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利用金门克隆和模块化克隆系统快速组装多基因构建体

Fast track assembly of multigene constructs using Golden Gate cloning and the MoClo system.

作者信息

Werner Stefan, Engler Carola, Weber Ernst, Gruetzner Ramona, Marillonnet Sylvestre

机构信息

Icon Genetics GmbH, Halle, Germany.

出版信息

Bioeng Bugs. 2012 Jan 1;3(1):38-43. doi: 10.4161/bbug.3.1.18223.

Abstract

Recent progress in the field of synthetic biology has led to the creation of cells containing synthetic genomes. Although these first synthetic organisms contained copies of natural genomes, future work will be directed toward engineering of organisms with modified genomes and novel phenotypes. Much work, however, remains to be done to be able to routinely engineer novel biological functions. As a tool that will be useful for such purpose, we have recently developed a modular cloning system (MoClo) that allows high throughput assembly of multiple genetic elements. We present here new features of this cloning system that allow to increase the speed of assembly of multigene constructs. As an example, 68 DNA fragments encoding basic genetic elements were assembled using three one-pot cloning steps, resulting in a 50 kb construct containing 17 eukaryotic transcription units. This cloning system should be useful for generating the multiple construct variants that will be required for developing gene networks encoding novel functions, and fine-tuning the expression levels of the various genes involved.

摘要

合成生物学领域的最新进展已促使含有合成基因组的细胞诞生。尽管这些首批合成生物体包含天然基因组的拷贝,但未来的工作将朝着构建具有修饰基因组和新表型的生物体发展。然而,要能够常规地设计新的生物学功能,仍有许多工作要做。作为一种有助于实现这一目标的工具,我们最近开发了一种模块化克隆系统(MoClo),它能够对多个遗传元件进行高通量组装。我们在此展示该克隆系统的新特性,这些特性可提高多基因构建体的组装速度。例如,通过三个一锅法克隆步骤组装了68个编码基本遗传元件的DNA片段,得到了一个包含17个真核转录单元的50 kb构建体。该克隆系统对于生成开发编码新功能的基因网络所需的多种构建体变体,以及微调所涉及的各种基因的表达水平应该会很有用。

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