Self B D, Moore D S
Department of Chemistry, Howard University, Washington, DC 20059, USA.
Biophys J. 1997 Jul;73(1):339-47. doi: 10.1016/S0006-3495(97)78074-3.
Infrared (IR) vibrational circular dichroism (VCD), absorption, and linear dichroism (LD) spectra of four homopolyribonucleotides, poly(rA), poly(rG), poly(rC), and poly(rU), have been calculated, in the 1750-1550 cm-1 spectral region, using the DeVoe polarizability theory. A newly derived algorithm, which approximates the Hilbert transform of imaginaries to reals, was used in the calculations to obtain real parts of oscillator polarizabilities associated with each normal mode. The calculated spectra of the polynucleotides were compared with previously measured solution spectra. The good agreement between calculated and measured polynucleotide spectra indicates, for the first time, that the DeVoe theory is a useful means of calculating the VCD and IR absorption spectra of polynucleotides. For the first time, calculated DeVoe theory VCD and IR absorption spectra of oriented polynucleotides are presented. The calculated VCD spectra for the oriented polynucleotides are used to predict the spectra for such measurements made in the future. The calculated IR spectra for the oriented polynucleotides are useful in interpreting the linear dichroism of the polynucleotides.
利用德沃极化率理论,计算了四种同聚核糖核苷酸聚(rA)、聚(rG)、聚(rC)和聚(rU)在1750 - 1550 cm⁻¹光谱区域的红外(IR)振动圆二色性(VCD)、吸收光谱和线性二色性(LD)光谱。计算过程中使用了一种新推导的算法,该算法将虚部的希尔伯特变换近似为实部,以获得与每个简正模式相关的振子极化率的实部。将计算得到的多核苷酸光谱与先前测量的溶液光谱进行了比较。计算光谱与测量光谱之间的良好一致性首次表明,德沃理论是计算多核苷酸VCD和红外吸收光谱的一种有用方法。首次给出了基于德沃理论计算的取向多核苷酸的VCD和红外吸收光谱。计算得到的取向多核苷酸的VCD光谱用于预测未来此类测量的光谱。计算得到的取向多核苷酸的红外光谱有助于解释多核苷酸的线性二色性。