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利用偶极离子提高室温探头和冷却探头中的核磁共振灵敏度。

Improving NMR sensitivity in room temperature and cooled probes with dipolar ions.

作者信息

Lane Andrew N, Arumugam Sengodagounder

机构信息

JG Brown Cancer Center, University of Louisville, 529 S. Jackson St., Louisville, KY 40202, USA.

出版信息

J Magn Reson. 2005 Apr;173(2):339-43. doi: 10.1016/j.jmr.2005.01.005.

Abstract

The response of inverse triple resonance cold and conventional probes to ionic strength has been compared under a variety of conditions relevant to protein NMR. Increasing the salt concentration degrades probe performance in terms of sensitivity, and the effect is more severe for cold probes and with increasing magnetic field strength. This is especially noticeable for experiments that involve a spin lock or decoupling, where sensitivity losses compared with pure water can be more than 2-fold. We have investigated the use of glycine as a substitute for salt as a supporting solute for proteins, and we show that it has a minimal effect on probe tuning or performance. Readily available d5-Gly is a useful co-solute for protein NMR, especially at high magnetic field strengths and on cold probes, as it maintains solubility while not degrading probe performance.

摘要

在与蛋白质核磁共振相关的各种条件下,对反向三重共振冷探头和传统探头对离子强度的响应进行了比较。增加盐浓度会降低探头在灵敏度方面的性能,并且对于冷探头以及随着磁场强度增加,这种影响更为严重。这在涉及自旋锁定或去耦的实验中尤为明显,与纯水相比,灵敏度损失可能超过两倍。我们研究了使用甘氨酸作为盐的替代品作为蛋白质的支持溶质,并且我们表明它对探头调谐或性能的影响最小。现成的d5-甘氨酸是蛋白质核磁共振中一种有用的共溶质,特别是在高磁场强度下和冷探头上,因为它能保持溶解性而不会降低探头性能。

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