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Ecdysoneless Overexpression Drives Mammary Tumorigenesis through Upregulation of C-MYC and Glucose Metabolism

Ecdysoneless (ECD) protein is essential for embryogenesis, cell-cycle progression, and cellular stress mitigation with an emerging role in mRNA biogenesis. We have previously shown that ECD protein as well as its mRNA are overexpressed in breast cancer and ECD overexpression predicts shorter surviva...

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Autores principales: Mohapatra, Bhopal C., Mirza, Sameer, Bele, Aditya, Gurumurthy, Channabasavaiah B., Raza, Mohsin, Saleem, Irfana, Storck, Matthew D., Sarkar, Aniruddha, Kollala, Sai Sundeep, Shukla, Surendra K., Southekal, Siddesh, Wagner, Kay-Uwe, Qiu, Fang, Lele, Subodh M., Alsaleem, Mansour A., Rakha, Emad A., Guda, Chittibabu, Singh, Pankaj K., Cardiff, Robert D., Band, Hamid, Band, Vimla
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9437571/
https://www.ncbi.nlm.nih.gov/pubmed/35675041
http://dx.doi.org/10.1158/1541-7786.MCR-22-0122
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author Mohapatra, Bhopal C.
Mirza, Sameer
Bele, Aditya
Gurumurthy, Channabasavaiah B.
Raza, Mohsin
Saleem, Irfana
Storck, Matthew D.
Sarkar, Aniruddha
Kollala, Sai Sundeep
Shukla, Surendra K.
Southekal, Siddesh
Wagner, Kay-Uwe
Qiu, Fang
Lele, Subodh M.
Alsaleem, Mansour A.
Rakha, Emad A.
Guda, Chittibabu
Singh, Pankaj K.
Cardiff, Robert D.
Band, Hamid
Band, Vimla
author_facet Mohapatra, Bhopal C.
Mirza, Sameer
Bele, Aditya
Gurumurthy, Channabasavaiah B.
Raza, Mohsin
Saleem, Irfana
Storck, Matthew D.
Sarkar, Aniruddha
Kollala, Sai Sundeep
Shukla, Surendra K.
Southekal, Siddesh
Wagner, Kay-Uwe
Qiu, Fang
Lele, Subodh M.
Alsaleem, Mansour A.
Rakha, Emad A.
Guda, Chittibabu
Singh, Pankaj K.
Cardiff, Robert D.
Band, Hamid
Band, Vimla
author_sort Mohapatra, Bhopal C.
collection PubMed
description Ecdysoneless (ECD) protein is essential for embryogenesis, cell-cycle progression, and cellular stress mitigation with an emerging role in mRNA biogenesis. We have previously shown that ECD protein as well as its mRNA are overexpressed in breast cancer and ECD overexpression predicts shorter survival in patients with breast cancer. However, the genetic evidence for an oncogenic role of ECD has not been established. Here, we generated transgenic mice with mammary epithelium-targeted overexpression of an inducible human ECD transgene (ECDTg). Significantly, ECDTg mice develop mammary hyperplasia, preneoplastic lesions, and heterogeneous tumors with occasional lung metastasis. ECDTg tumors exhibit epithelial to mesenchymal transition and cancer stem cell characteristics. Organoid cultures of ECDTg tumors showed ECD dependency for in vitro oncogenic phenotype and in vivo growth when implanted in mice. RNA sequencing (RNA-seq) analysis of ECDTg tumors showed a c-MYC signature, and alterations in ECD levels regulated c-MYC mRNA and protein levels as well as glucose metabolism. ECD knockdown-induced decrease in glucose uptake was rescued by overexpression of mouse ECD as well as c-MYC. Publicly available expression data analyses showed a significant correlation of ECD and c-MYC overexpression in breast cancer, and ECD and c-MYC coexpression exhibits worse survival in patients with breast cancer. Taken together, we establish a novel role of overexpressed ECD as an oncogenesis driver in the mouse mammary gland through upregulation of c-MYC–mediated glucose metabolism. IMPLICATIONS: We demonstrate ECD overexpression in the mammary gland of mice led to the development of a tumor progression model through upregulation of c-MYC signaling and glucose metabolism.
