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Nanostructure of Clustered DNA Damage in Leukocytes after In-Solution Irradiation with the Alpha Emitter Ra-223

机译:α发射体Ra-223在溶液中辐照后白细胞中簇状DNA损伤的纳米结构

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摘要

Background: Cancer patients are increasingly treated with alpha-particle-emitting radiopharmaceuticals. At the subcellular level, alpha particles induce densely spaced ionizations and molecular damage. Induction of DNA lesions, especially clustered DNA double-strand breaks (DSBs), threatens a cell’s survival. Currently, it is under debate to what extent the spatial topology of the damaged chromatin regions and the repair protein arrangements are contributing. Methods: Super-resolution light microscopy (SMLM) in combination with cluster analysis of single molecule signal-point density regions of DSB repair markers was applied to investigate the nano-structure of DNA damage foci tracks of Ra-223 in-solution irradiated leukocytes. Results: Alpha-damaged chromatin tracks were efficiently outlined by γ-H2AX that formed large (super) foci composed of numerous 60–80 nm-sized nano-foci. Alpha damage tracks contained 60–70% of all γ-H2AX point signals in a nucleus, while less than 30% of 53BP1, MRE11 or p-ATM signals were located inside γ-H2AX damage tracks. MRE11 and p-ATM protein fluorescent tags formed focal nano-clusters of about 20 nm peak size. There were, on average, 12 (±9) MRE11 nanoclusters in a typical γ-H2AX-marked alpha track, suggesting a minimal number of MRE11-processed DSBs per track. Our SMLM data suggest regularly arranged nano-structures during DNA repair in the damaged chromatin domain.
机译:背景:癌症患者越来越多地使用发射α粒子的放射性药物治疗。在亚细胞水平上,α粒子会引起密集的电离和分子损伤。 DNA损伤的诱导,特别是簇状的DNA双链断裂(DSB),威胁着细胞的存活。目前,关于受损染色质区域的空间拓扑结构和修复蛋白排列的贡献程度尚有争议。方法:采用超分辨率光学显微镜(SMLM)结合DSB修复标记的单分子信号点密度区域的聚类分析,研究Ra​​-223溶液中辐照的白细胞DNA损伤灶轨迹的纳米结构。结果:γ-H2AX有效地勾勒了α-受损的染色质轨迹,形成了由许多60-80 nm大小的纳米焦点组成的大(超级)焦点。 Alpha损坏轨迹在原子核中包含所有γ-H2AX点信号的60-70%,而少于53%的53BP1,MRE11或​​p-ATM信号位于γ-H2AX损坏轨迹内。 MRE11和p-ATM蛋白荧光标签形成了约20 nm峰大小的聚焦纳米簇。在典型的γ-H2AX标记的alpha轨道中,平均有12(±9)个MRE11纳米簇,这表明每个轨道上经过MRE11处理的DSB数量最少。我们的SMLM数据表明,在受损染色质域的DNA修复过程中,纳米结构规则排列。

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