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[资源] 《Science》(化学、材料)连载----(25 July 2008)

BIOCHEMISTRY: A Natural Choice for Activating Hydrogen
Fraser A. Armstrong and Juan C. Fontecilla-Camps
Science 25 July 2008: 498-499.
The structure of a novel hydrogenase enzyme provides insights into how molecular hydrogen can be activated for use in biological processes.

BIOCHEMISTRY: Cargo Load Reduction
Ineke Braakman and Mieko Otsu
Science 25 July 2008: 499-500.
A specific enzyme that reduces protein disulfide bonds is part of a complex that eliminates aggregated, misfolded proteins.

MATERIALS SCIENCE: Bulk Metallic Glasses
Cormac J. Byrne and Morten Eldrup
Science 25 July 2008: 502-503.
Improved testing and a better understanding of the properties of bulk metallic glasses will lead to new avenues for commercial use.

Studying Atomic Structures by Aberration-Corrected Transmission Electron Microscopy
Knut W. Urban
Science 25 July 2008: 506-510.

Phase Transitions of Dirac Electrons in Bismuth
Lu Li, J. G. Checkelsky, Y. S. Hor, C. Uher, A. F. Hebard, R. J. Cava, and N. P. Ong
Science 25 July 2008: 547-550.
Bismuth exhibits sharp phase transitions in its magnetization when subjected to high magnetic fields at low temperature.

Enhancement of Thermoelectric Efficiency in PbTe by Distortion of the Electronic Density of States
Joseph P. Heremans, Vladimir Jovovic, Eric S. Toberer, Ali Saramat, Ken Kurosaki, Anek Charoenphakdee, Shinsuke Yamanaka, and G. Jeffrey Snyder
Science 25 July 2008: 554-557.
Introduction of thallium into lead telluride improves its ability to generate electricity when heated by up to 50 percent.

ERdj5 Is Required as a Disulfide Reductase for Degradation of Misfolded Proteins in the ER
Ryo Ushioda, Jun Hoseki, Kazutaka Araki, Gregor Jansen, David Y. Thomas, and Kazuhiro Nagata
Science 25 July 2008: 569-572.
A disulfide reductase found in the endoplasmic reticulum cleaves the disulfide bonds of misfolded proteins so they can be transported into the cytoplasm for degradation.

The Crystal Structure of [Fe]-Hydrogenase Reveals the Geometry of the Active Site
Seigo Shima, Oliver Pilak, Sonja Vogt, Michael Schick, Marco S. Stagni, Wolfram Meyer-Klaucke, Eberhard Warkentin, Rudolf K. Thauer, and Ulrich Ermler
Science 25 July 2008: 572-575.
Three hydrogenases that evolved independently exhibit similar features in their active sites, yielding clues for designing catalysts in hydrogen fuel cells.

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daiqiguang

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6楼2008-08-01 08:58:02
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csuliuying

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★★★★★ 五星级,优秀推荐

thanks a lot for your job~~~
2楼2008-07-26 01:09:24
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zhaozuncheng

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★★★ 三星级,支持鼓励

Thanks a lot!
5楼2008-07-27 11:34:56
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