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对5-氟色氨酸和四氘代-5-氟色氨酸标记的大肠杆菌葡萄糖/半乳糖受体的19F核磁共振弛豫研究。

19F NMR relaxation studies on 5-fluorotryptophan- and tetradeutero-5-fluorotryptophan-labeled E. coli glucose/galactose receptor.

作者信息

Luck L A, Vance J E, O'Connell T M, London R E

机构信息

Laboratory of Molecular Biophysics, National Institute of Environmental Health Sciences, National Institutes of Health, Research Triangle Park, NC 27709, USA.

出版信息

J Biomol NMR. 1996 Jun;7(4):261-72. doi: 10.1007/BF00200428.

Abstract

19F NMR relaxation studies have been carried out on a fluorotryptophan-labeled E. coli periplasmic glucose/galactose receptor (GGR). The protein was derived from E. coli grown on a medium containing a 50:50 mixture of 5-fluorotryptophan and [2,4,6,7-2H4]-5-fluorotryptophan. As a result of the large gamma-isotope shift, the two labels give rise to separate resonances, allowing relaxation contributions of the substituted indole protons to be selectively monitored. Spin-lattice relaxation rates were determined at field strengths of 11.75 T and 8.5 T, and the results were analyzed using a model-free formalism. In order to evaluate the contributions of chemical shift anisotropy to the observed relaxation parameters, solid-state NMR studies were performed on [2,4,6,7-2H4]-5-fluorotryptophan. Analysis of the observed 19F powder pattern lineshape resulted in anisotropy and asymmetry parameters of delta sigma = -93.5 ppm and eta = 0.24. Theoretical analyses of the relaxation parameters are consistent with internal motion of the fluorotryptophan residues characterized by order parameters S2 of approximately 1, and by correlation times for internal motion approximately 10(-11)s. Simultaneous least squares fitting of the spin-lattice relaxation and line-width data with tau i set at 10 ps yielded a molecular correlation time of 20 ns for the glucose-complexed GGR, and a mean order parameter S2 = 0.89 for fluorotryptophan residues 183, 127, 133, and 195. By contrast, the calculated order parameter for FTrp284, located on the surface of the protein, was 0.77. Significant differences among the spin-lattice relaxation rates of the five fluorotryptophan residues of glucose-complexed GGR were also observed, with the order of relaxation rates given by: R1F183 > R1F127 approximately R1F133 approximately R1F195 > R1F284. Although such differences may reflect motional variations among these residues, the effects are largely predicted by differences in the distribution of nearby hydrogen nuclei, derived from crystal structure data. In the absence of glucose, spin-lattice relaxation rates for fluorotryptophan residues 183, 127, 133, and 195 were found to decrease by a mean of 13%, while the value for residue 284 exhibits an increase of similar magnitude relative to the liganded molecule. These changes are interpreted in terms of a slower overall correlation time for molecular motion, as well as a change in the internal mobility of FTrp284, located in the hinge region of the receptor.

摘要

对一种用氟色氨酸标记的大肠杆菌周质葡萄糖/半乳糖受体(GGR)进行了19F核磁共振弛豫研究。该蛋白质源自生长在含有5-氟色氨酸和[2,4,6,7-2H4]-5-氟色氨酸50:50混合物的培养基上的大肠杆菌。由于大的γ-同位素位移,这两种标记产生了分开的共振,使得取代吲哚质子的弛豫贡献能够被选择性地监测。在11.75 T和8.5 T的场强下测定了自旋晶格弛豫率,并使用无模型形式对结果进行了分析。为了评估化学位移各向异性对观测到的弛豫参数的贡献,对[2,4,6,7-2H4]-5-氟色氨酸进行了固态核磁共振研究。对观测到的19F粉末图案线形的分析得出各向异性和不对称参数,δσ = -93.5 ppm,η = 0.24。弛豫参数的理论分析与氟色氨酸残基的内部运动一致,其特征是序参数S2约为1,内部运动的相关时间约为10(-11)s。将自旋晶格弛豫和线宽数据同时进行最小二乘拟合,将τi设置为10 ps,得出葡萄糖复合GGR的分子相关时间为20 ns,氟色氨酸残基183、127、133和195的平均序参数S2 = 0.89。相比之下位于蛋白质表面的FTrp284的计算序参数为0.77。还观察到葡萄糖复合GGR的五个氟色氨酸残基的自旋晶格弛豫率之间存在显著差异,弛豫率顺序为:R1F183 > R1F127 ≈ R1F133 ≈ R1F195 > R1F284。尽管这些差异可能反映了这些残基之间的运动变化,但这些效应在很大程度上是由晶体结构数据得出的附近氢核分布差异所预测的。在没有葡萄糖的情况下,发现氟色氨酸残基183、127、133和195的自旋晶格弛豫率平均降低了13%,而残基284的值相对于结合配体的分子呈现出类似幅度的增加。这些变化被解释为分子运动的整体相关时间变慢,以及位于受体铰链区的FTrp284的内部流动性发生了变化。

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