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通过核磁共振光谱法测量蛋白质浓度。

Measuring protein concentrations by NMR spectroscopy.

作者信息

Wider Gerhard, Dreier Lars

机构信息

Contribution from the Institut für Molekularbiologie und Biophysik ETH Zürich, Switzerland.

出版信息

J Am Chem Soc. 2006 Mar 1;128(8):2571-6. doi: 10.1021/ja055336t.

Abstract

In applications of NMR to biological macromolecules in solution, the concentration of the NMR sample is an important parameter describing the sample and providing information for the selection and planning of experiments. Although concentrations can be measured directly by NMR spectroscopy, other methods are usually preferred to measure the concentration of macromolecules in NMR samples. The reasons are the difficulties in the correlation of the sample of interest with the signal intensity representing a known concentration. This correlation is usually obtained by adding to the sample a reference compound with known concentration and comparing the integral over resolved resonance lines of the molecules with known and unknown concentrations. For solutions of biological macromolecules it is very difficult to find a compound that does not interact with the macromolecules and has a resonance outside their spectral range. We introduce PULCON which is a method that correlates the absolute intensities of two spectra measured in different solution conditions. PULCON is easy to implement and apply on all NMR spectrometers; it does not need any special hardware or software. PULCON is very robust and at the same time delivers accurate concentrations of samples in the NMR tube. We demonstrate that PULCON has the potential to replace UV spectroscopy for concentration measurements of NMR samples.

摘要

在核磁共振用于溶液中生物大分子的应用中,核磁共振样品的浓度是描述样品并为实验选择和规划提供信息的一个重要参数。尽管浓度可以通过核磁共振光谱直接测量,但通常更倾向于使用其他方法来测量核磁共振样品中大分子的浓度。原因在于将感兴趣的样品与代表已知浓度的信号强度进行关联存在困难。这种关联通常是通过向样品中加入已知浓度的参考化合物,并比较已知和未知浓度分子的分辨共振线积分来实现的。对于生物大分子溶液而言,很难找到一种不与大分子相互作用且其共振位于大分子光谱范围之外的化合物。我们引入了PULCON,它是一种将在不同溶液条件下测得的两个光谱的绝对强度进行关联的方法。PULCON易于实施且可应用于所有核磁共振光谱仪;它不需要任何特殊的硬件或软件。PULCON非常稳健,同时能给出核磁共振管中样品的准确浓度。我们证明PULCON有潜力取代紫外光谱用于核磁共振样品的浓度测量。

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