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Overexpression of eIF-5A2 in mice causes accelerated organismal aging by increasing chromosome instability

BACKGROUND: Amplification of 3q26 is one of the most frequent genetic alterations in many human malignancies. Recently, we isolated a novel oncogene eIF-5A2 within the 3q26 region. Functional study has demonstrated the oncogenic role of eIF-5A2 in the initiation and progression of human cancers. In...

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Autores principales: Chen, Muhan, Huang, Jian-Dong, Deng, Hong Kui, Dong, Suisui, Deng, Wen, Tsang, Sze Lan, Huen, Michael SY, Chen, Leilei, Zan, Tong, Zhu, Gui-Xia, Guan, Xin-Yuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3118894/
https://www.ncbi.nlm.nih.gov/pubmed/21612665
http://dx.doi.org/10.1186/1471-2407-11-199
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author Chen, Muhan
Huang, Jian-Dong
Deng, Hong Kui
Dong, Suisui
Deng, Wen
Tsang, Sze Lan
Huen, Michael SY
Chen, Leilei
Zan, Tong
Zhu, Gui-Xia
Guan, Xin-Yuan
author_facet Chen, Muhan
Huang, Jian-Dong
Deng, Hong Kui
Dong, Suisui
Deng, Wen
Tsang, Sze Lan
Huen, Michael SY
Chen, Leilei
Zan, Tong
Zhu, Gui-Xia
Guan, Xin-Yuan
author_sort Chen, Muhan
collection PubMed
description BACKGROUND: Amplification of 3q26 is one of the most frequent genetic alterations in many human malignancies. Recently, we isolated a novel oncogene eIF-5A2 within the 3q26 region. Functional study has demonstrated the oncogenic role of eIF-5A2 in the initiation and progression of human cancers. In the present study, we aim to investigate the physiological and pathological effect of eIF-5A2 in an eIF-5A2 transgenic mouse model. METHODS: An eIF-5A2 transgenic mouse model was generated using human eIF-5A2 cDNA. The eIF-5A2 transgenic mice were characterized by histological and immunohistochemistry analyses. The aging phenotypes were further characterized by wound healing, bone X-ray imaging and calcification analysis. Mouse embryo fibroblasts (MEF) were isolated to further investigate molecular mechanism of eIF-5A2 in aging. RESULTS: Instead of resulting in spontaneous tumor formation, overexpression of eIF-5A2 accelerated the aging process in adult transgenic mice. This included decreased growth rate and body weight, shortened life span, kyphosis, osteoporosis, delay of wound healing and ossification. Investigation of the correlation between cellular senescence and aging showed that cellular senescence is not required for the aging phenotypes in eIF-5A2 mice. Interestingly, we found that activation of eIF-5A2 repressed p19 level and therefore destabilized p53 in transgenic mouse embryo fibroblast (MEF) cells. This subsequently allowed for the accumulation of chromosomal instability, such as errors in cell dividing during metaphase and anaphase. Additionally, a significantly increase in number of aneuploidy cells (p < 0.05) resulted from an increase in the incidences of misaligned and lagging chromosomal materials, anaphase bridges, and micronuclei in the transgenic mice. CONCLUSION: These observations suggest that eIF-5A2 mouse models could accelerate organismal aging by increasing chromosome instability.
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spelling pubmed-31188942011-06-22 Overexpression of eIF-5A2 in mice causes accelerated organismal aging by increasing chromosome instability Chen, Muhan Huang, Jian-Dong Deng, Hong Kui Dong, Suisui Deng, Wen Tsang, Sze Lan Huen, Michael SY Chen, Leilei Zan, Tong Zhu, Gui-Xia Guan, Xin-Yuan BMC Cancer Research Article BACKGROUND: Amplification of 3q26 is one of the most frequent genetic alterations in many human malignancies. Recently, we isolated a novel oncogene eIF-5A2 within the 3q26 region. Functional study has demonstrated the oncogenic role of eIF-5A2 in the initiation and progression of human cancers. In the present study, we aim to investigate the physiological and pathological effect of eIF-5A2 in an eIF-5A2 transgenic mouse model. METHODS: An eIF-5A2 transgenic mouse model was generated using human eIF-5A2 cDNA. The eIF-5A2 transgenic mice were characterized by histological and immunohistochemistry analyses. The aging phenotypes were further characterized by wound healing, bone X-ray imaging and calcification analysis. Mouse embryo fibroblasts (MEF) were isolated to further investigate molecular mechanism of eIF-5A2 in aging. RESULTS: Instead of resulting in spontaneous tumor formation, overexpression of eIF-5A2 accelerated the aging process in adult transgenic mice. This included decreased growth rate and body weight, shortened life span, kyphosis, osteoporosis, delay of wound healing and ossification. Investigation of the correlation between cellular senescence and aging showed that cellular senescence is not required for the aging phenotypes in eIF-5A2 mice. Interestingly, we found that activation of eIF-5A2 repressed p19 level and therefore destabilized p53 in transgenic mouse embryo fibroblast (MEF) cells. This subsequently allowed for the accumulation of chromosomal instability, such as errors in cell dividing during metaphase and anaphase. Additionally, a significantly increase in number of aneuploidy cells (p < 0.05) resulted from an increase in the incidences of misaligned and lagging chromosomal materials, anaphase bridges, and micronuclei in the transgenic mice. CONCLUSION: These observations suggest that eIF-5A2 mouse models could accelerate organismal aging by increasing chromosome instability. BioMed Central 2011-05-26 /pmc/articles/PMC3118894/ /pubmed/21612665 http://dx.doi.org/10.1186/1471-2407-11-199 Text en Copyright ©2011 Chen et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Chen, Muhan
Huang, Jian-Dong
Deng, Hong Kui
Dong, Suisui
Deng, Wen
Tsang, Sze Lan
Huen, Michael SY
Chen, Leilei
Zan, Tong
Zhu, Gui-Xia
Guan, Xin-Yuan
Overexpression of eIF-5A2 in mice causes accelerated organismal aging by increasing chromosome instability
title Overexpression of eIF-5A2 in mice causes accelerated organismal aging by increasing chromosome instability
title_full Overexpression of eIF-5A2 in mice causes accelerated organismal aging by increasing chromosome instability
title_fullStr Overexpression of eIF-5A2 in mice causes accelerated organismal aging by increasing chromosome instability
title_full_unstemmed Overexpression of eIF-5A2 in mice causes accelerated organismal aging by increasing chromosome instability
title_short Overexpression of eIF-5A2 in mice causes accelerated organismal aging by increasing chromosome instability
title_sort overexpression of eif-5a2 in mice causes accelerated organismal aging by increasing chromosome instability
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3118894/
https://www.ncbi.nlm.nih.gov/pubmed/21612665
http://dx.doi.org/10.1186/1471-2407-11-199
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