Cloning of Hynobius lichenatus (Tohoku hynobiid salamander) p53 and analysis of its expression in response to radiation
Abstract Background Caudata species such as salamanders are easily affected by environmental changes, which can drastically reduce their population. The effects of acute X-rays and chronic γ-irradiation on Hynobius lichenatus, the Japanese Tohoku hynobiid salamander, are known. However, the expressi...
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doaj-f5177c44719d4b2c9081e489fdccdae02020-11-25T03:59:42ZengBMCBMC Genetics1471-21562020-05-0121111410.1186/s12863-020-00856-0Cloning of Hynobius lichenatus (Tohoku hynobiid salamander) p53 and analysis of its expression in response to radiationToshiki Kamada0Yumi Une1Kumi Matsui2Shoichi Fuma3Teruo Ikeda4Mariko Okamoto5Laboratory of Veterinary Immunology, Department of Veterinary Medicine, School of Veterinary Medicine, Azabu UniversityLaboratory of Veterinary Pathology, Faculty of Veterinary Medicine, Imabari campus, Okayama University of ScienceLaboratory of Veterinary Physiology 1, Department of Veterinary Medicine, School of Veterinary Medicine, Azabu UniversityDepartment of Radioecology and Fukushima Project, Center for Advanced Radiation Emergency Medicine, Quantum Medical Science Directorate, National Institutes for Quantum and Radiological Science and TechnologyLaboratory of Veterinary Immunology, Department of Veterinary Medicine, School of Veterinary Medicine, Azabu UniversityLaboratory of Veterinary Immunology, Department of Veterinary Medicine, School of Veterinary Medicine, Azabu UniversityAbstract Background Caudata species such as salamanders are easily affected by environmental changes, which can drastically reduce their population. The effects of acute X-rays and chronic γ-irradiation on Hynobius lichenatus, the Japanese Tohoku hynobiid salamander, are known. However, the expression of radiation-inducible genes, such as the DNA-damage checkpoint response gene p53, has not been analyzed in H. lichenatus. This has not occurred because there is no established method for mRNA quantification in H. lichenatus due to a lack of information on available nucleotide sequences corresponding to both radiation-inducible genes and endogenous control genes such as ACTB (β-actin). Results In this study, we aimed to evaluate the effects of radiation on gene expression in H. lichenatus. Using RNA extracted from irradiated salamanders, we performed rapid amplification of cDNA ends (RACE) and cloned H. lichenatus β-actin, glyceraldehyde-3-phosphate dehydrogenase (GAPDH) and p53. We confirmed that the cloned cDNAs were able to synthesize salamander proteins by western blotting after transfection into cultured HEK293 cells. Proliferation assays using HEK293 cells stably expressing H. lichenatus p53 protein showed that this protein has antiproliferative effects, similar to that of mammalian p53. Furthermore, RT-qPCR analysis using gene-specific primers revealed that p53 mRNA expression in H. lichenatus was upregulated upon exposure to radiation. Conclusion Our results suggest that H. lichenatus p53 protein take an important role in regulating the cellular responses to various stimuli as mammalian p53 does. Furthermore, our study provides novel data to select appropriate primers to analyze internal control mRNA expression in H. lichenatus and to evaluate p53 expression as a marker of radiation and environmental stimuli.http://link.springer.com/article/10.1186/s12863-020-00856-0β-ActinGAPDHHynobius lichenatus (Japanese Tohoku hynobiid salamander)p53Radiation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Toshiki Kamada Yumi Une Kumi Matsui Shoichi Fuma Teruo Ikeda Mariko Okamoto |
spellingShingle |
Toshiki Kamada Yumi Une Kumi Matsui Shoichi Fuma Teruo Ikeda Mariko Okamoto Cloning of Hynobius lichenatus (Tohoku hynobiid salamander) p53 and analysis of its expression in response to radiation BMC Genetics β-Actin GAPDH Hynobius lichenatus (Japanese Tohoku hynobiid salamander) p53 Radiation |
author_facet |
Toshiki Kamada Yumi Une Kumi Matsui Shoichi Fuma Teruo Ikeda Mariko Okamoto |
author_sort |
Toshiki Kamada |
title |
Cloning of Hynobius lichenatus (Tohoku hynobiid salamander) p53 and analysis of its expression in response to radiation |
title_short |
Cloning of Hynobius lichenatus (Tohoku hynobiid salamander) p53 and analysis of its expression in response to radiation |
title_full |
Cloning of Hynobius lichenatus (Tohoku hynobiid salamander) p53 and analysis of its expression in response to radiation |
title_fullStr |
Cloning of Hynobius lichenatus (Tohoku hynobiid salamander) p53 and analysis of its expression in response to radiation |
title_full_unstemmed |
Cloning of Hynobius lichenatus (Tohoku hynobiid salamander) p53 and analysis of its expression in response to radiation |
title_sort |
cloning of hynobius lichenatus (tohoku hynobiid salamander) p53 and analysis of its expression in response to radiation |
publisher |
BMC |
series |
BMC Genetics |
issn |
1471-2156 |
publishDate |
2020-05-01 |
description |
Abstract Background Caudata species such as salamanders are easily affected by environmental changes, which can drastically reduce their population. The effects of acute X-rays and chronic γ-irradiation on Hynobius lichenatus, the Japanese Tohoku hynobiid salamander, are known. However, the expression of radiation-inducible genes, such as the DNA-damage checkpoint response gene p53, has not been analyzed in H. lichenatus. This has not occurred because there is no established method for mRNA quantification in H. lichenatus due to a lack of information on available nucleotide sequences corresponding to both radiation-inducible genes and endogenous control genes such as ACTB (β-actin). Results In this study, we aimed to evaluate the effects of radiation on gene expression in H. lichenatus. Using RNA extracted from irradiated salamanders, we performed rapid amplification of cDNA ends (RACE) and cloned H. lichenatus β-actin, glyceraldehyde-3-phosphate dehydrogenase (GAPDH) and p53. We confirmed that the cloned cDNAs were able to synthesize salamander proteins by western blotting after transfection into cultured HEK293 cells. Proliferation assays using HEK293 cells stably expressing H. lichenatus p53 protein showed that this protein has antiproliferative effects, similar to that of mammalian p53. Furthermore, RT-qPCR analysis using gene-specific primers revealed that p53 mRNA expression in H. lichenatus was upregulated upon exposure to radiation. Conclusion Our results suggest that H. lichenatus p53 protein take an important role in regulating the cellular responses to various stimuli as mammalian p53 does. Furthermore, our study provides novel data to select appropriate primers to analyze internal control mRNA expression in H. lichenatus and to evaluate p53 expression as a marker of radiation and environmental stimuli. |
topic |
β-Actin GAPDH Hynobius lichenatus (Japanese Tohoku hynobiid salamander) p53 Radiation |
url |
http://link.springer.com/article/10.1186/s12863-020-00856-0 |
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