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Polarized Raman spectra of oriented fibers of A DNA and B DNA: anisotropic and isotropic local Raman tensors of base and backbone vibrations.

机译:A DNA和B DNA定向纤维的偏振拉曼光谱:基础和骨架振动的各向异性和各向同性局部拉曼张量。

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摘要

Polarized Raman spectra of oriented fibers of calf thymus DNA in the A and B conformations have been obtained by use of a Raman microscope operating in the 180 degrees back-scattering geometry. The following polarized Raman intensities in the spectral interval 200-1800 cm-1 were measured with both 514.5 and 488.0 nm laser excitations: (1) Icc, in which the incident and scattered light are polarized parallel to the DNA helical axis (c axis); (2) Ibb, in which the incident and scattered light are polarized perpendicular to c; and (3) Ibc and Icb, in which the incident and scattered light are polarized in mutually perpendicular directions. High degrees of structural homogeneity and unidirectional orientation were confirmed for both the A and B form fibers, as judged by comparison of the observed Raman markers and intensity anisotropies with measurements reported previously for oligonucleotide single crystals of known three-dimensional structures. The fiber Raman anisotropies have been combined with solution Raman depolarization ratios to evaluate the local tensors corresponding to key conformation-sensitive Raman bands of the DNA bases and sugar-phosphate backbone. The present study yields novel vibrational assignments for both A DNA and BDNA conformers and also confirms many previously proposed Raman vibrational assignments. Among the significant new findings are the demonstration of complex patterns of A form and B form indicator bands in the spectral intervals 750-900 and 1050-1100 cm-1, the identification of highly anisotropic tensors corresponding to vibrations of base, deoxyribose, and phosphate moieties, and the determination of relatively isotropic Raman tensors for the symmetrical stretching mode of phosphodioxy groups in A and B DNA. The present fiber results provide a basis for exploitation of polarized Raman spectroscopy to determine DNA helix orientation as well as to probe specific nucleotide residue orientations in nucleoproteins, viruses, and other complex biological assemblies.
机译:通过使用以180度反向散射几何结构运行的拉曼显微镜,可以得到A和B构型的小牛胸腺DNA定向纤维的偏振拉曼光谱。在514.5和488.0 nm激光激发下,在200-1800 cm-1的光谱间隔中测量了以下偏振拉曼强度:(1)Icc,其中入射光和散射光平行于DNA螺旋轴(c轴)偏振。 ; (2)Ibb,其中入射光和散射光垂直于c偏振; (3)Ibc和Icb,其中入射光和散射光在相互垂直的方向上偏振。通过比较观察到的拉曼标记和强度各向异性与先前报道的已知三维结构寡核苷酸单晶的测量结果,可以确定A型和B型纤维均具有高度的结构同质性和单向取向。纤维拉曼各向异性已经与溶液拉曼去极化率结合起来,以评估与DNA碱基和糖-磷酸骨架的关键构象敏感拉曼带相对应的局部张量。本研究为A DNA和BDNA构象异构体产生了新颖的振动分配,并证实了许多先前提出的拉曼振动分配。在重要的新发现中,包括在光谱间隔750-900和1050-1100 cm-1中演示A型和B型指示剂带的复杂模式,识别与碱基,脱氧核糖和磷酸盐的振动相对应的高各向异性张量部分和相对等向的拉曼张量的确定,用于A和B DNA中磷酸二氧基的对称拉伸模式。本发明的纤维结果提供了利用偏振拉曼光谱法确定DNA螺旋方向以及探测核蛋白,病毒和其他复杂生物组件中特定核苷酸残基方向的基础。

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