Loss of NARS1 impairs progenitor proliferation in cortical brain organoids and leads to microcephaly

Asparaginyl-tRNA synthetase1 (NARS1) is required for protein synthesis. Here, the authors identify biallelic NARS1 mutations in individuals with microcephaly and neurodevelopmental delay. Cortical brain organoid modeling recapitulates microcephaly characteristics and scRNA-seq reveals a role for NAR...

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Autores principales: Lu Wang, Zhen Li, David Sievert, Desirée E. C. Smith, Marisa I. Mendes, Dillon Y. Chen, Valentina Stanley, Shereen Ghosh, Yulu Wang, Majdi Kara, Ayca Dilruba Aslanger, Rasim O. Rosti, Henry Houlden, Gajja S. Salomons, Joseph G. Gleeson
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/cc10dd5665ed408989d1b2eddc9acfe5
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spelling oai:doaj.org-article:cc10dd5665ed408989d1b2eddc9acfe52021-12-02T16:28:07ZLoss of NARS1 impairs progenitor proliferation in cortical brain organoids and leads to microcephaly10.1038/s41467-020-17454-42041-1723https://doaj.org/article/cc10dd5665ed408989d1b2eddc9acfe52020-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17454-4https://doaj.org/toc/2041-1723Asparaginyl-tRNA synthetase1 (NARS1) is required for protein synthesis. Here, the authors identify biallelic NARS1 mutations in individuals with microcephaly and neurodevelopmental delay. Cortical brain organoid modeling recapitulates microcephaly characteristics and scRNA-seq reveals a role for NARS1 in radial glial cell proliferation.Lu WangZhen LiDavid SievertDesirée E. C. SmithMarisa I. MendesDillon Y. ChenValentina StanleyShereen GhoshYulu WangMajdi KaraAyca Dilruba AslangerRasim O. RostiHenry HouldenGajja S. SalomonsJoseph G. GleesonNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Lu Wang
Zhen Li
David Sievert
Desirée E. C. Smith
Marisa I. Mendes
Dillon Y. Chen
Valentina Stanley
Shereen Ghosh
Yulu Wang
Majdi Kara
Ayca Dilruba Aslanger
Rasim O. Rosti
Henry Houlden
Gajja S. Salomons
Joseph G. Gleeson
Loss of NARS1 impairs progenitor proliferation in cortical brain organoids and leads to microcephaly
description Asparaginyl-tRNA synthetase1 (NARS1) is required for protein synthesis. Here, the authors identify biallelic NARS1 mutations in individuals with microcephaly and neurodevelopmental delay. Cortical brain organoid modeling recapitulates microcephaly characteristics and scRNA-seq reveals a role for NARS1 in radial glial cell proliferation.
format article
author Lu Wang
Zhen Li
David Sievert
Desirée E. C. Smith
Marisa I. Mendes
Dillon Y. Chen
Valentina Stanley
Shereen Ghosh
Yulu Wang
Majdi Kara
Ayca Dilruba Aslanger
Rasim O. Rosti
Henry Houlden
Gajja S. Salomons
Joseph G. Gleeson
author_facet Lu Wang
Zhen Li
David Sievert
Desirée E. C. Smith
Marisa I. Mendes
Dillon Y. Chen
Valentina Stanley
Shereen Ghosh
Yulu Wang
Majdi Kara
Ayca Dilruba Aslanger
Rasim O. Rosti
Henry Houlden
Gajja S. Salomons
Joseph G. Gleeson
author_sort Lu Wang
title Loss of NARS1 impairs progenitor proliferation in cortical brain organoids and leads to microcephaly
title_short Loss of NARS1 impairs progenitor proliferation in cortical brain organoids and leads to microcephaly
title_full Loss of NARS1 impairs progenitor proliferation in cortical brain organoids and leads to microcephaly
title_fullStr Loss of NARS1 impairs progenitor proliferation in cortical brain organoids and leads to microcephaly
title_full_unstemmed Loss of NARS1 impairs progenitor proliferation in cortical brain organoids and leads to microcephaly
title_sort loss of nars1 impairs progenitor proliferation in cortical brain organoids and leads to microcephaly
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/cc10dd5665ed408989d1b2eddc9acfe5
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