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染色质的上层结构及其凝聚机制。I. 同步辐射X射线散射结果。

The superstructure of chromatin and its condensation mechanism. I. Synchrotron radiation X-ray scattering results.

作者信息

Bordas J, Perez-Grau L, Koch M H, Vega M C, Nave C

出版信息

Eur Biophys J. 1986;13(3):157-73. doi: 10.1007/BF00542560.

Abstract

Synchroton radiation X-ray scattering experiments have been performed on chicken erythrocyte chromatin fibres over a wide range of ionic conditions and on various states of the fibres (i.e. "native" in solution, in gels and in whole nuclei; chromatin depleted of the H1 (H5) histones and chromatin with bound ethidium bromide). A correlation between the results obtained with the various chromatin preparations provides evidence for a model according to which at low ionic strength the chromatin fibre already possesses a helical superstructure, with a diameter comparable to that of condensed chromatin, held together by the H1(H5) histone. The most significant structural modification undergone upon an increase of the ionic strength is a reduction of the helix pitch, this leads to condensation in a manner similar to the folding of an accordion. The details of this process depend on whether monovalent or divalent cations are used to raise the ionic strength, the latter producing a much higher degree of condensation. Measurements of the relative increase of the mass per unit length indicate that the most condensed state is a helical structure with a pitch around 3.0-4.0 nm. In this paper we give a detailed presentation of the experimental evidence obtained from static and time-resolved scattering experiments, which led to this model.

摘要

同步辐射X射线散射实验已在多种离子条件下对鸡红细胞染色质纤维以及纤维的各种状态(即溶液中、凝胶中和完整细胞核中的“天然”状态;去除H1(H5)组蛋白的染色质以及结合有溴化乙锭的染色质)进行。不同染色质制剂所获结果之间的相关性为一个模型提供了证据,根据该模型,在低离子强度下,染色质纤维已具有螺旋超结构,其直径与浓缩染色质的直径相当,由H1(H5)组蛋白维系在一起。离子强度增加时发生的最显著结构改变是螺旋螺距减小,这导致以类似于手风琴折叠的方式发生浓缩。该过程的细节取决于用于提高离子强度的是单价阳离子还是二价阳离子,二价阳离子会产生更高程度的浓缩。单位长度质量相对增加的测量表明,最浓缩状态是螺距约为3.0 - 4.0 nm的螺旋结构。在本文中,我们详细介绍了从静态和时间分辨散射实验获得的实验证据,这些证据促成了该模型。

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