Compton L A, Johnson W C
Anal Biochem. 1986 May 15;155(1):155-67. doi: 10.1016/0003-2697(86)90241-1.
Inverse circular dichroism (CD) spectra are presented for each of the five major secondary structures of proteins: alpha-helix, antiparallel and parallel beta-sheet, beta-turn, and other (random) structures. The fraction of the each secondary structure in a protein is predicted by forming the dot product of the corresponding inverse CD spectrum, expressed as a vector, with the CD spectrum of the protein digitized in the same way. We show how this method is based on the construction of the generalized inverse from the singular value decomposition of a set of CD spectra corresponding to proteins whose secondary structures are known from X-ray crystallography. These inverse spectra compute secondary structure directly from protein CD spectra without resorting to least-squares fitting and standard matrix inversion techniques. In addition, spectra corresponding to the individual secondary structures, analogous to the CD spectra of synthetic polypeptides, are generated from the five most significant CD eigenvectors.
本文给出了蛋白质五种主要二级结构(α螺旋、反平行和平行β折叠、β转角以及其他(无规)结构)的反圆二色性(CD)光谱。通过将相应的反CD光谱(表示为向量)与以相同方式数字化的蛋白质CD光谱进行点积运算,预测蛋白质中每种二级结构的比例。我们展示了该方法是如何基于从一组已知X射线晶体学二级结构的蛋白质的CD光谱的奇异值分解构建广义逆矩阵的。这些反光谱可直接从蛋白质CD光谱计算二级结构,无需借助最小二乘法拟合和标准矩阵求逆技术。此外,类似于合成多肽的CD光谱,从五个最显著的CD特征向量生成了对应于各个二级结构的光谱。