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Genome-driven cell engineering review: in vivo and in silico metabolic and genome engineering

机译:基因组驱动的细胞工程评论:体内和硅代谢和基因组工程

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Producing 'designer cells' with specific functions is potentially feasible in the near future. Recent developments, including whole-cell models, genome design algorithms and gene editing tools, have advanced the possibility of combining biological research and mathematical modelling to further understand and better design cellular processes. In this review, we will explore computational and experimental approaches used for metabolic and genome design. We will highlight the relevance of modelling in this process, and challenges associated with the generation of quantitative predictions about cell behaviour as a whole: although many cellular processes are well understood at the subsystem level, it has proved a hugely complex task to integrate separate components together to model and study an entire cell. We explore these developments, highlighting where computational design algorithms compensate for missing cellular information and underlining where computational models can complement and reduce lab experimentation. We will examine issues and illuminate the next steps for genome engineering.
机译:在不久的将来,生产具有特定功能的“设计者单元”可能是可行的。最近的发展,包括全细胞模型,基因组设计算法和基因编辑工具,具有结合生物学研究和数学建模的可能性,以进一步了解和更好的设计细胞过程。在本综述中,我们将探讨用于代谢和基因组设计的计算和实验方法。我们将突出在该过程中建模的相关性,以及与整个细胞行为的定量预测相关的挑战:尽管在子系统级别很好地理解了许多蜂窝过程,但它已经证明了一项巨大的复杂任务来集成单独的组件一起模拟并研究整个细胞。我们探讨了这些发展,突出显示计算设计算法补偿丢失的蜂窝信息和下划线,计算模型可以补充和降低实验室实验。我们将研究问题并照亮基因组工程的下一个步骤。

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