首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Reconstruction of natural RNA sequences from RNA shape, thermodynamic stability, mutational robustness, and linguistic complexity by evolutionary computation.
【24h】

Reconstruction of natural RNA sequences from RNA shape, thermodynamic stability, mutational robustness, and linguistic complexity by evolutionary computation.

机译:通过进化计算从RNA形状,热力学稳定性,突变鲁棒性和语言复杂性重建天然RNA序列。

获取原文
获取原文并翻译 | 示例
           

摘要

The process of designing novel RNA sequences by inverse RNA folding, available in tools such as RNAinverse and InfoRNA, can be thought of as a reconstruction of RNAs from secondary structure. In this reconstruction problem, no physical measures are considered as additional constraints that are independent of structure, aside of the goal to reach the same secondary structure as the input using energy minimization methods. An extension of the reconstruction problem can be formulated since in many cases of natural RNAs, it is desired to analyze the sequence and structure of RNA molecules using various physical quantifiable measures. In prior works that used secondary structure predictions, it has been shown that natural RNAs differ significantly from random RNAs in some of these measures. Thus, we relax the problem of reconstructing RNAs from secondary structure into reconstructing RNAs from shapes, and in turn incorporate physical quantities as constraints. This allows for the design of novel RNA sequences by inverse folding while considering various physical quantities of interest such as thermodynamic stability, mutational robustness, and linguistic complexity. At the expense of altering the number of nucleotides in stems and loops, for example, physical measures can be taken into account. We use evolutionary computation for the new reconstruction problem and illustrate the procedure on various natural RNAs.
机译:通过反向RNA折叠设计新的RNA序列的过程(可以在RNAinverse和InfoRNA等工具中获得)可以被认为是从二级结构重建RNA。在此重建问题中,除了使用能量最小化方法达到与输入相同的二级结构的目标外,没有物理措施被视为与结构无关的其他约束。可以提出重建问题的扩展,因为在许多天然RNA情况下,希望使用各种物理可量化的方法来分析RNA分子的序列和结构。在使用二级结构预测的现有研究中,已经表明,在某些此类方法中,天然RNA与随机RNA明显不同。因此,我们放松了从二级结构重建RNA到从形状重建RNA的问题,并进而纳入了物理量作为约束。这允许通过反向折叠设计新颖的RNA序列,同时考虑各种感兴趣的物理量,例如热力学稳定性,突变鲁棒性和语言复杂性。例如,以改变茎和环中核苷酸的数目为代价,可以考虑物理措施。我们将进化计算用于新的重建问题,并说明了各种天然RNA的程序。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号