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X 射线激活初级细胞中端粒同源重组介导的修复。

X-rays Activate Telomeric Homologous Recombination Mediated Repair in Primary Cells.

机构信息

Department of Science, University of Rome "ROMA TRE", 00146 Rome, Italy.

Department of Pharmacology & Chemical Biology, UPMC Hillman Cancer Center, Pittsburgh, PA 15232, USA.

出版信息

Cells. 2019 Jul 12;8(7):708. doi: 10.3390/cells8070708.

Abstract

Cancer cells need to acquire telomere maintenance mechanisms in order to counteract progressive telomere shortening due to multiple rounds of replication. Most human tumors maintain their telomeres expressing telomerase whereas the remaining 15%-20% utilize the alternative lengthening of telomeres (ALT) pathway. Previous studies have demonstrated that ionizing radiations (IR) are able to modulate telomere lengths and to transiently induce some of the ALT-pathway hallmarks in normal primary fibroblasts. In the present study, we investigated the telomere length modulation kinetics, telomeric DNA damage induction, and the principal hallmarks of ALT over a period of 13 days in X-ray-exposed primary cells. Our results show that X-ray-treated cells primarily display telomere shortening and telomeric damage caused by persistent IR-induced oxidative stress. After initial telomere erosion, we observed a telomere elongation that was associated to the transient activation of a homologous recombination (HR) based mechanism, sharing several features with the ALT pathway observed in cancer cells. Data indicate that telomeric damage activates telomeric HR-mediated repair in primary cells. The characterization of HR-mediated telomere repair in normal cells may contribute to the understanding of the ALT pathway and to the identification of novel strategies in the treatment of ALT-positive cancers.

摘要

癌细胞需要获得端粒维持机制,以抵消由于多次复制导致的端粒逐渐缩短。大多数人类肿瘤通过表达端粒酶来维持端粒,而其余的 15%-20%则利用端粒的替代性延长(ALT)途径。先前的研究表明,电离辐射(IR)能够调节端粒长度,并在正常原代成纤维细胞中短暂诱导 ALT 途径的一些特征。在本研究中,我们在 X 射线暴露的原代细胞中研究了 13 天内端粒长度调节动力学、端粒 DNA 损伤诱导和 ALT 的主要特征。我们的结果表明,X 射线处理的细胞主要表现为端粒缩短和由持续的 IR 诱导的氧化应激引起的端粒损伤。在初始端粒侵蚀后,我们观察到端粒延长,这与同源重组(HR)为基础的机制的瞬时激活相关,该机制与在癌细胞中观察到的 ALT 途径具有几个共同特征。数据表明,端粒损伤激活了原代细胞中端粒 HR 介导的修复。正常细胞中 HR 介导的端粒修复的表征可能有助于理解 ALT 途径,并确定治疗 ALT 阳性癌症的新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0e9/6678842/96e61be91e40/cells-08-00708-g001.jpg

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