Zietz S, Belmont A, Nicolini C
Cell Biophys. 1983 Sep;5(3):163-87. doi: 10.1007/BF02788611.
A theoretical approach to modeling Circular Intensity Differential Scattering (CIDS) of native chromatin as multiple scattering of dipoles is discussed without the Born approximation. The model can explain the experimental data in the literature. It is shown that CIDS contains more structural information than does total light scattering and to a good approximation is independent of the length of the scattering molecules. Finally, CIDS in conjunction with traditional light scattering measurements should aid in discriminating between various alternative models of higher order chromatin structure now being proposed. Generalization of this theoretical study to other complex biomolecular structures, is also briefly discussed.
本文讨论了一种将天然染色质的圆强度差散射(CIDS)建模为偶极子多重散射的理论方法,且未采用玻恩近似。该模型能够解释文献中的实验数据。研究表明,CIDS比总光散射包含更多的结构信息,并且在良好近似下与散射分子的长度无关。最后,CIDS与传统光散射测量相结合应有助于区分目前正在提出的各种高阶染色质结构替代模型。本文还简要讨论了将该理论研究推广到其他复杂生物分子结构的情况。