Thomas G J, Agard D A
Biophys J. 1984 Dec;46(6):763-8. doi: 10.1016/S0006-3495(84)84074-6.
A constrained, iterative Fourier deconvolution method is employed to enhance the resolution of Raman spectra of biological molecules for quantitative assessment of macromolecular secondary structures and hydrogen isotope exchange kinetics. In an application to the Pf1 filamentous bacterial virus, it is shown that the Raman amide I band contains no component other than that due to alpha-helix, indicating the virtual 100% helicity of coat proteins in the native virion. Comparative analysis of the amide I band of six filamentous phages (fd, If1, IKe, Pf1, Xf, and Pf3), all at the same experimental conditions, indicates that the subunit helix-percentage ranges from a high of 100% in Pf1 to a low of 71% in Xf. Deconvolution of amide I of Pf3 at elevated temperatures, for which an alpha-to-beta transition was previously reported (Thomas, G. J., Jr., and L. A. Day, 1981, Proc. Natl. Acad. Sci. USA., 78:2962-2966), allows quantitative evaluation of the contributions of both alpha-helix and beta-strand conformations to the structure of the thermally perturbed viral coat protein. Weak Raman lines of viral DNA bases and coat protein side chains, which are poorly resolved instrumentally, are also distinguished for all viruses by the deconvolution procedure. Application to the carbon-8 hydrogen isotope exchange reaction of a purine constituent of transfer RNA permits accurate determination of the exchange rate constant, which is in agreement with calculations based upon curve-fitting methods.
采用一种受限的迭代傅里叶反卷积方法来提高生物分子拉曼光谱的分辨率,以定量评估大分子二级结构和氢同位素交换动力学。在应用于Pf1丝状细菌病毒时,结果表明拉曼酰胺I带除了α-螺旋成分外不包含其他成分,这表明天然病毒粒子中衣壳蛋白的螺旋度几乎为100%。在相同实验条件下对六种丝状噬菌体(fd、If1、IKe、Pf1、Xf和Pf3)的酰胺I带进行比较分析,结果表明亚基螺旋百分比范围从Pf1中的100%高值到Xf中的71%低值。对Pf3在高温下的酰胺I进行反卷积,此前曾报道其发生α向β的转变(Thomas, G. J., Jr., and L. A. Day, 1981, Proc. Natl. Acad. Sci. USA., 78:2962 - 2966),这使得能够定量评估α-螺旋和β-链构象对热扰动病毒衣壳蛋白结构的贡献。通过反卷积程序,所有病毒中仪器分辨较差的病毒DNA碱基和衣壳蛋白侧链的弱拉曼谱线也得以区分。将其应用于转移RNA嘌呤成分的碳-8氢同位素交换反应,可准确测定交换速率常数,该常数与基于曲线拟合方法的计算结果一致。