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Conservative site-specific and single-copy transgenesis in human LINE-1 elements

机译:人类线1个元素中的保守派特异性和单拷贝转基因

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摘要

Genome engineering of human cells plays an important role in biotechnology and molecular medicine. In particular, insertions of functionalmulti-transgene cassettes into suitable endogenous sequences will lead to novel applications. Although several tools have been exploited in this context, safety issues such as cytotoxicity, insertional mutagenesis and off-target cleavage together with limitations in cargo size/expression often compromise utility. Phage lambda integrase (Int) is a transgenesis tool that mediates conservative site-specific integration of 48 kb DNA into a safe harbor site of the bacterial genome. Here, we show that an Int variant precisely recombines large episomes into a sequence, termed attH4X, found in 1000 human Long INterspersed Elements-1 (LINE-1). We demonstrate single-copy transgenesis through attH4X-targeting in various cell lines including hESCs, with the flexibility of selecting clones according to transgene performance and downstream applications. This is exemplified with pluripotency reporter cassettes and constitutively expressed pay-loads that remain functional in LINE1-targeted hESCs and differentiated progenies. Furthermore, LINE-1 targeting does not induce DNA damage-response or chromosomal aberrations, and neither global nor localized endogenous gene expression is substantially affected. Hence, this simple transgene addition tool should become particularly useful for applications that require engineering of the human genome with multi-transgenes.
机译:人体细胞的基因组工程在生物技术和分子医学中起着重要作用。特别地,将官能化 - 转基因盒成合适的内源序列的插入将导致新的应用。尽管在这种情况下已经利用了几种工具,但细胞毒性,插入诱变和脱靶切割等安全问题以及货物尺寸/表达的局限性经常损害效用。 Phage Lambda Integrase(Int)是一种转基因工具,将保守部位特异性为48 KB DNA的特定于细菌基因组的安全港位点介导。在这里,我们表明,int变体精确地将大的芘重新结合到Atth4x中的序列中,发现在1000人长的散射元件-1(线-1)中。我们通过在包括HESC的各种细胞系中通过Atth4x靶向来证明单拷贝转基因,根据转基因性能和下游应用选择克隆的灵活性。这是用多能记者记者盒的举例说明,并且组成思考的屈服载荷在Line1靶向HESC和分化的后代仍然存在。此外,线-1靶向不会诱导DNA损伤响应或染色体像差,并且全局或局部内源性基因表达都没有显着影响。因此,这种简单的转基因加成工具应特别适用于需要具有多转基因的人类基因组的工程的应用。

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  • 来源
    《Nucleic Acids Research》 |2016年第6期|共18页
  • 作者单位

    Nanyang Technol Univ Sch Biol Sci 60 Nanyang Dr Singapore 637551 Singapore;

    Nanyang Technol Univ Sch Biol Sci 60 Nanyang Dr Singapore 637551 Singapore;

    Nanyang Technol Univ Sch Biol Sci 60 Nanyang Dr Singapore 637551 Singapore;

    Nanyang Technol Univ Sch Biol Sci 60 Nanyang Dr Singapore 637551 Singapore;

    Southern Med Univ Sch Basic Med Sci Dept Bioinformat Tonghe Guangzhou 510515 Peoples R China;

    Southern Med Univ Sch Basic Med Sci Dept Bioinformat Tonghe Guangzhou 510515 Peoples R China;

    Southern Med Univ Sch Basic Med Sci Dept Bioinformat Tonghe Guangzhou 510515 Peoples R China;

    Nanyang Technol Univ Sch Biol Sci 60 Nanyang Dr Singapore 637551 Singapore;

    Agcy Sci Technol &

    Res p53Lab Singapore 138673 Singapore;

    Agcy Sci Technol &

    Res p53Lab Singapore 138673 Singapore;

    Agcy Sci Technol &

    Res p53Lab Singapore 138673 Singapore;

    Nanyang Technol Univ Sch Biol Sci 60 Nanyang Dr Singapore 637551 Singapore;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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