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DNA damage processing at telomeres: The ends justify the means

机译:端粒的DNA损伤处理:两端证明手段合理

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Telomeres at chromosome ends are nucleoprotein structures consisting of tandem TTAGGG repeats and a complex of proteins termed shelterin. DNA damage and repair at telomeres is uniquely influenced by the ability of telomeric DNA to form alternate structures including loops and G-quadruplexes, coupled with the ability of shelterin proteins to interact with and regulate enzymes in every known DNA repair pathway. The role of shelterin proteins in preventing telomeric ends from being falsely recognized and processed as DNA double strand breaks is well established. Here we focus instead on recent developments in understanding the roles of shelterin proteins and telomeric DNA sequence and structure in processing genuine damage at telomeres induced by endogenous and exogenous DNA damage agents. We will highlight advances in double strand break repair, base excision repair and nucleotide excision repair at telomeres, and will discuss important questions remaining in the field. (C) 2016 Elsevier B.V. All rights reserved.
机译:染色体末端的端粒是核蛋白结构,由串联的TTAGGG重复序列和称为外壳蛋白的蛋白复合物组成。端粒的DNA损伤和修复受到端粒DNA形成包括环和G-四链体的交替结构的能力的独特影响,再加上庇护蛋白与每个已知的DNA修复途径相互作用并调节酶的能力。由于DNA双链断裂,庇护蛋白在防止端粒末端被错误识别和加工中的作用已得到充分确立。在这里,我们将注意力集中在最近的发展上,以了解庇护蛋白和端粒DNA序列和结构在处理内源性和外源性DNA损伤剂诱导的端粒真正损伤中的作用。我们将重点介绍端粒的双链断裂修复,碱基切除修复和核苷酸切除修复的进展,并将讨论该领域中尚存的重要问题。 (C)2016 Elsevier B.V.保留所有权利。

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