首页> 外文期刊>Nucleic Acids Research >Expanding the zinc-finger recombinase repertoire: directed evolution and mutational analysis of serine recombinase specificity determinants
【24h】

Expanding the zinc-finger recombinase repertoire: directed evolution and mutational analysis of serine recombinase specificity determinants

机译:扩展锌指重组酶库:丝氨酸重组酶特异性决定子的定向进化和突变分析

获取原文
获取原文并翻译 | 示例
           

摘要

The serine recombinases are a diverse family of modular enzymes that promote high-fidelity DNA rearrangements between specific target sites. Replacement of their native DNA-binding domains with custom-designed Cys(2)-His(2) zinc-finger proteins results in the creation of engineered zinc-finger recombinases (ZFRs) capable of achieving targeted genetic modifications. The flexibility afforded by zinc-finger domains enables the design of hybrid recombinases that recognize a wide variety of potential target sites; however, this technology remains constrained by the strict recognition specificities imposed by the ZFR catalytic domains. In particular, the ability to fully reprogram serine recombinase catalytic specificity has been impeded by conserved base requirements within each recombinase target site and an incomplete understanding of the factors governing DNA recognition. Here we describe an approach to complement the targeting capacity of ZFRs. Using directed evolution, we isolated mutants of the beta and Sin recombinases that specifically recognize target sites previously outside the scope of ZFRs. Additionally, we developed a genetic screen to determine the specific base requirements for site-specific recombination and showed that specificity profiling enables the discovery of unique genomic ZFR substrates. Finally, we conducted an extensive and family-wide mutational analysis of the serine recombinase DNA-binding arm region and uncovered a diverse network of residues that confer target specificity. These results demonstrate that the ZFR repertoire is extensible and highlights the potential of ZFRs as a class of flexible tools for targeted genome engineering.
机译:丝氨酸重组酶是模块化酶的多样化家族,其促进特定靶位点之间的高保真DNA重排。用自定义设计的Cys(2)-His(2)锌指蛋白替换其天然DNA结合结构域导致创建能够实现目标遗传修饰的工程化锌指重组酶(ZFR)。锌指结构域提供的灵活性使得能够设计可识别多种潜在靶位点的杂合重组酶。但是,该技术仍然受到ZFR催化域所施加的严格识别特异性的限制。尤其是,由于每个重组酶靶位点内保守的碱基要求以及对控制DNA识别的因素的不完全了解,阻碍了完全重新编程丝氨酸重组酶催化特异性的能力。在这里,我们描述了一种补充ZFR靶向能力的方法。使用定向进化,我们分离了β和Sin重组酶的突变体,它们特异性识别以前不在ZFRs范围内的靶位点。此外,我们开发了遗传筛选来确定位点特异性重组的特定碱基要求,并表明特异性谱分析能够发现独特的基因组ZFR底物。最后,我们对丝氨酸重组酶DNA结合臂区域进行了广泛的全族突变分析,发现了赋予靶标特异性的各种残基网络。这些结果表明,ZFR的库是可扩展的,并突出了ZFR作为一类用于靶向基因组工程的灵活工具的潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号