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理解 DNA 沟槽尺寸的序列依赖性:对 DNA 相互作用的影响。

Understanding the sequence-dependence of DNA groove dimensions: implications for DNA interactions.

机构信息

Laboratoire de Physique Théorique et Modélisation, UMR-8089, Centre National de la Recherche Scientifique et Université de Cergy-Pontoise, Cergy-Pontoise, France.

出版信息

PLoS One. 2010 Dec 29;5(12):e15931. doi: 10.1371/journal.pone.0015931.

Abstract

BACKGROUND

The B-DNA major and minor groove dimensions are crucial for DNA-protein interactions. It has long been thought that the groove dimensions depend on the DNA sequence, however this relationship has remained elusive. Here, our aim is to elucidate how the DNA sequence intrinsically shapes the grooves.

METHODOLOGY/PRINCIPAL FINDINGS: The present study is based on the analysis of datasets of free and protein-bound DNA crystal structures, and from a compilation of NMR (31)P chemical shifts measured on free DNA in solution on a broad range of representative sequences. The (31)P chemical shifts can be interpreted in terms of the BI↔BII backbone conformations and dynamics. The grooves width and depth of free and protein-bound DNA are found to be clearly related to the BI/BII backbone conformational states. The DNA propensity to undergo BI↔BII backbone transitions is highly sequence-dependent and can be quantified at the dinucleotide level. This dual relationship, between DNA sequence and backbone behavior on one hand, and backbone behavior and groove dimensions on the other hand, allows to decipher the link between DNA sequence and groove dimensions. It also firmly establishes that proteins take advantage of the intrinsic DNA groove properties.

CONCLUSIONS/SIGNIFICANCE: The study provides a general framework explaining how the DNA sequence shapes the groove dimensions in free and protein-bound DNA, with far-reaching implications for DNA-protein indirect readout in both specific and non specific interactions.

摘要

背景

B-DNA 的大沟和小沟的尺寸对于 DNA-蛋白质相互作用至关重要。长期以来,人们一直认为沟的尺寸取决于 DNA 序列,但这种关系一直难以捉摸。在这里,我们的目的是阐明 DNA 序列如何内在地塑造沟。

方法/主要发现:本研究基于对自由和蛋白质结合 DNA 晶体结构数据集的分析,以及对广泛代表性序列的溶液中自由 DNA 的 NMR(31)P 化学位移的综合研究。(31)P 化学位移可以用 BI↔BII 骨架构象和动力学来解释。自由和蛋白质结合 DNA 的沟宽和沟深与 BI/BII 骨架构象状态明显相关。DNA 发生 BI↔BII 骨架转变的倾向高度依赖于序列,并且可以在二核苷酸水平上进行量化。这种 DNA 序列与骨架行为之间的双重关系,以及骨架行为与沟尺寸之间的关系,使得 DNA 序列与沟尺寸之间的联系得以破译。它还明确确立了蛋白质利用内在的 DNA 沟特性。

结论/意义:该研究提供了一个普遍的框架,解释了 DNA 序列如何在自由和蛋白质结合 DNA 中塑造沟的尺寸,这对特异性和非特异性相互作用中的 DNA-蛋白质间接读出具有深远的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5515/3012109/05ab8e0e24bc/pone.0015931.g001.jpg

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