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首页> 外文期刊>Journal of Molecular Biology >Nucleosome dynamics. III. Histone tail-dependent fluctuation of nucleosomes between open and closed DNA conformations. Implications for chromatin dynamics and the linking number paradox. A relaxation study of mononucleosomes on DNA minicircles.
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Nucleosome dynamics. III. Histone tail-dependent fluctuation of nucleosomes between open and closed DNA conformations. Implications for chromatin dynamics and the linking number paradox. A relaxation study of mononucleosomes on DNA minicircles.

机译:核小体动力学。三,在开放和封闭的DNA构象之间核小体的依赖组蛋白尾巴的波动。对染色质动力学和连接数悖论的影响。 DNA小圆环上单核小体的弛豫研究。

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The mean linking number () of the topoisomer equilibrium distribution obtained upon relaxation of DNA minicircles with topoisomerase I did not increase linearly, but rather in a step wise fashion, with DNA size between 351 and 366 bp. As a consequence, the corresponding linking number difference () did not remain equal to 0, but rather oscillated between +/-0.3 with the periodicity of the double helix. This oscillation, not observed with plasmid-size DNA, is an expected consequence of the stiffness of short DNA. When minicircles were reconstituted with a nucleosome, the associated oscillated between approximately -1.4 +/-0. 2. This oscillation appears to result from the combined effects of DNA stiffness, and nucleosome ability to thermally fluctuate between three distinct DNA conformational states. Two of these states, a closed approximately 1.75-turn DNA conformation with negatively crossed entering and exiting DNAs, and an open approximately 1.4-turn conformation with uncrossed DNAs, are well known, whereas the third state, with a closed DNA conformation and DNAs tending to cross positively rather than negatively, is less familiar. Access to both closed "negative" and "positive" states appears to be mediated by histone N-terminal tails, as shown by specific alterations to the oscillation caused by histone acetylation and phosphate ions, a potent tail destabilizator. These results extend previous observations of ethidium bromide fluorescence titration in the accompanying article, which have pointed to an histone tail-dependent flexibility of entering and exiting DNAs to positive crossing. They also show that DNA wrapping around the histones occurred without twist alteration compared to the DNA free in solution, and reveal an intriguing new facet of the "linking-number-paradox" problem: the possibility for linkers in chromatin to adopt different crossing status within an overall dynamic equilibrium which may be regulated by histone acetylation. Copyright 1999 Academic Press.
机译:在用拓扑异构酶I放松DNA小环时获得的拓扑异构体平衡分布的平均连接数()并不是线性增加,而是以逐步的方式增加,DNA大小在351和366 bp之间。结果,相应的连接数差()不保持等于0,而是以双螺旋的周期性在+/- 0.3之间振荡。质粒大小的DNA未观察到这种振荡,这是短DNA刚度的预期结果。当用核小体重构小圆时,相关的在大约-1.4 +/- 0之间振荡。 2.这种振荡似乎是由于DNA刚度和核小体在三种不同的DNA构象状态之间热波动的能力共同作用的结果。这些状态中的两个是众所周知的,其中进入和退出DNA带有负向交叉的闭合DNA构象约为1.75圈,未杂交的DNA处于开放的约1.4匝构象,而处于闭合状态的第三种状态则具有闭合的DNA构象和DNA趋向。积极而不是消极地交叉,这是不那么熟悉的。封闭的“阴性”和“阳性”状态的进入似乎是由组蛋白N末端尾部介导的,如由组蛋白乙酰化和磷酸根离子(一种有效的尾部去稳定剂)引起的振荡的特定变化所示。这些结果扩展了先前在随附的文章中对溴化乙锭荧光滴定的观察结果,该观察结果指出了进入和退出DNA到阳性杂交的组蛋白尾巴依赖性的灵活性。他们还表明,与溶液中游离的DNA相比,包裹在组蛋白上的DNA没有发生扭曲改变,并且揭示了“连接数悖论”问题的一个有趣的新方面:染色质中的连接子可能在内部采用不同的交叉状态可以通过组蛋白乙酰化调节的整体动态平衡。版权所有1999,学术出版社。

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