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Chromosome Healing Is Promoted by the Telomere Cap Component Hiphop in Drosophila

机译:果蝇中端粒帽成分的连锁反应促进了染色体的修复

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摘要

The addition of a new telomere onto a chromosome break, a process termed healing, has been studied extensively in organisms that utilize telomerase to maintain their telomeres. In comparison, relatively little is known about how new telomeres are constructed on broken chromosomes in organisms that do not use telomerase. Chromosome healing was studied in somatic and germline cells of Drosophila melanogaster, a nontelomerase species. We observed, for the first time, that broken chromosomes can be healed in somatic cells. In addition, overexpression of the telomere cap component Hiphop increased the survival of somatic cells with broken chromosomes, while the cap component HP1 did not, and overexpression of the cap protein HOAP decreased their survival. In the male germline, Hiphop overexpression greatly increased the transmission of healed chromosomes. These results indicate that Hiphop can stimulate healing of a chromosome break. We suggest that this reflects a unique function of Hiphop: it is capable of seeding formation of a new telomeric cap on a chromosome end that lacks a telomere.
机译:在利用端粒酶维持其端粒的生物体中,已经广泛研究了在染色体断裂上添加新的端粒的过程,即所谓的愈合过程。相比之下,关于在不使用端粒酶的生物体中如何在断裂的染色体上构建新的端粒的知之甚少。研究了果蝇果蝇(一种非端粒酶物种)的体细胞和生殖细胞的染色体修复。我们第一次观察到,破碎的染色体可以在体细胞中治愈。另外,端粒帽组分Hiphop的过表达增加了具有断裂染色体的体细胞的存活,而帽组分HP1没有,并且帽蛋白HOAP的过表达降低了它们的存活。在雄性种系中,Hiphop过表达极大地增加了治愈染色体的传递。这些结果表明,Hiphop可以刺激染色体断裂的愈合。我们建议,这反映了Hiphop的独特功能:它能够在缺乏端粒的染色体末端播种新的端粒帽。

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