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Synthetic evolving systems that implement a user-specified genetic code of arbitrary design

机译:实施用户指定的任意设计遗传密码的合成进化系统

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摘要

A synthetic genetic system, based on cross-replicating RNA enzymes, provides a means to evaluate alternative genetic codes that relate heritable information to corresponding molecular function. A special implementation of encoded combinatorial chemistry was used to construct complex populations of cross-replicating RNA enzymes in accordance with a user-specified code that relates genotype and phenotype on a molecule-by-molecule basis. The replicating enzymes were made to undergo self-sustained Darwinian evolution, resulting in the emergence of the most advantageous variants. These included both highly active enzymes that sustained the population as a whole and poorly active enzymes that survived as parasites of the active molecules. This evolutionary outcome was a consequence of the information capacity and fidelity of the genetic code, suggesting how these parameters should be adjusted to implement codes tailored to particular applications.
机译:基于交叉复制RNA酶的合成遗传系统,提供了一种评估将遗传信息与相应分子功能相关联的替代遗传密码的方法。编码组合化学的一种特殊实现方式用于根据用户指定的代码构建复杂的交叉复制RNA酶种群,该代码在逐个分子的基础上关联基因型和表型。使复制酶经历自我维持的达尔文进化,从而导致最有利的变体的出现。这些既包括维持整个种群的高活性酶,又是作为活性分子的寄生虫​​存活的低活性酶。这种进化的结果是遗传密码的信息能力和保真度的结果,表明应如何调整这些参数以实施为特定应用量身定制的密码。

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