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盐和组蛋白H1诱导的重组微型染色体结构变化。

Salt-and histone H1-induced structural changes of reconstituted minichromosomes.

作者信息

Böttger M, Scherneck S, von Mickwitz C U, Fenske H, Lindigkeit R

出版信息

Nucleic Acids Res. 1979 Aug 10;6(11):3581-97. doi: 10.1093/nar/6.11.3581.

Abstract

Structural changes of reconstituted SV 40 minichromosomes have been studied in relation to the salt concentration and addition of histone H1 by sedimentation and electron microscopy. Sedimentation data are represented as functions of the NaCl concentration and the Debye-Hückel electrostatic screening radius 1/alpha. The latter representation which proved to provide more information revealed three structural states of the SV 40 reconstitutes which can be additionally characterized by electron microscopy as follows: Expanded or relaxed conformation including free DNA spacers between the nucleosomes at low salt concentration (approx. 0.001 M-0.05 M NaCl), increasing condensation at moderate salt concentration (approx. 0.05 M-0.3 M NaCl) and expansion of this condensed state above approx. 0.3 M NaCl. The condensation of the reconstitutes at moderate salt concentration does not require the presence of histone H1. H1 seems to stabilize the condensed state against electrostatic expansion. The condensation might be promoted by salt-dependent conformational changes of naked superhelical DNA as revealed by sedimentation measurements.

摘要

通过沉降和电子显微镜研究了重组SV 40微型染色体的结构变化与盐浓度及组蛋白H1添加之间的关系。沉降数据表示为NaCl浓度和德拜-休克尔静电屏蔽半径1/α的函数。后一种表示方式被证明能提供更多信息,揭示了SV 40重组体的三种结构状态,通过电子显微镜可进一步表征如下:低盐浓度(约0.001 M - 0.05 M NaCl)下,包括核小体之间的游离DNA间隔物的伸展或松弛构象;中等盐浓度(约0.05 M - 0.3 M NaCl)下,凝聚增加;高于约0.3 M NaCl时,这种凝聚状态扩展。中等盐浓度下重组体的凝聚不需要组蛋白H1的存在。H1似乎能稳定凝聚状态以防止静电扩展。沉降测量表明,凝聚可能由裸露超螺旋DNA的盐依赖性构象变化促进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eaa5/327958/b031254a2fb4/nar00452-0165-a.jpg

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