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A Transgenic Mouse Model of Pacak–Zhuang Syndrome with An Epas1 Gain-of-Function Mutation

We previously identified a novel syndrome in patients characterized by paraganglioma, somatostatinoma, and polycythemia. In these patients, polycythemia occurs long before any tumor develops, and tumor removal only partially corrects polycythemia, with recurrence occurring shortly after surgery. Gen...

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Autores principales: Wang, Herui, Cui, Jing, Yang, Chunzhang, Rosenblum, Jared S., Zhang, Qi, Song, Qi, Pang, Ying, Fang, Francia, Sun, Mitchell, Dmitriev, Pauline, Gilbert, Mark R., Eisenhofer, Graeme, Pacak, Karel, Zhuang, Zhengping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6562734/
https://www.ncbi.nlm.nih.gov/pubmed/31091718
http://dx.doi.org/10.3390/cancers11050667
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author Wang, Herui
Cui, Jing
Yang, Chunzhang
Rosenblum, Jared S.
Zhang, Qi
Song, Qi
Pang, Ying
Fang, Francia
Sun, Mitchell
Dmitriev, Pauline
Gilbert, Mark R.
Eisenhofer, Graeme
Pacak, Karel
Zhuang, Zhengping
author_facet Wang, Herui
Cui, Jing
Yang, Chunzhang
Rosenblum, Jared S.
Zhang, Qi
Song, Qi
Pang, Ying
Fang, Francia
Sun, Mitchell
Dmitriev, Pauline
Gilbert, Mark R.
Eisenhofer, Graeme
Pacak, Karel
Zhuang, Zhengping
author_sort Wang, Herui
collection PubMed
description We previously identified a novel syndrome in patients characterized by paraganglioma, somatostatinoma, and polycythemia. In these patients, polycythemia occurs long before any tumor develops, and tumor removal only partially corrects polycythemia, with recurrence occurring shortly after surgery. Genetic mosaicism of gain-of-function mutations of the EPAS1 gene (encoding HIF2α) located in the oxygen degradation domain (ODD), typically p.530–532, was shown as the etiology of this syndrome. The aim of the present investigation was to demonstrate that these mutations are necessary and sufficient for the development of the symptoms. We developed transgenic mice with a gain-of-function Epas1(A529V) mutation (corresponding to human EPAS1(A530V)), which demonstrated elevated levels of erythropoietin and polycythemia, a decreased urinary metanephrine-to-normetanephrine ratio, and increased expression of somatostatin in the ampullary region of duodenum. Further, inhibition of HIF2α with its specific inhibitor PT2385 significantly reduced erythropoietin levels in the mutant mice. However, polycythemia persisted after PT2385 treatment, suggesting an alternative erythropoietin-independent mechanism of polycythemia. These findings demonstrate the vital roles of EPAS1 mutations in the syndrome development and the great potential of the Epas1(A529V) animal model for further pathogenesis and therapeutics studies.
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spelling pubmed-65627342019-06-17 A Transgenic Mouse Model of Pacak–Zhuang Syndrome with An Epas1 Gain-of-Function Mutation Wang, Herui Cui, Jing Yang, Chunzhang Rosenblum, Jared S. Zhang, Qi Song, Qi Pang, Ying Fang, Francia Sun, Mitchell Dmitriev, Pauline Gilbert, Mark R. Eisenhofer, Graeme Pacak, Karel Zhuang, Zhengping Cancers (Basel) Article We previously identified a novel syndrome in patients characterized by paraganglioma, somatostatinoma, and polycythemia. In these patients, polycythemia occurs long before any tumor develops, and tumor removal only partially corrects polycythemia, with recurrence occurring shortly after surgery. Genetic mosaicism of gain-of-function mutations of the EPAS1 gene (encoding HIF2α) located in the oxygen degradation domain (ODD), typically p.530–532, was shown as the etiology of this syndrome. The aim of the present investigation was to demonstrate that these mutations are necessary and sufficient for the development of the symptoms. We developed transgenic mice with a gain-of-function Epas1(A529V) mutation (corresponding to human EPAS1(A530V)), which demonstrated elevated levels of erythropoietin and polycythemia, a decreased urinary metanephrine-to-normetanephrine ratio, and increased expression of somatostatin in the ampullary region of duodenum. Further, inhibition of HIF2α with its specific inhibitor PT2385 significantly reduced erythropoietin levels in the mutant mice. However, polycythemia persisted after PT2385 treatment, suggesting an alternative erythropoietin-independent mechanism of polycythemia. These findings demonstrate the vital roles of EPAS1 mutations in the syndrome development and the great potential of the Epas1(A529V) animal model for further pathogenesis and therapeutics studies. MDPI 2019-05-14 /pmc/articles/PMC6562734/ /pubmed/31091718 http://dx.doi.org/10.3390/cancers11050667 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Herui
Cui, Jing
Yang, Chunzhang
Rosenblum, Jared S.
Zhang, Qi
Song, Qi
Pang, Ying
Fang, Francia
Sun, Mitchell
Dmitriev, Pauline
Gilbert, Mark R.
Eisenhofer, Graeme
Pacak, Karel
Zhuang, Zhengping
A Transgenic Mouse Model of Pacak–Zhuang Syndrome with An Epas1 Gain-of-Function Mutation
title A Transgenic Mouse Model of Pacak–Zhuang Syndrome with An Epas1 Gain-of-Function Mutation
title_full A Transgenic Mouse Model of Pacak–Zhuang Syndrome with An Epas1 Gain-of-Function Mutation
title_fullStr A Transgenic Mouse Model of Pacak–Zhuang Syndrome with An Epas1 Gain-of-Function Mutation
title_full_unstemmed A Transgenic Mouse Model of Pacak–Zhuang Syndrome with An Epas1 Gain-of-Function Mutation
title_short A Transgenic Mouse Model of Pacak–Zhuang Syndrome with An Epas1 Gain-of-Function Mutation
title_sort transgenic mouse model of pacak–zhuang syndrome with an epas1 gain-of-function mutation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6562734/
https://www.ncbi.nlm.nih.gov/pubmed/31091718
http://dx.doi.org/10.3390/cancers11050667
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