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三维空间中的DNA A序列弯曲:解决dA4T4与dT4A4难题

DNA A-tract bending in three dimensions: solving the dA4T4 vs. dT4A4 conundrum.

作者信息

Stefl Richard, Wu Haihong, Ravindranathan Sapna, Sklenár Vladimír, Feigon Juli

机构信息

National Center for Biomolecular Research, NMR Laboratory, Faculty of Science, Masaryk University, Kotlárská 2, CZ-611 37 Brno, Czech Republic.

出版信息

Proc Natl Acad Sci U S A. 2004 Feb 3;101(5):1177-82. doi: 10.1073/pnas.0308143100. Epub 2004 Jan 22.

Abstract

DNA A-tracts have been defined as four or more consecutive A.T base pairs without a TpA step. When inserted in phase with the DNA helical repeat, bending is manifested macroscopically as anomalous migration on polyacrylamide gels, first observed >20 years ago. An unsolved conundrum is why DNA containing in-phase A-tract repeats of A(4)T(4) are bent, whereas T(4)A(4) is straight. We have determined the solution structures of the DNA duplexes formed by d(GCAAAATTTTGC) [A4T4] and d(CGTTTTAAAACG) [T4A4] with NH(4)(+) counterions by using NMR spectroscopy, including refinement with residual dipolar couplings. Analysis of the structures shows that the ApT step has a large negative roll, resulting in a local bend toward the minor groove, whereas the TpA step has a positive roll and locally bends toward the major groove. For A4T4, this bend is nearly in phase with bends at the two A-tract junctions, resulting in an overall bend toward the minor groove of the A-tract, whereas for T4A4, the bends oppose each other, resulting in a relatively straight helix. NMR-based structural modeling of d(CAAAATTTTG)(15) and d(GTTTTAAAAC)(15) reveals that the former forms a left-handed superhelix with a diameter of approximately 110 A and pitch of 80 A, similar to DNA in the nucleosome, whereas the latter has a gentle writhe with a pitch of >250 A and diameter of approximately 50 A. Results of gel electrophoretic mobility studies are consistent with the higher-order structure of the DNA and furthermore depend on the nature of the monovalent cation present in the running buffer.

摘要

DNA A序列被定义为四个或更多连续的A.T碱基对,且不存在TpA步移。当与DNA螺旋重复序列同相位插入时,弯曲在宏观上表现为在聚丙烯酰胺凝胶上的异常迁移,这一现象早在20多年前就首次被观察到。一个尚未解决的难题是,为什么含有同相位A(4)T(4) A序列重复的DNA会发生弯曲,而T(4)A(4)却是直的。我们通过核磁共振光谱法,包括利用残余偶极耦合进行精修,确定了由d(GCAAAATTTTGC) [A4T4] 和d(CGTTTTAAAACG) [T4A4] 与NH(4)(+)抗衡离子形成的DNA双链体的溶液结构。对结构的分析表明,ApT步移具有较大的负向滚动,导致局部向小沟弯曲,而TpA步移具有正向滚动,局部向大沟弯曲。对于A4T4,这种弯曲几乎与两个A序列连接处的弯曲同相位,导致整体向A序列的小沟弯曲,而对于T4A4,弯曲相互抵消。d(CAAAATTTTG)(15) 和d(GTTTTAAAAC)(15) 的基于核磁共振的结构模型表明,前者形成了一个左手超螺旋,直径约为110 Å,螺距为80 Å,类似于核小体中的DNA,而后者具有一个平缓的扭曲,螺距大于250 Å,直径约为50 Å。凝胶电泳迁移率研究的结果与DNA的高阶结构一致,并且还取决于运行缓冲液中存在的单价阳离子的性质。

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本文引用的文献

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Bent helical structure in kinetoplast DNA.动基体 DNA 的弯曲螺旋结构。
Proc Natl Acad Sci U S A. 1982 Dec;79(24):7664-8. doi: 10.1073/pnas.79.24.7664.
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Structural origins of adenine-tract bending.腺嘌呤序列弯曲的结构起源
Proc Natl Acad Sci U S A. 2003 Mar 4;100(5):2369-73. doi: 10.1073/pnas.0437877100. Epub 2003 Feb 13.
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Solution structure of an A-tract DNA bend.A-序列DNA弯曲的溶液结构
J Mol Biol. 2001 Mar 9;306(5):1081-98. doi: 10.1006/jmbi.2001.4447.

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