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通过高场电子顺磁共振光谱揭示的伴刀豆球蛋白A单晶中Mn2+结合位点的动力学。

Dynamics in the Mn2+ binding site in single crystals of concanavalin A revealed by high-field EPR spectroscopy.

作者信息

Carmieli Raanan, Manikandan Palanichamy, Epel Boris, Kalb A Joseph, Schnegg Alexander, Savitsky Anton, Möbius Klaus, Goldfarb Daniella

机构信息

Department of Chemical Physics, The Weizmann Institute of Science, Rehovot, Israel 76100.

出版信息

Biochemistry. 2003 Jul 1;42(25):7863-70. doi: 10.1021/bi034281+.

Abstract

EPR spectroscopy at 95 GHz was used to characterize the dynamics at the Mn(2+) binding site in single crystals of the saccharide-binding protein concanavalin A. The zero-field splitting (ZFS) tensor of the Mn(2+) was determined from rotation patterns in the a-c and a-b crystallographic planes, acquired at room temperature and 4.5 K. The analysis of the rotation patterns showed that while at room temperature there is only one type of Mn(2+) site, at low temperatures two types of Mn(2+) sites, not related by any symmetry, are distinguished. The sites differ in the ZFS parameters D and E and in the orientation of the ZFS tensor with respect to the crystallographic axes. Temperature-dependent EPR measurements on a crystal oriented with its crystallographic a axis parallel to the magnetic field showed that as the temperature increases, the two well-resolved Mn(2+) sextets gradually coalesce into a single sextet at room temperature. The line shape changes are characteristic of a two-site exchange. This was confirmed by simulations which gave rates in the range of 10(7)-10(8) s(-1) for the temperature range of 200-266 K and an activation energy of 23.8 kJ/mol. This dynamic process was attributed to a conformational equilibrium within the Mn(2+) binding site which freezes into two conformations at low temperatures.

摘要

利用95吉赫兹的电子顺磁共振光谱(EPR)对糖类结合蛋白伴刀豆球蛋白A单晶中Mn(2+)结合位点的动力学进行了表征。通过在室温及4.5 K下获取的a - c和a - b晶面中的旋转模式,确定了Mn(2+)的零场分裂(ZFS)张量。对旋转模式的分析表明,室温下只有一种类型的Mn(2+)位点,而在低温下可区分出两种不具有任何对称性关系的Mn(2+)位点。这些位点在ZFS参数D和E以及ZFS张量相对于晶轴的取向上存在差异。对晶体进行的温度依赖型EPR测量,该晶体的晶轴a平行于磁场方向,结果表明随着温度升高,在室温下两个分辨良好的Mn(2+)六重峰逐渐合并为一个六重峰。谱线形状的变化是双位点交换的特征。模拟结果证实了这一点,模拟给出在200 - 266 K温度范围内交换速率在10(7) - 10(8) s(-1)之间,活化能为23.8 kJ/mol。这种动态过程归因于Mn(2+)结合位点内的构象平衡,该平衡在低温下冻结为两种构象。

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