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解决核酸构象分析之间的差异。

Resolving the discrepancies among nucleic acid conformational analyses.

作者信息

Lu X J, Olson W K

机构信息

Department of Chemistry, Rutgers, the State University of New Jersey, Wright-Rieman Laboratories, 610 Taylor Road, Piscataway, NJ, 08854-8087, USA.

出版信息

J Mol Biol. 1999 Jan 29;285(4):1563-75. doi: 10.1006/jmbi.1998.2390.

Abstract

Growing interest in understanding the relationship between the global folding of nucleic acids and the sequence-dependent structure of individual base-pair steps has stimulated the development of new mathematical methods to define the geometry of the constituent base-pairs. Several approaches, designed to meet guidelines set by the nucleic acid community, permit rigorous comparative analyses of different three-dimensional structures, as well as allow for reconstruction of chain molecules at the base-pair level. The different computer programs, however, yield inconsistent descriptions of chain conformation. Here we report our own implementation of seven algorithms used to determine base-pair and dimer step parameters. Aside from reproducing the results of individual programs, we uncover the reasons why the different algorithms come to conflicting structural interpretations. The choice of mathematics has only a limited effect on the computed parameters, even in highly deformed duplexes. The results are much more sensitive to the choice of reference frame. The disparate schemes yield very similar conformational descriptions if the calculations are based on a common reference frame. The current positioning of reference frames at the inner and outer edges of complementary bases exaggerates the rise at distorted dimer steps, and points to the need for a carefully defined conformational standard.

摘要

对理解核酸的整体折叠与单个碱基对步序的序列依赖性结构之间关系的兴趣日益浓厚,这刺激了新数学方法的发展,以定义组成碱基对的几何结构。为满足核酸学界设定的指导方针而设计的几种方法,允许对不同的三维结构进行严格的比较分析,也能在碱基对水平上重建链状分子。然而,不同的计算机程序对链构象的描述并不一致。在此,我们报告我们自己对用于确定碱基对和二聚体步序参数的七种算法的实现。除了重现各个程序的结果外,我们还揭示了不同算法得出相互矛盾的结构解释的原因。数学方法的选择对计算参数的影响有限,即使在高度变形的双链体中也是如此。结果对参考系的选择更为敏感。如果计算基于共同的参考系,不同的方案会产生非常相似的构象描述。目前参考系在互补碱基内边缘和外边缘的定位夸大了扭曲二聚体步序处的上升,并表明需要一个精心定义的构象标准。

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