Szumiel I
Department of Radiology and Health Protection, Institute of Nuclear Chemistry and Technology, Warsaw, Poland.
Int J Radiat Biol. 2005 May;81(5):353-65. doi: 10.1080/09553000500143534.
The aim was to review and summarize the results of 40 years of study concerning the response to ionizing radiation of the pair of L5178Y (LY) sublines, LY-R and LY-S, that differ in sensitivity to various DNA-damaging agents, among them X- and gamma-rays. The reviewed data indicate the key importance of DNA damage repair and fixation for the ultimate fate of the irradiated LY cell. The cause of slow double-strand break (DSB) repair in LY-S cells is not identified, but a defect in non-homologous end-joining (NHEJ) would explain most features of the cellular response of LY-S cells to irradiation, as compared with repair-competent LY-R cells. The most prominent features are the very high radiosensitivity of G1 cells, extensive poly(ADP-ribose)-dependent damage fixation, long G2 arrest, considerable chromosomal damage seen as premature chromatin condensation (PCC) fragments and aberrations in metaphase cells. The main cause of radiosensitivity difference between LY sublines is in DNA repair/damage fixation ability. At the level of damage corresponding to a comparable lethal effect, the type of death differs between LY sublines; LY-S cells die in considerably greater proportion by apoptosis than LY-R cells, whereas the latter die in greater proportion by necrosis. This observation is consistent with differential expression of proteins that are pro- or anti-apoptotic. The prominent role of poly(ADP-ribosylation) in the response of LY-S cells apparently is connected with damage fixation, but is in contrast to other cell lines hypersensitive to X- or gamma-radiation with DSB repair defects.
目的是回顾和总结40年以来对L5178Y(LY)亚系LY-R和LY-S细胞对电离辐射反应的研究结果,这两个亚系对各种DNA损伤剂(包括X射线和γ射线)的敏感性不同。所回顾的数据表明,DNA损伤修复和固定对于受辐照LY细胞的最终命运至关重要。虽然尚未确定LY-S细胞双链断裂(DSB)修复缓慢的原因,但与具有修复能力的LY-R细胞相比,非同源末端连接(NHEJ)缺陷可以解释LY-S细胞对辐射的细胞反应的大多数特征。最显著的特征是G1期细胞的极高放射敏感性、广泛的聚(ADP-核糖)依赖性损伤固定、长时间的G2期阻滞、大量染色体损伤(表现为早凝染色质(PCC)片段)以及中期细胞的畸变。LY亚系之间放射敏感性差异的主要原因在于DNA修复/损伤固定能力。在对应于可比致死效应的损伤水平上,LY亚系之间的死亡类型有所不同;LY-S细胞通过凋亡死亡的比例明显高于LY-R细胞,而后者通过坏死死亡的比例更高。这一观察结果与促凋亡或抗凋亡蛋白的差异表达一致。聚(ADP-核糖基化)在LY-S细胞反应中的突出作用显然与损伤固定有关,但与其他对X射线或γ射线敏感且存在DSB修复缺陷的细胞系形成对比。