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首页> 外文期刊>Biochemistry >Effects of DNA Binding of the Zinc Finger and Linkers for Domain Fusion on the Catalytic Activity of Sequence-Specific Chimeric Recombinases Determined by a Facile Fluorescent System
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Effects of DNA Binding of the Zinc Finger and Linkers for Domain Fusion on the Catalytic Activity of Sequence-Specific Chimeric Recombinases Determined by a Facile Fluorescent System

机译:锌指和用于域融合的接头的DNA结合对由便利的荧光系统测定的序列特异性嵌合重组酶催化活性的影响

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Artificial zinc finger proteins (ZFPs) consist of Cys2-His2-type modules composed of ~30 amino acids with a ββα structure that coordinates a zinc ion. ZFPs that recognize specific DNA target sequences can substitute for the binding domains of enzymes that act on DNA to create designer enzymes with programmable sequence specificity. The most studied of these engineered enzymes are zinc finger nucleases (ZFNs). ZFNs have been widely used to model organisms and are currently in human clinical trials with an aim of therapeutic gene editing. Difficulties with ZFNs arise from unpredictable mutations caused by nonhomologous end joining and off-target DNA cleavage and mutagenesis. A more recent strategy that aims to address the shortcomings of ZFNs involves zinc finger recombinases (ZFRs). A thorough understanding of ZFRs and methods for their modification promises powerful new tools for gene manipulation in model organisms as well as in gene therapy. In an effort to design efficient and specific ZFRs, the effects of the DNA binding affinity of the zinc finger domains and the linker sequence between ZFPs and recombinase catalytic domains have been assessed. A plasmid system containing ZFR target sites was constructed for evaluation of catalytic activities of ZFRs with variable linker lengths and numbers of zinc finger modules. Recombination efficiencies were evaluated by restriction enzyme analysis of isolated plasmids after reaction in Escherichia coli and changes in EGFP fluorescence in mammalian cells. The results provide information relevant to the design of ZFRs that will be useful for sequence-specific genome modification.
机译:人工锌指蛋白(ZFPs)由Cys2-His2型模块组成,该模块由约30个氨基酸组成,具有与锌离子配合的ββα结构。识别特定DNA靶序列的ZFP可以替代作用在DNA上的酶的结合域,从而产生具有可编程序列特异性的设计酶。这些工程化酶中研究最多的是锌指核酸酶(ZFN)。 ZFN已被广泛用于模拟生物,目前正在人类临床试验中,目的是治疗性基因编辑。 ZFN的困难源于由非同源末端连接和脱靶DNA裂解和诱变引起的无法预测的突变。旨在解决ZFN缺点的最新策略涉及锌指重组酶(ZFR)。对ZFR及其修饰方法的透彻了解为模型生物以及基因治疗中的基因操纵提供了强有力的新工具。为了设计有效和特异性的ZFR,已经评估了锌指结构域的DNA结合亲和力以及ZFP和重组酶催化结构域之间的接头序列的影响。构建了包含ZFR目标位点的质粒系统,以评估具有可变接头长度和锌指模块数目的ZFR的催化活性。通过在大肠杆菌中反应后分离的质粒的限制性酶切分析和哺乳动物细胞中EGFP荧光的变化来评估重组效率。结果提供了与ZFR设计有关的信息,这些信息可用于序列特异性基因组修饰。

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