Edematous severe acute malnutrition is characterized by hypomethylation of DNA

The edematous form of severe acute childhood malnutrition (ESAM) presents with more severe multi-organ dysfunction than non-edematous SAM (NESAM). Here the authors assess genome-wide DNA methylation in buccal cells of SAM children and find that ESAM is characterized by hypomethylation at genes assoc...

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Autores principales: Katharina V. Schulze, Shanker Swaminathan, Sharon Howell, Aarti Jajoo, Natasha C. Lie, Orgen Brown, Roa Sadat, Nancy Hall, Liang Zhao, Kwesi Marshall, Thaddaeus May, Marvin E. Reid, Carolyn Taylor-Bryan, Xueqing Wang, John W. Belmont, Yongtao Guan, Mark J. Manary, Indi Trehan, Colin A. McKenzie, Neil A. Hanchard
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/84e6b256abe147388cbba5a420607002
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spelling oai:doaj.org-article:84e6b256abe147388cbba5a4206070022021-12-02T15:35:27ZEdematous severe acute malnutrition is characterized by hypomethylation of DNA10.1038/s41467-019-13433-62041-1723https://doaj.org/article/84e6b256abe147388cbba5a4206070022019-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13433-6https://doaj.org/toc/2041-1723The edematous form of severe acute childhood malnutrition (ESAM) presents with more severe multi-organ dysfunction than non-edematous SAM (NESAM). Here the authors assess genome-wide DNA methylation in buccal cells of SAM children and find that ESAM is characterized by hypomethylation at genes associated with disorders of nutrition and metabolism, including fatty liver and diabetes.Katharina V. SchulzeShanker SwaminathanSharon HowellAarti JajooNatasha C. LieOrgen BrownRoa SadatNancy HallLiang ZhaoKwesi MarshallThaddaeus MayMarvin E. ReidCarolyn Taylor-BryanXueqing WangJohn W. BelmontYongtao GuanMark J. ManaryIndi TrehanColin A. McKenzieNeil A. HanchardNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-13 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Katharina V. Schulze
Shanker Swaminathan
Sharon Howell
Aarti Jajoo
Natasha C. Lie
Orgen Brown
Roa Sadat
Nancy Hall
Liang Zhao
Kwesi Marshall
Thaddaeus May
Marvin E. Reid
Carolyn Taylor-Bryan
Xueqing Wang
John W. Belmont
Yongtao Guan
Mark J. Manary
Indi Trehan
Colin A. McKenzie
Neil A. Hanchard
Edematous severe acute malnutrition is characterized by hypomethylation of DNA
description The edematous form of severe acute childhood malnutrition (ESAM) presents with more severe multi-organ dysfunction than non-edematous SAM (NESAM). Here the authors assess genome-wide DNA methylation in buccal cells of SAM children and find that ESAM is characterized by hypomethylation at genes associated with disorders of nutrition and metabolism, including fatty liver and diabetes.
format article
author Katharina V. Schulze
Shanker Swaminathan
Sharon Howell
Aarti Jajoo
Natasha C. Lie
Orgen Brown
Roa Sadat
Nancy Hall
Liang Zhao
Kwesi Marshall
Thaddaeus May
Marvin E. Reid
Carolyn Taylor-Bryan
Xueqing Wang
John W. Belmont
Yongtao Guan
Mark J. Manary
Indi Trehan
Colin A. McKenzie
Neil A. Hanchard
author_facet Katharina V. Schulze
Shanker Swaminathan
Sharon Howell
Aarti Jajoo
Natasha C. Lie
Orgen Brown
Roa Sadat
Nancy Hall
Liang Zhao
Kwesi Marshall
Thaddaeus May
Marvin E. Reid
Carolyn Taylor-Bryan
Xueqing Wang
John W. Belmont
Yongtao Guan
Mark J. Manary
Indi Trehan
Colin A. McKenzie
Neil A. Hanchard
author_sort Katharina V. Schulze
title Edematous severe acute malnutrition is characterized by hypomethylation of DNA
title_short Edematous severe acute malnutrition is characterized by hypomethylation of DNA
title_full Edematous severe acute malnutrition is characterized by hypomethylation of DNA
title_fullStr Edematous severe acute malnutrition is characterized by hypomethylation of DNA
title_full_unstemmed Edematous severe acute malnutrition is characterized by hypomethylation of DNA
title_sort edematous severe acute malnutrition is characterized by hypomethylation of dna
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/84e6b256abe147388cbba5a420607002
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