首页> 外文期刊>Nucleic Acids Research >The Drosophila telomere-capping protein Verrocchio binds single-stranded DNA and protects telomeres from DNA damage response
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The Drosophila telomere-capping protein Verrocchio binds single-stranded DNA and protects telomeres from DNA damage response

机译:果蝇端粒封端蛋白质Verrocchio结合单链DNA并保护端粒免受DNA损伤反应的影响

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摘要

Drosophila telomeres are sequence-independent structures maintained by transposition to chromosome ends of three specialized retroelements rather than by telomerase activity. Fly telomeres are protected by the terminin complex that includes the HOAP, HipHop, Moi and Ver proteins. These are fast evolving, non-conserved proteins that localize and function exclusively at telomeres, protecting them from fusion events. We have previously suggested that terminin is the functional analogue of shelterin, themulti-protein complex that protects human telomeres. Here, we use electrophoretic mobility shift assay (EMSA) and atomic force microscopy (AFM) to show that Ver preferentially binds single-stranded DNA (ssDNA) with no sequence specificity. We also show that Moi and Ver form a complex in vivo. Although these two proteins are mutually dependent for their localization at telomeres, Moi neither binds ssDNA nor facilitates Ver binding to ssDNA. Consistent with these results, we found that Ver-depleted telomeres form RPA and gamma H2AX foci, like the human telomeres lacking the ssDNA-binding POT1 protein. Collectively, our findings suggest that Drosophila telomeres possess a ssDNA overhang like the other eukaryotes, and that the terminin complex is architecturally and functionally similar to shelterin.
机译:果蝇端粒是通过转染到三种专用逆向的染色体末端而不是通过端粒酶活性维持的序列无关的结构。飞行端粒受到末端复合物的保护,包括HOAP,HIPHOP,MOI和VER蛋白质。这些是快速的不节约的蛋白质,其专门针对端粒定位和功能,保护它们免受融合事件。我们以前建议终止是保护人端粒的庇护所的功能性类似物。这里,我们使用电泳迁移率移位测定(EMSA)和原子力显微镜(AFM)来表明VER优先结合单链DNA(SSDNA),没有序列特异性。我们还显示MOI和Ver在体内形成一个复杂的复杂性。虽然这两种蛋白质相互依赖于其在端粒的定位,但MOI既不结合SSDNA也不促进与SSDNA的ver结合。与这些结果一致,我们发现ver-inpleted端粒形成RPA和γH2AX焦点,如人端粒缺乏SSDNA结合Pot1蛋白。统称,我们的研究结果表明,果蝇端粒体具有像其他真核生物一样的SSDNA悬垂,并且终点案复合物在架构上和功能上与避难所相似。

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  • 来源
    《Nucleic Acids Research》 |2017年第6期|共18页
  • 作者单位

    Sapienza Univ Roma Dipartimento Biol Biotecnol C Darwin I-00185 Rome Italy;

    Sapienza Univ Roma Dipartimento Biol Biotecnol C Darwin I-00185 Rome Italy;

    Sapienza Univ Roma Dipartimento Biol Biotecnol C Darwin I-00185 Rome Italy;

    Univ Exeter Coll Life &

    Environm Sci Biosci Exeter EX4 4QD Devon England;

    Univ Exeter Coll Life &

    Environm Sci Biosci Exeter EX4 4QD Devon England;

    Sapienza Univ Roma Dipartimento Biol Biotecnol C Darwin I-00185 Rome Italy;

    Sapienza Univ Roma Dipartimento Med Mol I-00185 Rome Italy;

    Sapienza Univ Roma Dipartimento Biol Biotecnol C Darwin I-00185 Rome Italy;

    Univ Exeter Coll Life &

    Environm Sci Biosci Exeter EX4 4QD Devon England;

    Sapienza Univ Roma Dipartimento Biol Biotecnol C Darwin I-00185 Rome Italy;

    Sapienza Univ Roma Dipartimento Biol Biotecnol C Darwin I-00185 Rome Italy;

    Sapienza Univ Roma Dipartimento Biol Biotecnol C Darwin I-00185 Rome Italy;

    Sapienza Univ Roma Dipartimento Biol Biotecnol C Darwin I-00185 Rome Italy;

    Sapienza Univ Roma Dipartimento Biol Biotecnol C Darwin I-00185 Rome Italy;

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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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