首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Cloning human herpes virus 6A genome into bacterial artificial chromosomes and study of DNA replication intermediates
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Cloning human herpes virus 6A genome into bacterial artificial chromosomes and study of DNA replication intermediates

机译:将人类疱疹病毒6A基因组克隆到细菌人工染色体中并研究DNA复制中间体

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摘要

Cloning of large viral genomes into bacterial artificial chromosomes (BACs) facilitates analyses of viral functions and molecular mutagenesis. Previous derivations of viral BACs involved laborious recombinations within infected cells. We describe a single-step production of viral BACs by direct cloning of unit length genomes, derived from circular or head-to-tail concatemeric DNA replication intermediates. The BAC cloning is independent of intracellular recombinations and DNA packaging constraints. We introduced the 160-kb human herpes virus 6A (HHV-6A) genome into BACs by digesting the viral DNA replicative intermediates with the Sfil enzyme that cleaves the viral genome in a single site. The recom-binant BACs contained also the puromycin selection gene, GFP, and LoxP sites flanking the BAC sequences. The HHV-6A-BAC vectors were retained stably in puromycin selected 293T cells. In the presence of irradiated helper virus, supplying most likely proteins enhancing gene expression they expressed early and late genes in SupT1 T cells. The method is especially attractive for viruses that replicate inefficiently and for viruses propagated in suspension cells. We have used the fact that the BAC cloning "freezes" the viral DNA replication intermediates to analyze their structure. The results revealed that HHV-6A-BACs contained a single direct repeat (DR) rather than a DR-DR sequence, predicted to arise by circular-ization of parental genomes with a DR at each terminus. HHV-6A DNA molecules prepared from the infected cells also contained DNA molecules with a single DR. Such forms were not previously described for HHV-6 DNA.
机译:将大型病毒基因组克隆到细菌人工染色体(BAC)中有助于分析病毒功能和分子诱变。病毒BAC的先前衍生涉及感染细胞内的艰苦重组。我们描述了直接克隆单位长度的基因组的病毒BAC的一步生产,该基因组是从环状或头尾对接串联DNA复制中间体衍生而来的。 BAC克隆与细胞内重组和DNA包装限制无关。我们通过在单个位点切割病毒基因组的Sfil酶消化病毒DNA复制中间体,将160 kb人疱疹病毒6A(HHV-6A)基因组引入BAC。重组BAC还包含嘌呤霉素选择基因,GFP和位于BAC序列两侧的LoxP位点。 HHV-6A-BAC载体稳定地保留在嘌呤霉素选择的293T细胞中。在辐照性辅助病毒的存在下,它们提供了最有可能增强基因表达的蛋白质,它们在SupT1 T细胞中表达了早期和晚期基因。该方法对于低效复制的病毒和在悬浮细胞中繁殖的病毒特别有吸引力。我们已经利用BAC克隆“冻结”病毒DNA复制中间体来分析其结构这一事实。结果表明,HHV-6A-BAC包含单个直接重复(DR)而不是DR-DR序列,预计是通过在每个末端带有DR的亲本基因组环化产生的。由感染细胞制备的HHV-6A DNA分子也包含带有单个DR的DNA分子。以前没有针对HHV-6 DNA描述此类形式。

著录项

  • 来源
  • 作者

    Ronen Borenstein; Niza Frenkel;

  • 作者单位

    The S. Daniel Abraham Institute for Molecular Virology and The Department of Cell Research and Immunology, Tel Aviv University, Tel Aviv 66978, Israel;

    The S. Daniel Abraham Institute for Molecular Virology and The Department of Cell Research and Immunology, Tel Aviv University, Tel Aviv 66978, Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    BAC; Direct cloning; HHV-6A;

    机译:BAC;直接克隆;HHV-6A;
  • 入库时间 2022-08-18 00:42:07

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