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首页> 外文期刊>Current gene therapy >Genome engineering with TAL-effector nucleases and alternative modular nuclease technologies.
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Genome engineering with TAL-effector nucleases and alternative modular nuclease technologies.

机译:使用TAL效应核酸酶和替代性模块化核酸酶技术进行基因组工程。

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摘要

Over three years following the discovery of the TAL code, artificial TAL effector DNA binding domains have emerged as the premier platform for building site-specific DNA binding polypeptides for use in biological research. Here, we provide an overview of TAL effector and alternative modular DNA binding domain (mDBD) technologies, focusing on their use in established and emerging architectures for building site-specific endonucleases for genome engineering applications. We also discuss considerations for choosing TAL effector/mDBD or alternative nuclease technologies for genome engineering projects ranging from basic laboratory gene editing of cultured cell lines to therapeutics. Finally, we highlight how the rapid pace of development of mDBD-based, such as monomeric TALENs (I-TevI-TAL), and more recently RNA-guided nucleases (CRISPR-Cas9) has led to a transition in the field of genome engineering towards development of the next generation of technologies aimed at controlling events that occur after targeted DNA breaks are made.
机译:在发现TAL密码后的三年多时间里,人工TAL效应子DNA结合域已成为构建用于生物学研究的位点特异性DNA结合多肽的主要平台。在这里,我们提供了TAL效应子和替代性模块化DNA结合域(mDBD)技术的概述,重点介绍了它们在已建立和新兴的体系结构中的使用,以构建用于基因组工程应用的位点特异性核酸内切酶。我们还将讨论为基因组工程项目选择TAL效应子/ mDBD或其他核酸酶技术的注意事项,涉及从培养细胞系的基本实验室基因编辑到治疗药物的基因组工程。最后,我们强调了基于mDBD的快速发展步伐,例如单体TALENs(I-TevI​​-TAL)和最近的RNA引导的核酸酶(CRISPR-Cas9)如何导致基因组工程领域的转型致力于下一代技术的开发,旨在控制目标DNA断裂后发生的事件。

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