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Strand invasion by HLTF as a mechanism for template switch in fork rescue

机译:HLTF的Strand入侵作为叉救扣模板开关的机制

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摘要

Stalling of replication forks at unrepaired DNA lesions can result in discontinuities opposite the damage in the newly synthesized DNA strand. Translesion synthesis or facilitating the copy from the newly synthesized strand of the sister duplex by template switching can overcome such discontinuities. During template switch, a new primer-template junction has to be formed and two mechanisms, including replication fork reversal and D-loop formation have been suggested. Genetic evidence indicates a major role for yeast Rad5 in template switch and that both Rad5 and its human orthologue, Helicase-like transcription factor (HLTF), a potential tumour suppressor can facilitate replication fork reversal. This study demonstrates the ability of HLTF and Rad5 to form a D-loop without requiring ATP binding and/or hydrolysis. We also show that this strand-pairing activity is independent of RAD51 in vitro and is not mechanistically related to that of another member of the SWI/SNF family, RAD54. In addition, the 3'-end of the invading strand in the D-loop can serve as a primer and is extended by DNA polymerase. Our data indicate that HLTF is involved in a RAD51-independent D-loop branch of template switch pathway that can promote repair of gaps formed during replication of damaged DNA.
机译:在未填写的DNA病变处的复制叉的放置可能导致与新合成的DNA链中的损伤相反的不连续性。 Translesion合成或促进通过模板切换的新合成的姐妹双工股的副本可以克服这些不连续性。在模板开关期间,必须形成新的引物模板结,并提出了两个机制,包括复制叉逆转和D圈形成。遗传证据表明酵母RAD5在模板开关中的主要作用,并且RAD5及其人的原始型转录因子(HLTF),潜在的肿瘤抑制因子可以促进复制叉逆转。本研究证明了HLTF和RAD5在不需要ATP结合和/或水解的情况下形成D环的能力。我们还表明,该链配对活性与体外rad51无关,并且与SWI / SNF系列的另一个成员的RAD54没有机械地相关。另外,D环中的入侵链的3'-末端可以用作底漆并且通过DNA聚合酶延伸。我们的数据表明,HLTF涉及模板开关通路的RAD51独立的D环分支,这可以促进在复制损坏的DNA期间形成的间隙的修复。

著录项

  • 来源
    《Nucleic Acids Research》 |2014年第3期|共10页
  • 作者单位

    Institute of Genetics Biological Research Center Hungarian Academy of Sciences HU-6726 Szeged Hungary;

    Department of Biology Masaryk University Brno Czech Republic;

    National Centre for Biomolecular Research Masaryk University Brno Czech Republic;

    International Clinical Research Center Center for Biomolecular and Cellular Engineering St. Anne’s University Hospital Brno CZ-62500 Brno Czech Republic;

    International Clinical Research Center Center for Biomolecular and Cellular Engineering St. Anne’s University Hospital Brno CZ-62500 Brno Czech Republic;

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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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