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The proto-Nucleic Acid Builder: a software tool for constructing nucleic acid analogs

机译:原核酸构建器:用于构建核酸类似物的软件工具

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摘要

The helical structures of DNA and RNA were originally revealed by experimental data. Likewise, the development of programs for modeling these natural polymers was guided by known structures. These nucleic acid polymers represent only two members of a potentially vast class of polymers with similar structural features, but that differ from DNA and RNA in the backbone or nucleobases. Xeno nucleic acids (XNAs) incorporate alternative backbones that affect the conformational, chemical, and thermodynamic properties of XNAs. Given the vast chemical space of possible XNAs, computational modeling of alternative nucleic acids can accelerate the search for plausible nucleic acid analogs and guide their rational design. Additionally, a tool for the modeling of nucleic acids could help reveal what nucleic acid polymers may have existed before RNA in the early evolution of life. To aid the development of novel XNA polymers and the search for possible pre-RNA candidates, this article presents the proto-Nucleic Acid Builder (https://github.com/GT-NucleicAcids/pnab), an open-source program for modeling nucleic acid analogs with alternative backbones and nucleobases. The torsion-driven conformation search procedure implemented here predicts structures with good accuracy compared to experimental structures, and correctly demonstrates the correlation between the helical structure and the backbone conformation in DNA and RNA.
机译:DNA和RNA的螺旋结构最初通过实验数据揭示。同样地,通过已知的结构引导这些天然聚合物的模拟程序的开发。这些核酸聚合物仅代表具有类似结构特征的潜在大类聚合物的两个成员,但与骨干或核碱基中的DNA和RNA不同。 Xeno核酸(XNA)包含影响XNA的构象,化学和热力学性质的替代骨干。鉴于可能的XNA的巨大化学空间,替代核酸的计算建模可以加速搜索合理的核酸类似物并引导其合理设计。另外,用于核酸建模的工具可以有助于揭示在早期寿命中的RNA之前可能存在的核酸聚合物。为了帮助开发新型XNA聚合物和寻找可能的RNA候选的可能性,本文介绍了原型 - 核酸生成器(HTTPS://github.com/gt-核酸/ pnab),是用于建模的开源程序具有替代骨干和核碱基的核酸类似物。这里实施的扭转驱动的构象搜索程序预测了与实验结构相比具有良好精度的结构,并且正确地证明了螺旋结构与DNA和RNA中的骨干构象之间的相关性。

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