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短双链 DNA(≤40bp)影响修复途径选择。

Short Double-Stranded DNA (≤40-bp) Affects Repair Pathway Choice.

机构信息

Department of Radiation Oncology, Winship Cancer Institute, Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

Int J Mol Sci. 2023 Jul 23;24(14):11836. doi: 10.3390/ijms241411836.

Abstract

To repair ionizing radiation (IR)-induced double strand breaks (DSBs), mammalian cells primarily use canonical non-homologous end-joining (cNHEJ), the homologous recombination (HR) pathway, and the alternative non-homologous end-joining (aEJ) as a backup. These pathways function either compensatively or competitively. High linear energy transfer (LET) compared to low-LET IR kills more cells at the same doses by inhibiting only cNHEJ, but not HR or aEJ. The mechanism remains unclear. The activation of each repair pathway requires the binding of different proteins to DNA fragments of varying lengths. We previously observed an increased generation of small DNA fragments (≤40 bp) in cells following high-LET IR compared to low-LET IR, suggesting that short DNA fragments were one of the major factors interfering with cNHEJ. To provide direct evidence, here we compare the efficiencies of cNHEJ, HR, or aEJ in repairing DSBs containing 30- or 60-bp fragments in vitro and in cells. We show that only cNHEJ but not HR or a-EJ was inefficient for repairing DSBs with 30-bp fragments compared to 60-bp ones, which strongly supports our hypothesis. These results not only enhance our understanding of the DSB repair pathway choice but also hold potential benefits for protection against high-LET IR-induced damage or improving high-LET radiotherapy.

摘要

为了修复电离辐射(IR)诱导的双链断裂(DSB),哺乳动物细胞主要利用经典非同源末端连接(cNHEJ)、同源重组(HR)途径和替代非同源末端连接(aEJ)作为备份。这些途径要么是互补的,要么是竞争的。与低 LET-IR 相比,高 LET-IR 通过仅抑制 cNHEJ 而不抑制 HR 或 aEJ,在相同剂量下杀死更多的细胞。其机制尚不清楚。每个修复途径的激活都需要不同的蛋白质与不同长度的 DNA 片段结合。我们之前观察到,与低 LET-IR 相比,高 LET-IR 后细胞中小 DNA 片段(≤40bp)的产生增加,这表明短 DNA 片段是干扰 cNHEJ 的主要因素之一。为了提供直接证据,我们在这里比较了体外和细胞中修复含有 30 或 60bp 片段的 DSB 时 cNHEJ、HR 或 aEJ 的效率。我们发现,与 60bp 片段相比,只有 cNHEJ 而不是 HR 或 aEJ 对修复 30bp 片段的 DSB 效率较低,这强烈支持了我们的假设。这些结果不仅增强了我们对 DSB 修复途径选择的理解,而且对预防高 LET-IR 诱导的损伤或提高高 LET 放疗具有潜在的益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1661/10380458/89b70c2178f1/ijms-24-11836-g001.jpg

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