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[分离染色质的准弹性光散射]

[Quasielastic light scattering of isolated chromatin].

作者信息

Meuel B, Notbohm H

出版信息

Z Naturforsch C Biosci. 1983 Jan-Feb;38(1-2):126-34. doi: 10.1515/znc-1983-1-222.

Abstract

Chromatin undergoes structural changes in dependence on the ionic strength of monovalent cations. At low ionic strength an extended chain of nucleosomes is apparent while with increasing ionic strength more compact structures are formed. Soluble chromatin was prepared from rat liver and fractionated by gel chromatography. Quasielastic light scattering experiments on chromatin were done with monovalent salt concentrations ranging from 3-150 mM. Using this method translational diffusion coefficients have been derived. These appeared to be nearly independent of monovalent salt concentrations, indicating that the hydrodynamic radius of chromatin molecules did not change. On the other hand, sedimentation coefficients were increasing according to an exponential relation. Taken together, both findings reveal a rising of the molar mass with increasing ionic strength. On the contrary, chromatin prepared in physiological salt apparently disintegrates by lowering the ionic strength. Furthermore, it could be demonstrated by earlier small angle X-ray scattering studies that the diameter of the higher order chromatin fiber remained constant at approximately 32 nm even if these structures had been reconstituted from smaller pieces starting at low ionic strength. Thus, isolated chromatin fibers are capable of self-assembling to regular quaternary structures, even if the DNA does not form a continuous strand.

摘要

染色质会根据单价阳离子的离子强度发生结构变化。在低离子强度下,核小体的伸展链很明显,而随着离子强度增加,会形成更紧密的结构。从大鼠肝脏制备可溶性染色质,并通过凝胶色谱法进行分级分离。在单价盐浓度范围为3 - 150 mM的条件下,对染色质进行了准弹性光散射实验。使用这种方法得出了平移扩散系数。这些系数似乎几乎与单价盐浓度无关,这表明染色质分子的流体动力学半径没有变化。另一方面,沉降系数根据指数关系增加。综合来看,这两个发现表明随着离子强度增加,摩尔质量上升。相反,在生理盐溶液中制备的染色质通过降低离子强度显然会解体。此外,早期的小角X射线散射研究表明,即使这些结构是从低离子强度开始由较小片段重构而成,高阶染色质纤维的直径仍保持在约32 nm不变。因此,即使DNA不形成连续链,分离的染色质纤维也能够自组装成规则的四级结构。

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