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ODP281 JDP2 Interacts with MDM2 and Decreases MDM2-Mediated p53 Repression

JDP2 and ATF3 belong to the family of AP-1 protein. JDP2, a transcription factor, can bind to AP-1 site as well as cAMP responsive element (CRE) site in numerous cis-elements of the target genes. JDP2 has been shown to be involved in cancer development and cell-cycle regulation. Previously, we had s...

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Autores principales: Yang, William, Wang, Chiung-Min, Yang, Richard, Yang, Wei-Hsiung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9627016/
http://dx.doi.org/10.1210/jendso/bvac150.936
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author Yang, William
Wang, Chiung-Min
Yang, Richard
Yang, Wei-Hsiung
author_facet Yang, William
Wang, Chiung-Min
Yang, Richard
Yang, Wei-Hsiung
author_sort Yang, William
collection PubMed
description JDP2 and ATF3 belong to the family of AP-1 protein. JDP2, a transcription factor, can bind to AP-1 site as well as cAMP responsive element (CRE) site in numerous cis-elements of the target genes. JDP2 has been shown to be involved in cancer development and cell-cycle regulation. Previously, we had shown that JDP2 activates Mc2r transcriptional activity. Since ATF3 and JDP2 share high similarity in C-terminal domains with identities of 65% and ATF3 can bind to p53 and regulate p53 transcriptional activity and stability, we hypothesized that JDP2 may have ability to regulate p53 and MDM2 (the main regulator of p53). Herein, we demonstrate for the first time the relationship between JDP2 and MDM2. First, we found that JDP2 can directly bind to MDM2. Secondly, though ATF3 dose-dependently increases MDM2 level, JDP2 dose-dependently decreases MDM2 level. Moreover, the C-terminus of JDP2 is required for regulation of MDM2 level. Finally, using p53RE-Luc (14X) for p53 transactivation study, while MDM2 decreases p53 transactivation, JDP2 dose-dependently abolishes MDM2-mediated p53 repression. Taken together, our results demonstrate that JDP2 directly binds to MDM2 and reduces MDM2-mediated p53 repression, suggesting that JDP2 is a novel regulator of MDM2. Since p53-MDM2 pathway is an important regulator in endocrinology and reproduction, our finding provides a new layer of regulatory mechanism for fertility, tumor suppression, and longevity. Presentation: No date and time listed
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spelling pubmed-96270162022-11-03 ODP281 JDP2 Interacts with MDM2 and Decreases MDM2-Mediated p53 Repression Yang, William Wang, Chiung-Min Yang, Richard Yang, Wei-Hsiung J Endocr Soc Genetics & Development JDP2 and ATF3 belong to the family of AP-1 protein. JDP2, a transcription factor, can bind to AP-1 site as well as cAMP responsive element (CRE) site in numerous cis-elements of the target genes. JDP2 has been shown to be involved in cancer development and cell-cycle regulation. Previously, we had shown that JDP2 activates Mc2r transcriptional activity. Since ATF3 and JDP2 share high similarity in C-terminal domains with identities of 65% and ATF3 can bind to p53 and regulate p53 transcriptional activity and stability, we hypothesized that JDP2 may have ability to regulate p53 and MDM2 (the main regulator of p53). Herein, we demonstrate for the first time the relationship between JDP2 and MDM2. First, we found that JDP2 can directly bind to MDM2. Secondly, though ATF3 dose-dependently increases MDM2 level, JDP2 dose-dependently decreases MDM2 level. Moreover, the C-terminus of JDP2 is required for regulation of MDM2 level. Finally, using p53RE-Luc (14X) for p53 transactivation study, while MDM2 decreases p53 transactivation, JDP2 dose-dependently abolishes MDM2-mediated p53 repression. Taken together, our results demonstrate that JDP2 directly binds to MDM2 and reduces MDM2-mediated p53 repression, suggesting that JDP2 is a novel regulator of MDM2. Since p53-MDM2 pathway is an important regulator in endocrinology and reproduction, our finding provides a new layer of regulatory mechanism for fertility, tumor suppression, and longevity. Presentation: No date and time listed Oxford University Press 2022-11-01 /pmc/articles/PMC9627016/ http://dx.doi.org/10.1210/jendso/bvac150.936 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of the Endocrine Society. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs licence (https://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial reproduction and distribution of the work, in any medium, provided the original work is not altered or transformed in any way, and that the work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Genetics & Development
Yang, William
Wang, Chiung-Min
Yang, Richard
Yang, Wei-Hsiung
ODP281 JDP2 Interacts with MDM2 and Decreases MDM2-Mediated p53 Repression
title ODP281 JDP2 Interacts with MDM2 and Decreases MDM2-Mediated p53 Repression
title_full ODP281 JDP2 Interacts with MDM2 and Decreases MDM2-Mediated p53 Repression
title_fullStr ODP281 JDP2 Interacts with MDM2 and Decreases MDM2-Mediated p53 Repression
title_full_unstemmed ODP281 JDP2 Interacts with MDM2 and Decreases MDM2-Mediated p53 Repression
title_short ODP281 JDP2 Interacts with MDM2 and Decreases MDM2-Mediated p53 Repression
title_sort odp281 jdp2 interacts with mdm2 and decreases mdm2-mediated p53 repression
topic Genetics & Development
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9627016/
http://dx.doi.org/10.1210/jendso/bvac150.936
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