Shindo H, Wooten J B, Pheiffer B H, Zimmerman S B
Biochemistry. 1980 Feb 5;19(3):518-26. doi: 10.1021/bi00544a020.
31P nuclear magnetic resonance of highly oriented DNA fibers has been observed for three different conformations, namely, the A, B, and C forms of DNA. At a parallel orientation of the fiber axis with respect to the magnetic field, DNA fibers in both the A and B forms exhibit a single, abnormally broad resonance; in contrast, fibers in the C form show almost the full span of the chemical shift anisotropy (170 ppm). The spectra of the fibers oriented perpendicular indicate that the DNA molecules undergo a considerable rotational motion about the helical axis, with a rate of greater than 2 x 10(3) s-1 for the B-form DNA. Theoretical considerations indicate that the 31P chemical shift data for the B-form DNA fibers are consistent with the atomic coordinates of the phosphodiester group proposed by Langridge et al. [Langridge, R., Wilson, H. R. Hooper, C. W., Wilkins, M. H. F., & Hamilton, L. D. (1960) J. Mol. Biol. 2, 19--37] but not with the corresponding coordinates proposed by Arnott and Hukins [Arnott, S., & Hukins, D. W. L. (1972) Biochem. Biophys. Res. Coomun. 47, 1504--1509], and also lead to the conclusion that the phosphodiester orientation must vary significantly along the DNA molecule. The latter result suggests that DNA has significant variations in its backbone conformation along the molecule.
已观察到高度取向的DNA纤维的31P核磁共振呈现出三种不同的构象,即DNA的A、B和C型。当纤维轴相对于磁场呈平行取向时,A和B型DNA纤维均表现出单一的、异常宽的共振;相比之下,C型纤维显示出几乎完整的化学位移各向异性范围(170 ppm)。垂直取向的纤维的光谱表明,DNA分子围绕螺旋轴进行相当大的旋转运动,对于B型DNA,其速率大于2×10³ s⁻¹。理论考虑表明,B型DNA纤维的31P化学位移数据与Langridge等人提出的磷酸二酯基团的原子坐标一致[Langridge, R., Wilson, H. R., Hooper, C. W., Wilkins, M. H. F., & Hamilton, L. D. (1960) J. Mol. Biol. 2, 19--37],但与Arnott和Hukins提出的相应坐标不一致[Arnott, S., & Hukins, D. W. L. (1972) Biochem. Biophys. Res. Coomun. 47, 1504--1509],并且还得出结论,磷酸二酯的取向必须沿DNA分子有显著变化。后一结果表明,DNA分子主链构象沿分子有显著变化。