Expression Profile of Cell Cycle-Related Genes in Human Fibroblasts Exposed Simultaneously to Radiation and Simulated Microgravity
Multiple unique environmental factors such as space radiation and microgravity (μ ) pose a serious threat to human gene stability during space travel. Recently, we reported that simultaneous exposure of human fibroblasts to simulated μ and radiation results in more chromosomal aberrations than in ce...
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Veröffentlicht in: | International journal of molecular sciences 2019-10, Vol.20 (19), p.4791 |
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Sprache: | eng |
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Zusammenfassung: | Multiple unique environmental factors such as space radiation and microgravity (μ
) pose a serious threat to human gene stability during space travel. Recently, we reported that simultaneous exposure of human fibroblasts to simulated μ
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 μ
. The expression of cell cycle-suppressing genes (
and
) decreased and that of cell cycle-promoting genes (
,
,
,
, and
) increased after C-ion irradiation under μ
. The cell may pass through the G
/S and G
checkpoints with DNA damage due to the combined effects of C-ions and μ
, suggesting that increased genomic instability might occur in space. |
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ISSN: | 1422-0067 1661-6596 1422-0067 |
DOI: | 10.3390/ijms20194791 |