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高效设计和组装定制 TALEN 和其他基于 TAL 效应物的 DNA 靶向构建体。

Efficient design and assembly of custom TALEN and other TAL effector-based constructs for DNA targeting.

机构信息

Department of Genetics, Cell Biology & Development and Center for Genome Engineering, 321 Church Street SE, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Nucleic Acids Res. 2011 Jul;39(12):e82. doi: 10.1093/nar/gkr218. Epub 2011 Apr 14.

Abstract

TALENs are important new tools for genome engineering. Fusions of transcription activator-like (TAL) effectors of plant pathogenic Xanthomonas spp. to the FokI nuclease, TALENs bind and cleave DNA in pairs. Binding specificity is determined by customizable arrays of polymorphic amino acid repeats in the TAL effectors. We present a method and reagents for efficiently assembling TALEN constructs with custom repeat arrays. We also describe design guidelines based on naturally occurring TAL effectors and their binding sites. Using software that applies these guidelines, in nine genes from plants, animals and protists, we found candidate cleavage sites on average every 35 bp. Each of 15 sites selected from this set was cleaved in a yeast-based assay with TALEN pairs constructed with our reagents. We used two of the TALEN pairs to mutate HPRT1 in human cells and ADH1 in Arabidopsis thaliana protoplasts. Our reagents include a plasmid construct for making custom TAL effectors and one for TAL effector fusions to additional proteins of interest. Using the former, we constructed de novo a functional analog of AvrHah1 of Xanthomonas gardneri. The complete plasmid set is available through the non-profit repository AddGene and a web-based version of our software is freely accessible online.

摘要

TALENs 是基因组工程的重要新工具。植物病原黄单胞菌的转录激活子样(TAL)效应物与 FokI 核酸酶融合,形成 TALENs,可成对结合并切割 DNA。结合特异性由 TAL 效应物中可定制的多态性氨基酸重复阵列决定。我们提出了一种高效组装具有自定义重复阵列的 TALEN 构建体的方法和试剂。我们还根据天然存在的 TAL 效应物及其结合位点描述了设计准则。使用应用这些准则的软件,我们在来自植物、动物和原生生物的九个基因中,平均每 35bp 找到了一个候选切割位点。从这个集合中选择的 15 个位点中的每一个都在基于酵母的测定中被 TALEN 对切割,这些 TALEN 对是使用我们的试剂构建的。我们使用其中两个 TALEN 对在人类细胞中突变 HPRT1 和拟南芥原生质体中的 ADH1。我们的试剂包括用于构建定制 TAL 效应物的质粒构建体和用于与其他感兴趣的蛋白质融合的 TAL 效应物的质粒构建体。使用前者,我们构建了黄单胞菌的 AvrHah1 的功能模拟物。完整的质粒集可通过非营利性存储库 AddGene 获得,我们的软件的网络版本也可在线免费访问。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8579/3130291/0b9e58175d73/gkr218f1.jpg

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