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首页> 外文期刊>The biochemical journal >Effect of magnetic field strength on the linewidth and spin-lattice relaxation time of the thiocyanate carbon of cyanylated β-lactoglobulin B: optimization of the experimental parameters for observing thiocyanate carbons in proteins
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Effect of magnetic field strength on the linewidth and spin-lattice relaxation time of the thiocyanate carbon of cyanylated β-lactoglobulin B: optimization of the experimental parameters for observing thiocyanate carbons in proteins

机译:磁场强度对氰基化β-乳球蛋白B的硫氰酸根碳的线宽和自旋晶格弛豫时间的影响:观察蛋白质中硫氰酸根碳的实验参数的优化

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摘要

pThe linewidths and spin-lattice relaxation times of the 13C-n.m.r. signal at 109.7 p.p.m. due to the thiocyanate carbon of intact [cyanato-13C]cyanylated-beta-lactoglobulin-B have been determined at magnetic field strengths of 1.88, 6.34 and 11.74 T as well as the spin-lattice relaxation times of its backbone alpha-carbon atoms. The linewidths were directly proportional to the square of the magnetic field strength and we conclude that, at magnetic field strengths of 6.34 T or above, more than 70% of the linewidth will be determined by chemical-shift anisotropy. We estimate that the spin-lattice relaxation time resulting from the chemical-shift anisotropy of the thiocyanate carbon is 1.52 +/- 0.1 s and we conclude that for magnetic field strengths of 6.34 T and above the observed spin-lattice relaxation time of the thiocyanate carbon will be essentially independent of magnetic field strength. Using the rigid-rotor model we obtain estimates of the rotational correlation time of [cyanato-13C]cyanylated-beta-lactoglobulin-B and of the chemical-shift anisotropy shielding tensor of its thiocyanate carbon. We have calculated the linewidths and spin-lattice relaxation times of thiocyanate carbons at magnetic field strengths of 1.88-14.1 T in proteins with M(r) values in the range 10,000-400,000. The effects of magnetic field strength on the resolution and signal-to-noise ratios of the signals due to thiocyanate carbons attached to proteins of M(r) greater than 10,000 are discussed./p
机译:> 13C-n.m.r。的线宽和自旋晶格弛豫时间。晚上109.7点发出信号由于完整的[cyanato-13C]氰基化β-乳球蛋白-B的硫氰酸盐碳已在磁场强度1.88、6.34和11.74T以及其主链α-碳原子的自旋晶格弛豫时间确定。线宽与磁场强度的平方成正比,我们得出的结论是,在6.34 T或更高的磁场强度下,超过70%的线宽将由化学位移各向异性决定。我们估计,由硫氰酸盐碳的化学位移各向异性引起的自旋晶格弛豫时间为1.52 +/- 0.1 s,并且我们得出结论,对于6.34 T的磁场强度及更高的观测值,硫氰酸盐的自旋晶格弛豫时间碳将基本上与磁场强度无关。使用刚性转子​​模型,我们可以获得[cyanato-13C]氰基化β-乳球蛋白B的旋转相关时间以及其硫氰酸盐碳的化学位移各向异性屏蔽张量的估计值。我们已经计算出M(r)值在10,000-400,000范围内的蛋白质中,磁场强度为1.88-14.1 T时,硫氰酸盐碳的线宽和自旋晶格弛豫时间。讨论了磁场强度对附着于M(r)大于10,000的蛋白质上的硫氰酸盐碳所致信号的分辨率和信噪比的影响。

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