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金属蛋白磁化强度的超导量子干涉装置测量。应用于固氮酶蛋白的新方法。

SQUID measurement of metalloprotein magnetization. New methods applied to the nitrogenase proteins.

作者信息

Day E P, Kent T A, Lindahl P A, Münck E, Orme-Johnson W H, Roder H, Roy A

机构信息

Gray Freshwater Biological Institute, University of Minnesota, Navarre 55392.

出版信息

Biophys J. 1987 Nov;52(5):837-53. doi: 10.1016/S0006-3495(87)83277-0.

Abstract

New techniques have been developed to exploit the sensitivity of a commercial SQUID susceptometer in the study of the magnetization of metalloproteins. Previous studies have ignored both the slow relaxation (hours) of spin I = 1/2 nuclei and residual ferromagnetic impurities in sample holders. These potential sources of noise were at or below the sensitivity of previous instruments. With these noise sources under control, one can now decrease the protein concentration by a factor of ten. In addition careful characterization of the frozen magnetization sample, including the use of a multi-instrument holder for combined study of the magnetization sample with Mössbauer spectroscopy, is required for reliable interpretation of the data in the face of paramagnetic impurities common to metalloprotein samples. Many previous magnetic studies of metalloproteins have been carried out in the Curie region. Saturation magnetization studies down to 1.8 K and up to 5 T can determine zero-field splitting parameters in addition to the spin and exchange coupling parameters measured in previous studies at lower fields and higher temperatures. Applications of these techniques to the study of the nitrogenase proteins of Azotobacter vinelandii are presented as examples.

摘要

已经开发出新技术,以利用商业超导量子干涉仪(SQUID)磁化率仪的灵敏度来研究金属蛋白的磁化。以往的研究忽略了自旋I = 1/2原子核的缓慢弛豫(数小时)以及样品架中的残留铁磁杂质。这些潜在的噪声源处于或低于先前仪器的灵敏度。在控制住这些噪声源的情况下,现在可以将蛋白质浓度降低到原来的十分之一。此外,面对金属蛋白样品中常见的顺磁性杂质,为了可靠地解释数据,需要对冷冻磁化样品进行仔细表征,包括使用多仪器样品架将磁化样品与穆斯堡尔光谱进行联合研究。以前对金属蛋白的许多磁性研究都是在居里温度区域进行的。低至1.8 K和高达5 T的饱和磁化研究,除了能确定先前在较低磁场和较高温度下研究中测得的自旋和交换耦合参数外,还能确定零场分裂参数。作为示例,介绍了这些技术在研究棕色固氮菌固氮酶蛋白中的应用。

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