Provencher S W, Glöckner J
Biochemistry. 1981 Jan 6;20(1):33-7. doi: 10.1021/bi00504a006.
A new method is developed in which a circular dichroism (CD) spectrum is analyzed directly as a linear combination of the CD spectra (from 190 to 240 nm) of 16 proteins whose secondary structures are known from X-ray crystallography. This avoids the dilemma encountered in previous methods of trying to define single reference CD spectra that were supposed to characterize such broad and variable classes as helix, beta sheet, beta turn, and "remainder". It also permits a more accurate and flexible analysis. The usual instability in using so many parameters is automatically controlled by a simple constrained statistical regularization procedure (similar to ridge regression). Sixteen tests were made by removing 1 spectrum at a time from the set of 16 and analyzing it in terms of the other 15. The product moment correlation coefficients between the computed fractions of helix, beta sheet, beta turn, and remainder and the fractions from the X-ray data were 0.96, 0.94, 0.31,, and 0.49, respectively. Thus, the helix and beta-sheet accuracy is very good. (The corresponding values calculated by a previous method with four reference spectra were 0.85, 0.25, --0.31, and 0.46.).
开发了一种新方法,其中将圆二色性(CD)光谱直接分析为16种蛋白质的CD光谱(从190至240nm)的线性组合,这些蛋白质的二级结构可通过X射线晶体学得知。这避免了在先前方法中遇到的困境,即试图定义单一参考CD光谱来表征诸如螺旋、β折叠、β转角和“其余部分”等宽泛且多变的类别。它还允许进行更准确和灵活的分析。使用如此多参数时通常存在的不稳定性通过简单的约束统计正则化程序(类似于岭回归)自动得到控制。通过每次从16个光谱中去除1个光谱,并根据其他15个光谱对其进行分析,进行了16次测试。计算得到的螺旋、β折叠、β转角和其余部分的比例与X射线数据得到的比例之间的积矩相关系数分别为0.96、0.94、0.31和0.49。因此,螺旋和β折叠的准确性非常好。(通过先前具有四个参考光谱的方法计算得到的相应值分别为0.85、0.25、-0.31和0.46。)