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Template-assisted synthesis of adenine-mutagenized cDNA by a retroelement protein complex

机译:通过逆机蛋白复合物辅助腺嘌呤诱变cDNA的模板辅助合成

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摘要

Diversity-generating retroelements (DGRs) create unparalleled levels of protein sequence variation through mutagenic retrohoming. Sequence information is transferred from an invariant template region (TR), through an RNA intermediate, to a protein-coding variable region. Selective infidelity at adenines during transfer is a hallmark of DGRs from disparate bacteria, archaea, and microbial viruses. We recapitulated selective infidelity in vitro for the prototypical Bordetella bacteriophage DGR. A complex of the DGR reverse transcriptase bRT and pentameric accessory variability determinant (Avd) protein along with DGR RNA were necessary and sufficient for synthesis of template-primed, covalently linked RNA-cDNA molecules, as observed in vivo. We identified RNA-cDNA molecules to be branched and most plausibly linked through 2'-5' phosphodiester bonds. Adenine-mutagenesis was intrinsic to the bRT-Avd complex, which displayed unprecedented promiscuity while reverse transcribing adenines of either DGR or non-DGR RNA templates. In contrast, bRT-Avd processivity was strictly dependent on the template, occurring only for the DGR RNA. This restriction was mainly due to a noncoding segment downstream of TR, which specifically bound Avd and created a privileged site for processive polymerization. Restriction to DGR RNA may protect the host genome from damage. These results define the early steps in a novel pathway for massive sequence diversification.
机译:多样性产生的逆压力(DGR)通过致突变性的逆变产生无与伦比的蛋白质序列变异水平。序列信息通过RNA中间体从不变模板区域(TR)转移到蛋白质编码可变区。转移期间腺嘌呤的选择性不忠是来自不同细菌,古痤疮和微生物病毒的DGR的标志。我们覆盖了对原型博德拉菌体DGR体外的选择性不一体。 DGR逆转录酶BRT和五聚体辅助变异性决定簇(AVD)蛋白以及DGR RNA的复合物是必需的,并且足以用于在体内观察到的模板底漆,共价连接的RNA-cDNA分子合成。我们鉴定了通过2'-5'磷酸二酯键的分支和最合理地连接的RNA-cDNA分子。腺嘌呤诱变是BRT-AVD复合物的内在型,其显示出前所未有的滥己,同时逆转DGR或非DGR RNA模板的腺嘌呤。相比之下,BRT-AVD处理能力严格依赖于模板,仅针对DGR RNA发生。该限制主要是由于TR下游的非编码区段,其特异性地结合AVD并产生了用于加工聚合的特权部位。对DGR RNA的限制可以保护宿主基因组免受损伤。这些结果定义了一种用于大规模序列多样化的新途径中的早期步骤。

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  • 来源
    《Nucleic Acids Research》 |2018年第18期|共15页
  • 作者单位

    Univ Calif San Diego Dept Chem &

    Biochem La Jolla CA 92093 USA;

    Emory Univ Sch Med Dept Pediat Ctr AIDS Res Lab Biochem Pharmacol Atlanta GA 30322 USA;

    Emory Univ Sch Med Dept Pediat Ctr AIDS Res Lab Biochem Pharmacol Atlanta GA 30322 USA;

    Univ Calif San Diego Dept Chem &

    Biochem La Jolla CA 92093 USA;

    Emory Univ Sch Med Dept Pediat Ctr AIDS Res Lab Biochem Pharmacol Atlanta GA 30322 USA;

    Univ Calif Los Angeles Dept Microbiol Inst Mol Biol Los Angeles CA 90095 USA;

    Univ Calif San Diego Dept Chem &

    Biochem La Jolla CA 92093 USA;

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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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