A novel zebrafish model for intermediate type spinal muscular atrophy demonstrates importance of Smn for maintenance of mature motor neurons
10.1093/hmg/ddab212
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OXFORD UNIV PRESS
2022
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sg-nus-scholar.10635-2179602024-04-02T07:49:08Z A novel zebrafish model for intermediate type spinal muscular atrophy demonstrates importance of Smn for maintenance of mature motor neurons Tay, Shermaine Huiping Ellieyana, Erna Nur Le, Yao Sarusie, Menachem Viktor Grimm, Clemens Ohmer, Jurgen Mathuru, Ajay S Fischer, Utz Winkler, Christoph BIOLOGICAL SCIENCES RISK MANAGEMENT INSTITUTE Science & Technology Life Sciences & Biomedicine Biochemistry & Molecular Biology Genetics & Heredity NEUROMUSCULAR-JUNCTION MOUSE MODEL EMBRYONIC-DEVELOPMENT SINGLE NUCLEOTIDE ANIMAL-MODEL GENE SURVIVAL PROTEIN DEFECTS MICE 10.1093/hmg/ddab212 HUMAN MOLECULAR GENETICS 30 24 2488-2502 2022-03-29T07:55:32Z 2022-03-29T07:55:32Z 2021-07-23 2022-03-29T07:16:35Z Article Tay, Shermaine Huiping, Ellieyana, Erna Nur, Le, Yao, Sarusie, Menachem Viktor, Grimm, Clemens, Ohmer, Jurgen, Mathuru, Ajay S, Fischer, Utz, Winkler, Christoph (2021-07-23). A novel zebrafish model for intermediate type spinal muscular atrophy demonstrates importance of Smn for maintenance of mature motor neurons. HUMAN MOLECULAR GENETICS 30 (24) : 2488-2502. ScholarBank@NUS Repository. https://doi.org/10.1093/hmg/ddab212 0964-6906 1460-2083 https://scholarbank.nus.edu.sg/handle/10635/217960 en OXFORD UNIV PRESS Elements |
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Science & Technology Life Sciences & Biomedicine Biochemistry & Molecular Biology Genetics & Heredity NEUROMUSCULAR-JUNCTION MOUSE MODEL EMBRYONIC-DEVELOPMENT SINGLE NUCLEOTIDE ANIMAL-MODEL GENE SURVIVAL PROTEIN DEFECTS MICE |
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Science & Technology Life Sciences & Biomedicine Biochemistry & Molecular Biology Genetics & Heredity NEUROMUSCULAR-JUNCTION MOUSE MODEL EMBRYONIC-DEVELOPMENT SINGLE NUCLEOTIDE ANIMAL-MODEL GENE SURVIVAL PROTEIN DEFECTS MICE Tay, Shermaine Huiping Ellieyana, Erna Nur Le, Yao Sarusie, Menachem Viktor Grimm, Clemens Ohmer, Jurgen Mathuru, Ajay S Fischer, Utz Winkler, Christoph A novel zebrafish model for intermediate type spinal muscular atrophy demonstrates importance of Smn for maintenance of mature motor neurons |
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10.1093/hmg/ddab212 |
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BIOLOGICAL SCIENCES |
author_facet |
BIOLOGICAL SCIENCES Tay, Shermaine Huiping Ellieyana, Erna Nur Le, Yao Sarusie, Menachem Viktor Grimm, Clemens Ohmer, Jurgen Mathuru, Ajay S Fischer, Utz Winkler, Christoph |
format |
Article |
author |
Tay, Shermaine Huiping Ellieyana, Erna Nur Le, Yao Sarusie, Menachem Viktor Grimm, Clemens Ohmer, Jurgen Mathuru, Ajay S Fischer, Utz Winkler, Christoph |
author_sort |
Tay, Shermaine Huiping |
title |
A novel zebrafish model for intermediate type spinal muscular atrophy demonstrates importance of Smn for maintenance of mature motor neurons |
title_short |
A novel zebrafish model for intermediate type spinal muscular atrophy demonstrates importance of Smn for maintenance of mature motor neurons |
title_full |
A novel zebrafish model for intermediate type spinal muscular atrophy demonstrates importance of Smn for maintenance of mature motor neurons |
title_fullStr |
A novel zebrafish model for intermediate type spinal muscular atrophy demonstrates importance of Smn for maintenance of mature motor neurons |
title_full_unstemmed |
A novel zebrafish model for intermediate type spinal muscular atrophy demonstrates importance of Smn for maintenance of mature motor neurons |
title_sort |
novel zebrafish model for intermediate type spinal muscular atrophy demonstrates importance of smn for maintenance of mature motor neurons |
publisher |
OXFORD UNIV PRESS |
publishDate |
2022 |
url |
https://scholarbank.nus.edu.sg/handle/10635/217960 |
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1795301746792202240 |