b) Bacterial redox chains. This
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https://doi.org/10.1007/978-3-662-56826-2 as participant in the conversion of an amine by an oxidase since protein-lysine 6-oxidase (EC 1.4.3.13), oxidizing the lysyl residues in collagen so that cross-links can be formed, has the related LTQ (Fig. 1) as cofactor [2].
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Protein-Mediated Electron Transfer: Pathways, Orbital Interactions, and Contact Mapsion relations for bridge mediated electron transfer reactions [15,16]. Contributions in this area from other groups have been considerable as well, and were reviewed recently [2]. Using these tools, a comprehensive view of how primary, secondary, and tertiary structure (as well as protein dynamics) influence ET processes is beginning to emerge.
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