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CLUE: a bioinformatic and wet-lab pipeline for multiplexed cloning of custom sgRNA libraries

机译:线索:用于自定义SGRNA文库的多路复用克隆的生物信息和湿式实验室管道

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摘要

The systematic perturbation of genomes using CRISPR/Cas9 deciphers gene function at an unprecedented rate, depth and ease. Commercially available sgRNA libraries typically contain tens of thousands of pre-defined constructs, resulting in a complexity challenging to handle. In contrast, custom sgRNA libraries comprise gene sets of self-defined content and size, facilitating experiments under complex conditions such as in vivo systems. To streamline and upscale cloning of custom libraries, we present CLUE, a bioinformatic and wetlab pipeline for the multiplexed generation of pooled sgRNA libraries. CLUE starts from lists of genes or pasted sequences provided by the user and designs a single synthetic oligonucleotide pool containing various libraries. At the core of the approach, a barcoding strategy for unique primer binding sites allows amplifying different user-defined libraries from one single oligonucleotide pool. We prove the approach to be straightforward, versatile and specific, yielding uniform sgRNA distributions in all resulting libraries, virtually devoid of cross-contaminations. For in silico library multiplexing and design, we established an easy-to-use online platform at www. crispr-clue.de. All in all, CLUE represents a resourcesaving approach to produce numerous high quality custom sgRNA libraries in parallel, which will foster their broad use across molecular biosciences.
机译:使用CRISPR / CAS9 DECIPHERS基因函数以前所未有的速率,深度和易于轻松进行基因组的系统扰动。商业上可获得的SGRNA文库通常包含成千上万的预定定义构建体,导致挑战处理的复杂性。相反,自定义SGRNA文库包括基因集的自定义含量和尺寸,促进在诸如体内系统中的复杂条件下的实验。为了简化和高档克隆定制库,我们呈现线索,生物信息和Wetlab管道,用于汇集的SGRNA文库的多路复用产生。线索从用户提供的基因或粘贴序列列表开始,并设计含有各种文库的单个合成寡核苷酸池。在该方法的核心中,独特引物结合位点的条形码策略允许扩增来自一种单个寡核苷酸库的不同的用户定义的文库。我们证明了在所有产生的文库中产生均匀的SGRNA分布,均可均匀的SGRNA分布,几乎没有交叉污染。在Silico库复用和设计中,我们在WWW中建立了易于使用的在线平台。 crispr-clue.de。总而言之,线索代表了一种并行生产众多高品质定制SGRNA文库的资源传播方法,这将促进它们对分子生物学的广泛使用。

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  • 来源
    《Nucleic Acids Research》 |2020年第13期|共9页
  • 作者单位

    German Ctr Environm Hlth HMGU Res Unit Apoptosis Hematopoiet Stem Cells Helmholtz Zentrum Munchen D-81377 Munich Germany;

    Ludwig Maximilians Univ Munich LMU Univ Hosp Dr von Hauner Childrens Hosp Dept Pediat D-80337 Munich Germany;

    German Ctr Environm Hlth HMGU Res Unit Apoptosis Hematopoiet Stem Cells Helmholtz Zentrum Munchen D-81377 Munich Germany;

    Bielefeld Univ Fac Business Adm &

    Econ Bielefeld Germany;

    Bielefeld Univ Fac Business Adm &

    Econ Bielefeld Germany;

    German Ctr Environm Hlth HMGU Res Unit Apoptosis Hematopoiet Stem Cells Helmholtz Zentrum Munchen D-81377 Munich Germany;

    Ludwig Maximilians Univ Munich LMU Univ Hosp Dr von Hauner Childrens Hosp Dept Pediat D-80337 Munich Germany;

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

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