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Chassis optimization as a cornerstone for the application of synthetic biology based strategies in microbial secondary metabolism

机译:底盘优化是基于合成生物学的策略在微生物次级代谢中应用的基石

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The increased number of bacterial genome sequencing projects has generated over the last years a large reservoir of genomic information. In silico analysis of this genomic data has renewed the interest in bacterial bioprospecting for bioactive compounds by unveiling novel biosynthetic gene clusters of unknown or uncharacterized metabolites. However, only a small fraction of those metabolites is produced under laboratory-controlled conditions; the remaining clusters represent a pool of novel metabolites that are waiting to be “awaken”. Activation of the biosynthetic gene clusters that present reduced or no expression (known as cryptic or silent clusters) by heterologous expression has emerged as a strategy for the identification and production of novel bioactive molecules. Synthetic biology, with engineering principles at its core, provides an excellent framework for the development of efficient heterologous systems for the expression of biosynthetic gene clusters. However, a common problem in its application is the host-interference problem, i.e., the unpredictable interactions between the device and the host that can hamper the desired output. Although an effort has been made to develop orthogonal devices, the most proficient way to overcome the host-interference problem is through genome simplification. In this review we present an overview on the strategies and tools used in the development of hosts/chassis for the heterologous expression of specialized metabolites biosynthetic gene clusters. Finally, we introduce the concept of specialized host as the next step of development of expression hosts.
机译:在过去的几年中,细菌基因组测序项目的数量增加,已经产生了大量的基因组信息。通过对该基因组数据进行计算机分析,通过揭示未知或未鉴定代谢物的新型生物合成基因簇,重新引起了对细菌生物勘探生物活性化合物的兴趣。但是,这些代谢产物中只有一小部分是在实验室控制的条件下产生的。其余的簇代表了一系列等待“唤醒”的新代谢产物。已经出现了通过异源表达来表达减少或没有表达的生物合成基因簇的激活(称为隐性或沉默簇),已经成为鉴定和产生新型生物活性分子的策略。以工程原理为核心的合成生物学为开发高效的异源系统以表达生物合成基因簇提供了一个极好的框架。然而,在其应用中的常见问题是主机干扰问题,即,设备和主机之间的不可预测的交互会妨碍期望的输出。尽管已努力开发正交设备,但克服宿主干扰问题的最有效方法是简化基因组。在这篇综述中,我们概述了宿主/底盘开发中用于特殊代谢物生物合成基因簇的异源表达的策略和工具。最后,我们介绍了专门宿主的概念,将其作为表达宿主开发的下一步。

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