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The transcription factor ATOH8 is regulated by erythropoietic activity and regulates HAMP transcription and cellular pSMAD1,5,8 levels

ATOH8 has previously been shown to be an iron-regulated transcription factor, however its role in iron metabolism is not known. ATOH8 expression in HEK293 cells resulted in increased endogenous HAMP mRNA levels as well as HAMP promoter activity. Mutation of the E-box or SMAD response elements within...

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Autores principales: Patel, Neeta, Varghese, Joe, Masaratana, Patarabutr, Latunde-Dada, Gladys O, Jacob, Molly, Simpson, Robert J, McKie, Andrew T
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4232863/
https://www.ncbi.nlm.nih.gov/pubmed/24236640
http://dx.doi.org/10.1111/bjh.12649
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author Patel, Neeta
Varghese, Joe
Masaratana, Patarabutr
Latunde-Dada, Gladys O
Jacob, Molly
Simpson, Robert J
McKie, Andrew T
author_facet Patel, Neeta
Varghese, Joe
Masaratana, Patarabutr
Latunde-Dada, Gladys O
Jacob, Molly
Simpson, Robert J
McKie, Andrew T
author_sort Patel, Neeta
collection PubMed
description ATOH8 has previously been shown to be an iron-regulated transcription factor, however its role in iron metabolism is not known. ATOH8 expression in HEK293 cells resulted in increased endogenous HAMP mRNA levels as well as HAMP promoter activity. Mutation of the E-box or SMAD response elements within the HAMP promoter significantly reduced the effects of ATOH8, indicating that ATOH8 activates HAMP transcription directly as well as through bone morphogenic protein (BMP) signalling. In support of the former, Chromatin immunoprecipitation assays provided evidence that ATOH8 binds to E-box regions within the HAMP promoter while the latter was supported by the finding that ATOH8 expression in HEK293 cells led to increased phosphorylated SMAD1,5,8 levels. Liver Atoh8 levels were reduced in mice under conditions associated with increased erythropoietic activity such as hypoxia, haemolytic anaemia, hypotransferrinaemia and erythropoietin treatment and increased by inhibitors of erythropoiesis. Hepatic Atoh8mRNA levels increased in mice treated with holo transferrin, suggesting that Atoh8 responds to changes in plasma iron. ATOH8 is therefore a novel transcriptional regulator of HAMP, which is responsive to changes in plasma iron and erythroid activity and could explain how changes in erythroid activity lead to regulation of HAMP.
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spelling pubmed-42328632014-12-31 The transcription factor ATOH8 is regulated by erythropoietic activity and regulates HAMP transcription and cellular pSMAD1,5,8 levels Patel, Neeta Varghese, Joe Masaratana, Patarabutr Latunde-Dada, Gladys O Jacob, Molly Simpson, Robert J McKie, Andrew T Br J Haematol Red Cells and Iron ATOH8 has previously been shown to be an iron-regulated transcription factor, however its role in iron metabolism is not known. ATOH8 expression in HEK293 cells resulted in increased endogenous HAMP mRNA levels as well as HAMP promoter activity. Mutation of the E-box or SMAD response elements within the HAMP promoter significantly reduced the effects of ATOH8, indicating that ATOH8 activates HAMP transcription directly as well as through bone morphogenic protein (BMP) signalling. In support of the former, Chromatin immunoprecipitation assays provided evidence that ATOH8 binds to E-box regions within the HAMP promoter while the latter was supported by the finding that ATOH8 expression in HEK293 cells led to increased phosphorylated SMAD1,5,8 levels. Liver Atoh8 levels were reduced in mice under conditions associated with increased erythropoietic activity such as hypoxia, haemolytic anaemia, hypotransferrinaemia and erythropoietin treatment and increased by inhibitors of erythropoiesis. Hepatic Atoh8mRNA levels increased in mice treated with holo transferrin, suggesting that Atoh8 responds to changes in plasma iron. ATOH8 is therefore a novel transcriptional regulator of HAMP, which is responsive to changes in plasma iron and erythroid activity and could explain how changes in erythroid activity lead to regulation of HAMP. BlackWell Publishing Ltd 2014-02 2013-11-16 /pmc/articles/PMC4232863/ /pubmed/24236640 http://dx.doi.org/10.1111/bjh.12649 Text en © 2013 The Authors. British Journal of Haematology published by John Wiley & Sons Ltd. http://creativecommons.org/licenses/by/3.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Red Cells and Iron
Patel, Neeta
Varghese, Joe
Masaratana, Patarabutr
Latunde-Dada, Gladys O
Jacob, Molly
Simpson, Robert J
McKie, Andrew T
The transcription factor ATOH8 is regulated by erythropoietic activity and regulates HAMP transcription and cellular pSMAD1,5,8 levels
title The transcription factor ATOH8 is regulated by erythropoietic activity and regulates HAMP transcription and cellular pSMAD1,5,8 levels
title_full The transcription factor ATOH8 is regulated by erythropoietic activity and regulates HAMP transcription and cellular pSMAD1,5,8 levels
title_fullStr The transcription factor ATOH8 is regulated by erythropoietic activity and regulates HAMP transcription and cellular pSMAD1,5,8 levels
title_full_unstemmed The transcription factor ATOH8 is regulated by erythropoietic activity and regulates HAMP transcription and cellular pSMAD1,5,8 levels
title_short The transcription factor ATOH8 is regulated by erythropoietic activity and regulates HAMP transcription and cellular pSMAD1,5,8 levels
title_sort transcription factor atoh8 is regulated by erythropoietic activity and regulates hamp transcription and cellular psmad1,5,8 levels
topic Red Cells and Iron
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4232863/
https://www.ncbi.nlm.nih.gov/pubmed/24236640
http://dx.doi.org/10.1111/bjh.12649
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