Departments of Pathology and Ophthalmology and Jules Stein Eye Institute, University California at Los Angeles , California 90095, United States.
J Phys Chem B. 2014 Jan 30;118(4):986-95. doi: 10.1021/jp4120145. Epub 2014 Jan 17.
Trp is the most spectroscopically informative aromatic amino acid of proteins. However, the near-UV circular dichroism (CD) spectrum of Trp is complicated because the intensity and sign of (1)La and (1)Lb bands vary independently. To resolve vibronic structure and gain site-specific information from complex spectra, deconvolution was combined with cooling and site-directed tryptophan substitution. Low temperature near-UV CD was used to probe the local tertiary structure of a loop and α-helix in tear lipocalin. Upon cooling, the enhancement of the intensities of the near-UV CD was not uniform, but depends on the position of Trp in the protein structure. The most enhanced (1)Lb band was observed for Trp at position 124 in the α-helix segment matching the known increased conformational mobility during ligand binding. Some aspects of the CD spectra of W28 and W130 were successfully linked to specific rotamers of Trp previously obtained from fluorescence lifetime measurements. The discussion was based on a framework that the magnitude of the energy differences in local conformations governs the changes in the CD intensities at low temperature. The Trp CD spectral classification of Strickland was modified to facilitate the recognition of pseudo peaks. Near-UV CD spectra harbor abundant information about the conformation of proteins that site directed Trp CD can report.
色氨酸是蛋白质中最具光谱信息量的芳香族氨基酸。然而,色氨酸的近紫外圆二色性(CD)光谱很复杂,因为(1)La 和(1)Lb 带的强度和符号独立变化。为了解析振子结构并从复杂的光谱中获得特定位置的信息,我们结合解卷积、冷却和定点色氨酸取代来进行研究。低温近紫外 CD 用于探测泪脂蛋白中环和α-螺旋中loop 的局部三级结构。冷却时,近紫外 CD 强度的增强并不均匀,而是取决于色氨酸在蛋白质结构中的位置。在α-螺旋段中,位置为 124 的色氨酸的(1)Lb 带增强最明显,这与已知的配体结合过程中构象灵活性增加相匹配。W28 和 W130 的部分 CD 谱可以成功地与以前通过荧光寿命测量获得的色氨酸的特定构象联系起来。讨论基于这样一种框架,即局部构象中能量差异的大小决定了低温下 CD 强度的变化。Strickland 的色氨酸 CD 光谱分类得到了修改,以方便识别拟峰。近紫外 CD 光谱包含了大量关于蛋白质构象的信息,而定点色氨酸 CD 可以报告这些信息。