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Expression Profile of Cell Cycle-Related Genes in Human Fibroblasts Exposed Simultaneously to Radiation and Simulated Microgravity

机译:同时暴露于辐射和模拟微重力的人类成纤维细胞中细胞周期相关基因的表达谱

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摘要

Multiple unique environmental factors such as space radiation and microgravity (μG) pose a serious threat to human gene stability during space travel. Recently, we reported that simultaneous exposure of human fibroblasts to simulated μG and radiation results in more chromosomal aberrations than in cells exposed to radiation alone. However, the mechanisms behind this remain unknown. The purpose of this study was thus to obtain comprehensive data on gene expression using a three-dimensional clinostat synchronized to a carbon (C)-ion or X-ray irradiation system. Human fibroblasts (1BR-hTERT) were maintained under standing or rotating conditions for 3 or 24 h after synchronized C-ion or X-ray irradiation at 1 Gy as part of a total culture time of 2 days. Among 57,773 genes analyzed with RNA sequencing, we focused particularly on the expression of 82 cell cycle-related genes after exposure to the radiation and simulated μG. The expression of cell cycle-suppressing genes (ABL1 and CDKN1A) decreased and that of cell cycle-promoting genes (CCNB1, CCND1, KPNA2, MCM4, MKI67, and STMN1) increased after C-ion irradiation under μG. The cell may pass through the G1/S and G2 checkpoints with DNA damage due to the combined effects of C-ions and μG, suggesting that increased genomic instability might occur in space.
机译:太空辐射和微重力(μG)等多种独特的环境因素在太空旅行中严重威胁着人类基因的稳定性。最近,我们报道了人类成纤维细胞同时暴露于模拟μG和辐射下会导致比单独暴露于辐射下的细胞更多的染色体畸变。但是,其背后的机制仍然未知。因此,本研究的目的是使用与碳(C)离子或X射线辐照系统同步的三维斜变仪获得有关基因表达的全面数据。将人类成纤维细胞(1BR-hTERT)在1 Gy的同步C离子或X射线辐射下在直立或旋转条件下保持3或24 h,作为2天总培养时间的一部分。在通过RNA测序分析的57,773个基因中,我们特别关注了暴露于辐射和模拟μG后与82个细胞周期相关基因的表达。在μG下进行C离子辐照后,抑制细胞周期的基因(ABL1和CDKN1A)的表达减少,而促进细胞周期的基因(CCNB1,CCND1,KPNA2,MCM4,MKI67和STMN1)的表达增加。由于C离子和μG的共同作用,细胞可能会通过G1 / S和G2检查点而受到DNA损伤,这表明太空中可能发生基因组不稳定性增加。

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