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Engineering Customized TALE Nucleases (TALENs) and TALE Transcription Factors by Fast Ligation-based Automatable Solid-phase High-throughput (FLASH) Assembly

机译:通过基于快速连接的自动固相高通量(FLASH)组装工程定制TALE核酸酶(TALEN)和TALE转录因子

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摘要

Customized DNA-binding domains made using Transcription Activator-Like Effector (TALE) repeats are rapidly growing in importance as widely applicable research tools. TALE nucleases (TALENs), composed of an engineered array of TALE repeats fused to the FokI nuclease domain, have been used successfully for directed genome editing in multiple different organisms and cell types. TALE transcription factors (TALE-TFs), consisting of engineered TALE repeat arrays linked to a transcriptional regulatory domain, have been used to up- or down-regulate expression of endogenous genes in human cells and plants. Here we describe a detailed protocol for practicing the recently described Fast Ligation-based Automatable Solid-phase High-throughput (FLASH) assembly method. FLASH enables automated high-throughput construction of engineered TALE repeats using an automated liquid handling robot or manually using a multi-channel pipet. With the automated version of FLASH, a single researcher can construct up to 96 DNA fragments encoding various length TALE repeat arrays in one day and then clone these to construct sequence-verified TALEN or TALE-TF expression plasmids in one week or less. Plas-mids required to practice FLASH are available by request from the Joung Lab (). We also describe here improvements to the Zinc Finger and TALE Targeter (ZiFiT Targeter) webserver () that facilitate the design and construction of FLASH TALE repeat arrays in high-throughput.
机译:使用转录激活因子样效应子(TALE)重复序列制成的定制DNA结合结构域作为可广泛应用的研究工具,其重要性正在迅速增长。由融合了FokI核酸酶结构域的工程化TALE重复序列构成的TALE核酸酶(TALENs)已成功用于多种不同生物和细胞类型的定向基因组编辑。 TALE转录因子(TALE-TFs)由与转录调节域连接的工程TALE重复序列组成,已用于上调或下调人类细胞和植物中内源基因的表达。在这里,我们描述了用于实践最近描述的基于快速连接的自动固相高通量(FLASH)组装方法的详细协议。 FLASH可以使用自动液体处理机器人或使用多通道移液器手动完成工程TALE重复序列的自动化高通量构建。使用自动版本的FLASH,单个研究人员可以在一天内构建多达96个编码各种长度TALE重复序列阵列的DNA片段,然后将其克隆以在一周或更短的时间内构建经过序列验证的TALEN或TALE-TF表达质粒。 Joung Lab()可应要求提供实施FLASH所需的质粒。我们还将在此处介绍对Zinc Finger and TALE Targeter(ZiFiT Targeter)Web服务器()的改进,该改进有助于高吞吐量FLASH TALE重复序列阵列的设计和构建。

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