Chang C T, Wu C S, Yang J T
Cardiovascular Research Institute, University of California, San Francisco 94143, USA.
Anal Biochem. 1978 Nov;91(1):13-31. doi: 10.1016/0003-2697(78)90812-6.
The mean residue ellipticity, [theta], at any wavelength, lambda, of a protein in aqueous solution is expressed as [theta]lambda = fH[theta]H infinity(1-k/n) + f beta[theta]beta + ft[theta]t + fR[theta]R with two constraints: 1 > or = fj > or = 0 and sigma fj = 1. The subscripts H, beta, t, and R refer to the helix, beta-form, beta-turn, and unordered form. The fractions, fj's, of 15 proteins are based on X-ray crystallography, ft refers to the net beta-turn after cancelling those residues having dihedral angles of opposite sign. The [theta]H infinity of an infinite helix and its chain-length dependence factor, k, were computed from the myoglobin data (Chen et al., 1974, Biochemistry 13, 3350). The average number of residues per helical segment, n, for 15 proteins was about 10, which can be used for proteins of unknown structure. The reference spectra of other three structural elements are computed by a least-squares method. Once the reference spectra are chosen, the same equation above can be used to estimate the fractions of the secondary structure of a protein from its CD data points between 190 and 240 nm at 1-nm intervals. The computed helical content is usually good to excellent (concanavalin A is a notable exception). Inclusion of the beta-turn in the analysis improves the correlation for the estimates of the beta-form, but the computed beta t values are not significantly correlated with the X-ray results. Matrix formulation proves the equivalence of the least-squares method and the integral curve-fitting.
在水溶液中,蛋白质在任意波长λ处的平均残基椭圆率[θ]可表示为[θ]λ = fH[θ]H∞(1 - k/n) + fβ[θ]β + ft[θ]t + fR[θ]R,有两个约束条件:1≥fj≥0且∑fj = 1。下标H、β、t和R分别代表螺旋、β折叠、β转角和无规形式。15种蛋白质的分数fj基于X射线晶体学数据,ft指消除那些二面角符号相反的残基后的净β转角。无限螺旋的[θ]H∞及其链长依赖因子k是根据肌红蛋白数据计算得出的(Chen等人,1974年,《生物化学》13卷,3350页)。15种蛋白质每个螺旋段的平均残基数n约为10,可用于未知结构的蛋白质。其他三种结构元件的参考光谱通过最小二乘法计算得出。一旦选定参考光谱,上述相同方程可用于根据蛋白质在190至240nm之间以1nm间隔的圆二色性(CD)数据点来估计其二级结构的分数。计算得到的螺旋含量通常很好甚至极佳(伴刀豆球蛋白A是一个显著例外)。在分析中纳入β转角可提高β折叠形式估计的相关性,但计算得到的βt值与X射线结果没有显著相关性。矩阵公式证明了最小二乘法与积分曲线拟合的等效性。