在Codon限制下使用可表达式拉伸式二级结构模型进行直接RNA序列设计
Direct RNA sequence design under codon constraints using expressive tensor-based secondary structure models
作者
Authors
Mark Fornace | Christina Wuyan Wang | Michael Lindsey
期刊
Journal
暂无期刊信息
年份
Year
2026
分类
Category
国家
Country
-
📝 摘要
Abstract
Nucleic acid sequence design via codon optimization is a fundamental task with applications across synthetic biology, mRNA therapeutics, and vaccine design. Given a target protein, it is a major open challenge to navigate the combinatorially large design space of codon sequences mapping to its amino acid sequence. Computational approaches generally seek to optimize simple objectives based on the codon sequence, possibly together with more complicated contributions based on secondary structure analysis. In this work, we demonstrate a direct and efficient algorithm to sample sequences from a suitable Boltzmann distribution defined in terms of the codon sequence and a fully detailed secondary structure free energy model, as well as related algorithms for exact computation of statistical quantities such as free energies, base pairing probabilities, and base and codon marginals. These algorithms draw upon a recently developed tensor-based formulation of secondary structure thermodynamics and demonstrate, for the first time, that global sequence design can be accomplished with respect to a highly accurate free energy model. Moreover, the algorithms can leverage any available CPU and GPU resources in parallel for massive computational speedups.
📊 文章统计
Article Statistics
基础数据
Basic Stats
76
浏览
Views
0
下载
Downloads
16
引用
Citations
引用趋势
Citation Trend
阅读国家分布
Country Distribution
阅读机构分布
Institution Distribution
月度浏览趋势
Monthly Views