| Literature DB >> 32917057 |
Yujie Yan1, Kunlan Zhang1, Guangming Zhou1, Wentao Hu1.
Abstract
High-energy and high-atom-number (HZE) space radiation poses an inevitable potential threat to astronauts on deep space exploration missions. Compared with low-LET radiation, high-energy and high-LET radiation in space is more efficient in inducing clustered DNA damage with more serious biological consequences, such as carcinogenesis, central nervous system injury and degenerative disease. Space radiation also causes epigenetic changes in addition to inducing damage at the DNA level. Considering the important roles of microRNAs in the regulation of biological responses of radiation, we systematically reviewed both expression profiling and functional studies relating to microRNAs responding to space radiation as well as to space compound environment. Finally, the directions for improvement of the research related to microRNAs responding to space radiation are proposed. A better understanding of the functions and underlying mechanisms of the microRNAs responding to space radiation is of significance to both space radiation risk assessment and therapy development for lesions caused by space radiation.Entities:
Keywords: microRNA; risk assessment; space radiation
Mesh:
Substances:
Year: 2020 PMID: 32917057 PMCID: PMC7555309 DOI: 10.3390/ijms21186603
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Figure 1Basic miRNA processing pathway.
Studies relating to miRNAs responding to space radiation.
| Studied Materials | Radiation | MiRNA Expression | Target Proteins/Pathways | MiRNA Detection Methods | Predicted Biological Consequences | Refs |
|---|---|---|---|---|---|---|
| Testis, brain and liver tissues of Balb/C male mice, 4 h after exposure | 2 Gy whole-body proton irradiation | Dysregulation of 14 mouse testis, 8 liver, and 8 brain miRNAs, with 20 up- and 10 down-regulated | - | NGS for profiling, no validation | Regulation of DNA damage response and tumorigenesis | [ |
| Blood of C57BL/6 male mice, 6 h/24 h after exposure | 0.5 or 1.0 Gy whole-body proton irradiation | Dysregulation of 26 miRNAs, with 5 up- and 21 down-regulated | - | qRT-PCR | Regulation of nucleic acid metabolic process and system development | [ |
| Bystander 3-D artificial human tissues, 8 h, 1, 2, 3, 4, 5 and 7 days post-IR | 5.4 Gy α particle irradiation for the first layer of cells | Dysregulation of 12 miRNAs, with 7 up- and 5 down-regulated | DNMT3a, MCL1, BCL2, RB1, E2F1/ apoptosis pathway, TNF signaling pathway, cellular senescence pathway | miRNA microarray for profiling, no validation | Apoptosis, cell cycle deregulation and DNA hypomethylation | [ |
| Three human cell lines (A549, THP-1 and HFL), 24 h/72 h after exposure | 0.5, 1.0 or 1.5 Gy α particle irradiation | Dysregulation of 13 miRNAs, with 8 up- and 5 down-regulated | - | miRNA microarray for profiling, qRT-PCR for validation | Regulation of ribosomal assembly, lung carcinoma development, TGF-β signaling, cell communication, etc | [ |
| Immortalized human bronchial epithelial cells (BEAS-2B), 40 passages after exposure | 0.1, 0.25, 0.5 or 1 Gy α particle irradiation | Dysregulation of 68 miRNAs, with 20 up- and 48 down-regulated | PEG10, | miRNA microarray for profiling, qRT-PCR for validation | Promotion of malignant transformation | [ |
| Blood of C57BL/6 male mice, 6 h/24 h after exposure | Whole-body irradiation by 0.1 or 0.5 Gy iron ions | Dysregulation of 14 miRNAs, with 6 up- and 8 down-regulated | - | qRT-PCR | Regulation of transcription, nucleic-acid metabolism, and development | [ |
| Testis of Swiss-Webster male mice, 4 weeks after exposure | Whole-body irradiation by 2 Gy carbon ions | Dysregulation of 70 miRNAs, with 56 up- and 14 down-regulated | - | NGS for profiling, qRT-PCR for validation | Apoptosis of spermatogenic cells | [ |
| Blood of Kunming male mice, 24 h after exposure | Whole-body irradiation by 0.5 or 2 Gy carbon ions | Dysregulation of 12 miRNAs, with 6 up- and 6 down-regulated | - | miRNA microarray for profiling, qRT-PCR for validation | Regulation of cell cycle transition, immune system and carcinogenesis | [ |
| Blood of Kunming male mice, 24 h after exposure | Whole-body irradiation by 0.25 or 0.5 Gy carbon ions | Upregulation of let-7a-5p and miR-200b-5p | - | miRNA microarray for profiling, qRT-PCR for validation | - | [ |
Studies relating to miRNAs responding to space compound environment.
| Studied Materials | Experimental Treatments | MiRNA Expression | Target Proteins/Pathways | MiRNA Detection Methods | Predicted Biological Consequences | Refs |
|---|---|---|---|---|---|---|
| Human peripheral blood lymphocytes | 4 or 24 h incubation in modeled microgravity after irradiation with 0.2 or 2 Gy γ-rays | Downregulation of let-7i*, miR-7, miR-7-1*, miR-144, miR-200a, miR-598, miR-650, upregulation of miR-27a, miR-99b by combined action | ATM, FANCF, STAT5A, BAX/DNA damage response pathway, p53 pathway | miRNA microarray for profiling, qRT-PCR for validation | Modeled microgravity inhibits the DNA-damage response to IR | [ |
| Human lymphoblastoid TK6 cells | 24 h incubation under simulated microgravity after irradiation with 2 Gy γ-rays | Hsa-miR-15b was downregulated while hsa-miR-221 was upregulated by combined action | Apoptosis pathway, NF-κB pathway, TNF signaling pathway | miRNA microarray for profiling, qRT-PCR for validation | Regulation of apoptosis process and immune response by combined action | [ |
| 7 h after a 16.5-day shuttle spaceflight on Shenzhou-8, with 1.92 mGy space radiation in static slot and 2.27 mGy in centrifuge slot | The expression of 23 miRNAs changed when exposed to a space synthetic environment and a space radiation environment | Capg-2, deb-1, ZK180.5, egl-5, C07H4.1, wrk-1, nep-11, odr-2, | miRNA microarray for profiling, qRT-PCR for validation | Regulation of embryonic development, growth and body morphogenesis, biological behavioural responses, DNA damage response, etc | [ | |
| 7 h after a 16.5-day shuttle spaceflight on Shenzhou-8, with 1.92 mGy space radiation in static slot and 2.27 mGy in centrifuge slot | Differential miRNA expression increased from 43 (ground control condition) to 57 and 91 in spaceflight and spaceflight control conditions | Ced-10, drp-1, hsp-1/ DNA damage response pathway, p53 pathway | miRNA microarray for profiling, qRT-PCR for validation | Regulation of apoptosis, neurogenesis larval development, ATP metabolism and GTPase-mediated signal transduction | [ |
The asterisk (*) indicates a miRNA expressed at low levels relative to the miRNA from the opposite arm of the same pre-miRNA hairpin.