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A syntactic model to design and verify synthetic genetic constructs derived from standard biological parts

机译:一种语法模型,用于设计和验证源自标准生物学部分的合成遗传结构

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Motivation: The sequence of artificial genetic constructs is composed of multiple functional fragments, or genetic parts, involved in different molecular steps of gene expression mechanisms. Biologists have deciphered structural rules that the design of genetic constructs needs to follow in order to ensure a successful completion of the gene expression process, but these rules have not been formalized, making it challenging for non-specialists to benefit from the recent progress in gene synthesis. Results: We show that context-free grammars (CFG) can formalize these design principles. This approach provides a path to organizing libraries of genetic parts according to their biological functions, which correspond to the syntactic categories of the CFG. It also provides a framework for the systematic design of new genetic constructs consistent with the design principles expressed in the CFG. Using parsing algorithms, this syntactic model enables the verification of existing constructs. We illustrate these possibilities by describing a CFG that generates the most common architectures of genetic constructs in Escherichia coli.
机译:动机:人工遗传构建体的序列由多个功能片段或遗传部分组成,涉及基因表达机制的不同分子步骤。生物学家已经破译了结构规则,遗传结构的设计必须遵循这些规则,以确保成功完成基因表达过程,但是这些规则尚未正式化,这使得非专业人士很难从基因的最新进展中受益合成。结果:我们证明了上下文无关文法(CFG)可以形式化这些设计原则。这种方法提供了一种根据遗传部分的生物学功能来组织遗传部分文库的途径,这与CFG的句法类别相对应。它还为符合CFG中表达的设计原则的新基因构建体的系统设计提供了框架。使用语法分析算法,该语法模型可以验证现有结构。我们通过描述CFG来说明这些可能性,该CFG会在大肠杆菌中生成最常见的遗传构建体结构。

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