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蛋白质的双电子-电子共振距离测量。

DEER distance measurements on proteins.

作者信息

Jeschke Gunnar

机构信息

Laboratory of Physical Chemistry, Eidgenössische Technische Hochschule Zürich, Switzerland.

出版信息

Annu Rev Phys Chem. 2012;63:419-46. doi: 10.1146/annurev-physchem-032511-143716. Epub 2012 Jan 30.

Abstract

Distance distributions between paramagnetic centers in the range of 1.8 to 6 nm in membrane proteins and up to 10 nm in deuterated soluble proteins can be measured by the DEER technique. The number of paramagnetic centers and their relative orientation can be characterized. DEER does not require crystallization and is not limited with respect to the size of the protein or protein complex. Diamagnetic proteins are accessible by site-directed spin labeling. To characterize structure or structural changes, experimental protocols were optimized and techniques for artifact suppression were introduced. Data analysis programs were developed, and it was realized that interpretation of the distance distributions must take into account the conformational distribution of spin labels. First methods have appeared for deriving structural models from a small number of distance constraints. The present scope and limitations of the technique are illustrated.

摘要

膜蛋白中顺磁中心之间1.8至6纳米范围内以及氘代可溶性蛋白中高达10纳米范围内的距离分布可通过双电子-电子共振(DEER)技术测量。顺磁中心的数量及其相对取向可以得到表征。DEER不需要结晶,并且在蛋白质或蛋白质复合物的大小方面没有限制。通过定点自旋标记可对抗磁性蛋白进行研究。为了表征结构或结构变化,优化了实验方案并引入了抑制假象的技术。开发了数据分析程序,并且认识到距离分布的解释必须考虑自旋标记的构象分布。已经出现了从少量距离约束推导结构模型的首批方法。阐述了该技术目前的适用范围和局限性。

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