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spelling pubmed-94375712022-09-16 Ecdysoneless Overexpression Drives Mammary Tumorigenesis through Upregulation of C-MYC and Glucose Metabolism Mohapatra, Bhopal C. Mirza, Sameer Bele, Aditya Gurumurthy, Channabasavaiah B. Raza, Mohsin Saleem, Irfana Storck, Matthew D. Sarkar, Aniruddha Kollala, Sai Sundeep Shukla, Surendra K. Southekal, Siddesh Wagner, Kay-Uwe Qiu, Fang Lele, Subodh M. Alsaleem, Mansour A. Rakha, Emad A. Guda, Chittibabu Singh, Pankaj K. Cardiff, Robert D. Band, Hamid Band, Vimla Mol Cancer Res Cancer Genes and Networks Ecdysoneless (ECD) protein is essential for embryogenesis, cell-cycle progression, and cellular stress mitigation with an emerging role in mRNA biogenesis. We have previously shown that ECD protein as well as its mRNA are overexpressed in breast cancer and ECD overexpression predicts shorter survival in patients with breast cancer. However, the genetic evidence for an oncogenic role of ECD has not been established. Here, we generated transgenic mice with mammary epithelium-targeted overexpression of an inducible human ECD transgene (ECDTg). Significantly, ECDTg mice develop mammary hyperplasia, preneoplastic lesions, and heterogeneous tumors with occasional lung metastasis. ECDTg tumors exhibit epithelial to mesenchymal transition and cancer stem cell characteristics. Organoid cultures of ECDTg tumors showed ECD dependency for in vitro oncogenic phenotype and in vivo growth when implanted in mice. RNA sequencing (RNA-seq) analysis of ECDTg tumors showed a c-MYC signature, and alterations in ECD levels regulated c-MYC mRNA and protein levels as well as glucose metabolism. ECD knockdown-induced decrease in glucose uptake was rescued by overexpression of mouse ECD as well as c-MYC. Publicly available expression data analyses showed a significant correlation of ECD and c-MYC overexpression in breast cancer, and ECD and c-MYC coexpression exhibits worse survival in patients with breast cancer. Taken together, we establish a novel role of overexpressed ECD as an oncogenesis driver in the mouse mammary gland through upregulation of c-MYC–mediated glucose metabolism. IMPLICATIONS: We demonstrate ECD overexpression in the mammary gland of mice led to the development of a tumor progression model through upregulation of c-MYC signaling and glucose metabolism. American Association for Cancer Research 2022-09-02 2022-06-08 /pmc/articles/PMC9437571/ /pubmed/35675041 http://dx.doi.org/10.1158/1541-7786.MCR-22-0122 Text en ©2022 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) license.
spellingShingle Cancer Genes and Networks
Mohapatra, Bhopal C.
Mirza, Sameer
Bele, Aditya
Gurumurthy, Channabasavaiah B.
Raza, Mohsin
Saleem, Irfana
Storck, Matthew D.
Sarkar, Aniruddha
Kollala, Sai Sundeep
Shukla, Surendra K.
Southekal, Siddesh
Wagner, Kay-Uwe
Qiu, Fang
Lele, Subodh M.
Alsaleem, Mansour A.
Rakha, Emad A.
Guda, Chittibabu
Singh, Pankaj K.
Cardiff, Robert D.
Band, Hamid
Band, Vimla
Ecdysoneless Overexpression Drives Mammary Tumorigenesis through Upregulation of C-MYC and Glucose Metabolism
title Ecdysoneless Overexpression Drives Mammary Tumorigenesis through Upregulation of C-MYC and Glucose Metabolism
title_full Ecdysoneless Overexpression Drives Mammary Tumorigenesis through Upregulation of C-MYC and Glucose Metabolism
title_fullStr Ecdysoneless Overexpression Drives Mammary Tumorigenesis through Upregulation of C-MYC and Glucose Metabolism
title_full_unstemmed Ecdysoneless Overexpression Drives Mammary Tumorigenesis through Upregulation of C-MYC and Glucose Metabolism
title_short Ecdysoneless Overexpression Drives Mammary Tumorigenesis through Upregulation of C-MYC and Glucose Metabolism
title_sort ecdysoneless overexpression drives mammary tumorigenesis through upregulation of c-myc and glucose metabolism
topic Cancer Genes and Networks
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9437571/
https://www.ncbi.nlm.nih.gov/pubmed/35675041
http://dx.doi.org/10.1158/1541-7786.MCR-22-0122
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