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Wnt regulates amino acid transporter Slc7a5 and so constrains the integrated stress response in mouse embryos

Amino acids are essential for cellular metabolism, and it is important to understand how nutrient supply is coordinated with changing energy requirements during embryogenesis. Here, we show that the amino acid transporter Slc7a5/Lat1 is highly expressed in tissues undergoing morphogenesis and that S...

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Autores principales: Poncet, Nadège, Halley, Pamela A, Lipina, Christopher, Gierliński, Marek, Dady, Alwyn, Singer, Gail A, Febrer, Melanie, Shi, Yun‐Bo, Yamaguchi, Terry P, Taylor, Peter M, Storey, Kate G
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6944906/
https://www.ncbi.nlm.nih.gov/pubmed/31789450
http://dx.doi.org/10.15252/embr.201948469
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author Poncet, Nadège
Halley, Pamela A
Lipina, Christopher
Gierliński, Marek
Dady, Alwyn
Singer, Gail A
Febrer, Melanie
Shi, Yun‐Bo
Yamaguchi, Terry P
Taylor, Peter M
Storey, Kate G
author_facet Poncet, Nadège
Halley, Pamela A
Lipina, Christopher
Gierliński, Marek
Dady, Alwyn
Singer, Gail A
Febrer, Melanie
Shi, Yun‐Bo
Yamaguchi, Terry P
Taylor, Peter M
Storey, Kate G
author_sort Poncet, Nadège
collection PubMed
description Amino acids are essential for cellular metabolism, and it is important to understand how nutrient supply is coordinated with changing energy requirements during embryogenesis. Here, we show that the amino acid transporter Slc7a5/Lat1 is highly expressed in tissues undergoing morphogenesis and that Slc7a5‐null mouse embryos have profound neural and limb bud outgrowth defects. Slc7a5‐null neural tissue exhibited aberrant mTORC1 activity and cell proliferation; transcriptomics, protein phosphorylation and apoptosis analyses further indicated induction of the integrated stress response as a potential cause of observed defects. The pattern of stress response gene expression induced in Slc7a5‐null embryos was also detected at low level in wild‐type embryos and identified stress vulnerability specifically in tissues undergoing morphogenesis. The Slc7a5‐null phenotype is reminiscent of Wnt pathway mutants, and we show that Wnt/β‐catenin loss inhibits Slc7a5 expression and induces this stress response. Wnt signalling therefore normally supports the metabolic demands of morphogenesis and constrains cellular stress. Moreover, operation in the embryo of the integrated stress response, which is triggered by pathogen‐mediated as well as metabolic stress, may provide a mechanistic explanation for a range of developmental defects.
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spelling pubmed-69449062020-01-07 Wnt regulates amino acid transporter Slc7a5 and so constrains the integrated stress response in mouse embryos Poncet, Nadège Halley, Pamela A Lipina, Christopher Gierliński, Marek Dady, Alwyn Singer, Gail A Febrer, Melanie Shi, Yun‐Bo Yamaguchi, Terry P Taylor, Peter M Storey, Kate G EMBO Rep Articles Amino acids are essential for cellular metabolism, and it is important to understand how nutrient supply is coordinated with changing energy requirements during embryogenesis. Here, we show that the amino acid transporter Slc7a5/Lat1 is highly expressed in tissues undergoing morphogenesis and that Slc7a5‐null mouse embryos have profound neural and limb bud outgrowth defects. Slc7a5‐null neural tissue exhibited aberrant mTORC1 activity and cell proliferation; transcriptomics, protein phosphorylation and apoptosis analyses further indicated induction of the integrated stress response as a potential cause of observed defects. The pattern of stress response gene expression induced in Slc7a5‐null embryos was also detected at low level in wild‐type embryos and identified stress vulnerability specifically in tissues undergoing morphogenesis. The Slc7a5‐null phenotype is reminiscent of Wnt pathway mutants, and we show that Wnt/β‐catenin loss inhibits Slc7a5 expression and induces this stress response. Wnt signalling therefore normally supports the metabolic demands of morphogenesis and constrains cellular stress. Moreover, operation in the embryo of the integrated stress response, which is triggered by pathogen‐mediated as well as metabolic stress, may provide a mechanistic explanation for a range of developmental defects. John Wiley and Sons Inc. 2019-12-02 2020-01-07 /pmc/articles/PMC6944906/ /pubmed/31789450 http://dx.doi.org/10.15252/embr.201948469 Text en © 2019 The Authors. Published under the terms of the CC BY 4.0 license This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Poncet, Nadège
Halley, Pamela A
Lipina, Christopher
Gierliński, Marek
Dady, Alwyn
Singer, Gail A
Febrer, Melanie
Shi, Yun‐Bo
Yamaguchi, Terry P
Taylor, Peter M
Storey, Kate G
Wnt regulates amino acid transporter Slc7a5 and so constrains the integrated stress response in mouse embryos
title Wnt regulates amino acid transporter Slc7a5 and so constrains the integrated stress response in mouse embryos
title_full Wnt regulates amino acid transporter Slc7a5 and so constrains the integrated stress response in mouse embryos
title_fullStr Wnt regulates amino acid transporter Slc7a5 and so constrains the integrated stress response in mouse embryos
title_full_unstemmed Wnt regulates amino acid transporter Slc7a5 and so constrains the integrated stress response in mouse embryos
title_short Wnt regulates amino acid transporter Slc7a5 and so constrains the integrated stress response in mouse embryos
title_sort wnt regulates amino acid transporter slc7a5 and so constrains the integrated stress response in mouse embryos
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6944906/
https://www.ncbi.nlm.nih.gov/pubmed/31789450
http://dx.doi.org/10.15252/embr.201948469
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