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Protein Crystallization for X-ray Crystallography
Published on: January 16, 2011
通过电子辐射对蛋白质晶体的压力诱导的再结晶
F Zemlin1, R Schuster, E Beckmann
1Fritz-Haber-Institut der Max-Planck-Gesellschaft, Berlin, Germany.
Nature
|May 20, 1999
概括
受到辐射损坏的蛋白质晶体可以重新排列和再结晶. 这种结构变化是由缺陷造成的压力驱动的,而不是热量,在低温下,为材料自组装提供了一个新的途径.
科学领域:
- 材料科学 材料科学 材料科学
- 晶体学 晶体学是指结晶学.
- 生物物理学的生物物理.
背景情况:
- 热力学系统通常通过热激活的质量传输来达到稳定.
- 低温和高激活障碍可以防止平衡,如在玻璃和颗粒材料中所见.
- 增加的驱动力可以克服激活障碍,启动结构变化.
研究的目的:
- 为了研究辐射损坏的蛋白质晶体的重新排序.
- 探索由压力而不是热激活启动的质量运输.
- 了解晶体结构中缺陷诱导的重新排序机制.
主要方法:
- 使用传输电子显微镜观察蛋白质晶体.
- 诱导辐射损伤在晶格内部产生缺陷.
- 在低温下在压力下分析晶体重新排序.
主要成果:
- 观察到辐射损坏的蛋白质晶体在缺陷积累后重新结晶.
- 重组是由辐射引起的缺陷产生的压力引起的.
- 结构变化发生在温度太低,无法显著的扩散性质量传输.
结论:
- 缺陷引起的压力可以推动晶体材料的重新排序.
- 这种压力介导的重排序在低温下独立于热激活发生.
- 缺陷诱导的重新排序现象可能在各种系统中广泛适用.
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