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Coordination of the Ser2056 and Thr2609 Clusters of DNA-PKcs in Regulating Gamma Rays and Extremely Low Fluencies of Alpha-Particle Irradiation to G0/G1 Phase Cells

机译:Ser2056和Thr2609的DNA-PKcs簇在调节γ射线和对G0 / G1期细胞的α粒子辐照量极低通量方面的协调。

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摘要

The catalytic subunit of DNA dependent protein kinase (DNA-PKcs) and its kinase activity are critical for mediation of non-homologous end-joining (NHEJ) of DNA double-strand breaks (DSB) in mammalian cells after gamma-ray irradiation. Additionally, DNA-PKcs phosphorylations at the T2609 cluster and the S2056 cluster also affect DSB repair and cellular sensitivity to gamma radiation. Previously we reported that phosphorylations within these two regions affect not only NHEJ but also homologous recombination repair (HRR) dependent DSB repair. In this study, we further examine phenotypic effects on cells bearing various combinations of mutations within either or both regions. Effects studied included cell killing as well as chromosomal aberration induction after 0.5–8 Gy gamma-ray irradiation delivered to synchronized cells during the G0/G1 phase of the cell cycle. Blocking phosphorylation within the T2609 cluster was most critical regarding sensitization and depended on the number of available phosphorylation sites. It was also especially interesting that only one substitution of alanine in each of the two clusters separately abolished the restoration of wild-type sensitivity by DNA-PKcs. Similar patterns were seen for induction of chromosomal aberrations, reflecting their connection to cell killing. To study possible change in coordination between HRR and NHEJ directed repair in these DNA-PKcs mutant cell lines, we compared the induction of sister chromatid exchanges (SCEs) by very low fluencies of alpha particles with mutant cells defective in the HRR pathway that is required for induction of SCEs. Levels of true SCEs induced by very low fluence of alpha-particle irradiation normally seen in wild-type cells were only slightly decreased in the S2056 cluster mutants, but were completely abolished in the T2609 cluster mutants and were indistinguishable from levels seen in HRR deficient cells. Again, a single substitution in the S2056 together with a single substitution in the T2609 cluster abolished SCE formation and thus also effectively interferes with HRR.
机译:DNA依赖性蛋白激酶(DNA-PKcs)的催化亚基及其激酶活性对于介导γ射线照射后哺乳动物细胞中DNA双链断裂(DSB)的非同源末端连接(NHEJ)至关重要。此外,T2609簇和S2056簇上的DNA-PKcs磷酸化也会影响DSB修复和细胞对伽马辐射的敏感性。以前我们报道过这两个区域内的磷酸化不仅影响NHEJ,而且影响依赖于同源重组修复(HRR)的DSB修复。在这项研究中,我们进一步检查了在一个或两个区域内携带各种突变组合的细胞的表型效应。研究的影响包括细胞杀伤以及在细胞周期的G0 / G1阶段将0.5-8 Gyγ射线辐照传送至同步细胞后引起的染色体畸变。关于敏化,在T2609簇内阻断磷酸化是最关键的,并取决于可用的磷酸化位点的数量。还特别有趣的是,在两个簇中的每个簇中仅丙氨酸的取代分别消除了DNA-PKcs对野生型敏感性的恢复。诱导染色体畸变的模式相似,反映了它们与细胞杀伤的关系。为了研究在这些DNA-PKcs突变细胞系中HRR和NHEJ定向修复之间的协调性可能发生的变化,我们比较了非常低的α效率通量与在HRR途径中需要缺陷的突变细胞对姐妹染色单体交换(SCE)的诱导作用。用于诱导SCE。通常在野生型细胞中看到的由非常低的α粒子辐射通量诱导的真实SCE的水平在S2056簇突变体中仅略有降低,但在T2609簇突变体中被完全废除,与HRR缺陷细胞中的水平没有区别。 。同样,S2056中的单个取代与T2609簇中的单个取代消除了SCE的形成,因此也有效地干扰了HRR。

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