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Partitioning of One-Carbon Units in Folate and Methionine Metabolism Is Essential for Neural Tube Closure

Abnormal folate one-carbon metabolism (FOCM) is implicated in neural tube defects (NTDs), severe malformations of the nervous system. MTHFR mediates unidirectional transfer of methyl groups from the folate cycle to the methionine cycle and, therefore, represents a key nexus in partitioning one-carbo...

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Autores principales: Leung, Kit-Yi, Pai, Yun Jin, Chen, Qiuying, Santos, Chloe, Calvani, Enrica, Sudiwala, Sonia, Savery, Dawn, Ralser, Markus, Gross, Steven S., Copp, Andrew J., Greene, Nicholas D.E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5699646/
https://www.ncbi.nlm.nih.gov/pubmed/29141214
http://dx.doi.org/10.1016/j.celrep.2017.10.072
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author Leung, Kit-Yi
Pai, Yun Jin
Chen, Qiuying
Santos, Chloe
Calvani, Enrica
Sudiwala, Sonia
Savery, Dawn
Ralser, Markus
Gross, Steven S.
Copp, Andrew J.
Greene, Nicholas D.E.
author_facet Leung, Kit-Yi
Pai, Yun Jin
Chen, Qiuying
Santos, Chloe
Calvani, Enrica
Sudiwala, Sonia
Savery, Dawn
Ralser, Markus
Gross, Steven S.
Copp, Andrew J.
Greene, Nicholas D.E.
author_sort Leung, Kit-Yi
collection PubMed
description Abnormal folate one-carbon metabolism (FOCM) is implicated in neural tube defects (NTDs), severe malformations of the nervous system. MTHFR mediates unidirectional transfer of methyl groups from the folate cycle to the methionine cycle and, therefore, represents a key nexus in partitioning one-carbon units between FOCM functional outputs. Methionine cycle inhibitors prevent neural tube closure in mouse embryos. Similarly, the inability to use glycine as a one-carbon donor to the folate cycle causes NTDs in glycine decarboxylase (Gldc)-deficient embryos. However, analysis of Mthfr-null mouse embryos shows that neither S-adenosylmethionine abundance nor neural tube closure depend on one-carbon units derived from embryonic or maternal folate cycles. Mthfr deletion or methionine treatment prevents NTDs in Gldc-null embryos by retention of one-carbon units within the folate cycle. Overall, neural tube closure depends on the activity of both the methionine and folate cycles, but transfer of one-carbon units between the cycles is not necessary.
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spelling pubmed-56996462017-11-29 Partitioning of One-Carbon Units in Folate and Methionine Metabolism Is Essential for Neural Tube Closure Leung, Kit-Yi Pai, Yun Jin Chen, Qiuying Santos, Chloe Calvani, Enrica Sudiwala, Sonia Savery, Dawn Ralser, Markus Gross, Steven S. Copp, Andrew J. Greene, Nicholas D.E. Cell Rep Article Abnormal folate one-carbon metabolism (FOCM) is implicated in neural tube defects (NTDs), severe malformations of the nervous system. MTHFR mediates unidirectional transfer of methyl groups from the folate cycle to the methionine cycle and, therefore, represents a key nexus in partitioning one-carbon units between FOCM functional outputs. Methionine cycle inhibitors prevent neural tube closure in mouse embryos. Similarly, the inability to use glycine as a one-carbon donor to the folate cycle causes NTDs in glycine decarboxylase (Gldc)-deficient embryos. However, analysis of Mthfr-null mouse embryos shows that neither S-adenosylmethionine abundance nor neural tube closure depend on one-carbon units derived from embryonic or maternal folate cycles. Mthfr deletion or methionine treatment prevents NTDs in Gldc-null embryos by retention of one-carbon units within the folate cycle. Overall, neural tube closure depends on the activity of both the methionine and folate cycles, but transfer of one-carbon units between the cycles is not necessary. Cell Press 2017-11-14 /pmc/articles/PMC5699646/ /pubmed/29141214 http://dx.doi.org/10.1016/j.celrep.2017.10.072 Text en © 2017 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Leung, Kit-Yi
Pai, Yun Jin
Chen, Qiuying
Santos, Chloe
Calvani, Enrica
Sudiwala, Sonia
Savery, Dawn
Ralser, Markus
Gross, Steven S.
Copp, Andrew J.
Greene, Nicholas D.E.
Partitioning of One-Carbon Units in Folate and Methionine Metabolism Is Essential for Neural Tube Closure
title Partitioning of One-Carbon Units in Folate and Methionine Metabolism Is Essential for Neural Tube Closure
title_full Partitioning of One-Carbon Units in Folate and Methionine Metabolism Is Essential for Neural Tube Closure
title_fullStr Partitioning of One-Carbon Units in Folate and Methionine Metabolism Is Essential for Neural Tube Closure
title_full_unstemmed Partitioning of One-Carbon Units in Folate and Methionine Metabolism Is Essential for Neural Tube Closure
title_short Partitioning of One-Carbon Units in Folate and Methionine Metabolism Is Essential for Neural Tube Closure
title_sort partitioning of one-carbon units in folate and methionine metabolism is essential for neural tube closure
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5699646/
https://www.ncbi.nlm.nih.gov/pubmed/29141214
http://dx.doi.org/10.1016/j.celrep.2017.10.072
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