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所选天然和非天然核小体定位DNA序列的序列基序和自由能

Sequence motifs and free energies of selected natural and non-natural nucleosome positioning DNA sequences.

作者信息

Thåström A, Lowary P T, Widlund H R, Cao H, Kubista M, Widom J

机构信息

Department of Biochemistry Molecular Biology, and Cell Biology, Northwestern University, Evanston, IL 60208-3500, USA.

出版信息

J Mol Biol. 1999 Apr 30;288(2):213-29. doi: 10.1006/jmbi.1999.2686.

Abstract

Our laboratories recently completed SELEX experiments to isolate DNA sequences that most-strongly favor or disfavor nucleosome formation and positioning, from the entire mouse genome or from even more diverse pools of chemically synthetic random sequence DNA. Here we directly compare these selected natural and non-natural sequences. We find that the strongest natural positioning sequences have affinities for histone binding and nucleosome formation that are sixfold or more lower than those possessed by many of the selected non-natural sequences. We conclude that even the highest-affinity sequence regions of eukaryotic genomes are not evolved for the highest affinity or nucleosome positioning power. Fourier transform calculations on the selected natural sequences reveal a special significance for nucleosome positioning of a motif consisting of approximately 10 bp periodic placement of TA dinucleotide steps. Contributions to histone binding and nucleosome formation from periodic TA steps are more significant than those from other periodic steps such as AA (=TT), CC (=GG) and more important than those from the other YR steps (CA (=TG) and CG), which are reported to have greater conformational flexibility in protein-DNA complexes even than TA. We report the development of improved procedures for measuring the free energies of even stronger positioning sequences that may be isolated in the future, and show that when the favorable free energy of histone-DNA interactions becomes sufficiently large, measurements based on the widely used exchange method become unreliable.

摘要

我们的实验室最近完成了指数富集的配体系统进化(SELEX)实验,从整个小鼠基因组或甚至更多样化的化学合成随机序列DNA库中分离出最强烈促进或抑制核小体形成及定位的DNA序列。在此,我们直接比较这些筛选出的天然和非天然序列。我们发现,最强的天然定位序列对组蛋白结合和核小体形成的亲和力比许多筛选出的非天然序列低六倍或更多。我们得出结论,即使是真核生物基因组中亲和力最高的序列区域,其进化也并非为了获得最高亲和力或核小体定位能力。对筛选出的天然序列进行的傅里叶变换计算揭示了由TA二核苷酸步以约10 bp的周期排列组成的基序对核小体定位具有特殊意义。周期性TA步对组蛋白结合和核小体形成的贡献比其他周期性步(如AA(=TT)、CC(=GG))更大,且比其他YR步(CA(=TG)和CG)更重要,据报道,后者在蛋白质-DNA复合物中的构象灵活性甚至比TA更大。我们报告了用于测量未来可能分离出的更强定位序列自由能的改进方法的开发,并表明当组蛋白-DNA相互作用的有利自由能变得足够大时,基于广泛使用的交换方法的测量变得不可靠。

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