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MAB21L1 modulates gene expression and DNA metabolic processes in the lens placode

Mutations in human MAB21L1 cause aberrations in lens ectoderm morphogenesis and lead to congenital cerebellar, ocular, craniofacial and genital (COFG) syndrome. Murine Mab21l1-null mutations cause severe cell-autonomous defects in lens formation, leading to microphthalmia; therefore, Mab21l1-null mi...

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Autores principales: Yamada, Ryuichi, Oguri, Akira, Fujiki, Katsunori, Shirahige, Katsuhiko, Hirate, Yoshikazu, Kanai-Azuma, Masami, Takezoe, Hirotaka, Akimoto, Yoshihiro, Takahashi, Naoki, Kanai, Yoshiakira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8713989/
https://www.ncbi.nlm.nih.gov/pubmed/34779479
http://dx.doi.org/10.1242/dmm.049251
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author Yamada, Ryuichi
Oguri, Akira
Fujiki, Katsunori
Shirahige, Katsuhiko
Hirate, Yoshikazu
Kanai-Azuma, Masami
Takezoe, Hirotaka
Akimoto, Yoshihiro
Takahashi, Naoki
Kanai, Yoshiakira
author_facet Yamada, Ryuichi
Oguri, Akira
Fujiki, Katsunori
Shirahige, Katsuhiko
Hirate, Yoshikazu
Kanai-Azuma, Masami
Takezoe, Hirotaka
Akimoto, Yoshihiro
Takahashi, Naoki
Kanai, Yoshiakira
author_sort Yamada, Ryuichi
collection PubMed
description Mutations in human MAB21L1 cause aberrations in lens ectoderm morphogenesis and lead to congenital cerebellar, ocular, craniofacial and genital (COFG) syndrome. Murine Mab21l1-null mutations cause severe cell-autonomous defects in lens formation, leading to microphthalmia; therefore, Mab21l1-null mice are used as a mouse model for COFG syndrome. In this study, we investigated the early-onset single-cell-level phenotypes of murine Mab21l1-null lens ectoderms using electron microscopy and single-cell RNA sequencing (scRNA-seq). Electron microscopy and immunohistochemical analyses indicated endoplasmic reticulum stress at the 24- to 26-somite stage in Mab21l1-null lens placodes. scRNA-seq analysis revealed that 131 genes were downregulated and 148 were upregulated in Mab21l1-null lens ectoderms relative to the wild type. We successfully identified 21 lens-specific genes that were downregulated in Mab21l1-null cells, including three key genes involved in lens formation: Pitx3, Maf and Sfrp2. Moreover, gene ontology analysis of the 279 differentially expressed genes indicated enrichment in housekeeping genes associated with DNA/nucleotide metabolism prior to cell death. These findings suggest that MAB21L1 acts as a nuclear factor that modulates not only lens-specific gene expression but also DNA/nucleotide metabolic processes during lens placode formation.
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spelling pubmed-87139892021-12-29 MAB21L1 modulates gene expression and DNA metabolic processes in the lens placode Yamada, Ryuichi Oguri, Akira Fujiki, Katsunori Shirahige, Katsuhiko Hirate, Yoshikazu Kanai-Azuma, Masami Takezoe, Hirotaka Akimoto, Yoshihiro Takahashi, Naoki Kanai, Yoshiakira Dis Model Mech Research Article Mutations in human MAB21L1 cause aberrations in lens ectoderm morphogenesis and lead to congenital cerebellar, ocular, craniofacial and genital (COFG) syndrome. Murine Mab21l1-null mutations cause severe cell-autonomous defects in lens formation, leading to microphthalmia; therefore, Mab21l1-null mice are used as a mouse model for COFG syndrome. In this study, we investigated the early-onset single-cell-level phenotypes of murine Mab21l1-null lens ectoderms using electron microscopy and single-cell RNA sequencing (scRNA-seq). Electron microscopy and immunohistochemical analyses indicated endoplasmic reticulum stress at the 24- to 26-somite stage in Mab21l1-null lens placodes. scRNA-seq analysis revealed that 131 genes were downregulated and 148 were upregulated in Mab21l1-null lens ectoderms relative to the wild type. We successfully identified 21 lens-specific genes that were downregulated in Mab21l1-null cells, including three key genes involved in lens formation: Pitx3, Maf and Sfrp2. Moreover, gene ontology analysis of the 279 differentially expressed genes indicated enrichment in housekeeping genes associated with DNA/nucleotide metabolism prior to cell death. These findings suggest that MAB21L1 acts as a nuclear factor that modulates not only lens-specific gene expression but also DNA/nucleotide metabolic processes during lens placode formation. The Company of Biologists Ltd 2021-12-23 /pmc/articles/PMC8713989/ /pubmed/34779479 http://dx.doi.org/10.1242/dmm.049251 Text en © 2021. Published by The Company of Biologists Ltd https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Yamada, Ryuichi
Oguri, Akira
Fujiki, Katsunori
Shirahige, Katsuhiko
Hirate, Yoshikazu
Kanai-Azuma, Masami
Takezoe, Hirotaka
Akimoto, Yoshihiro
Takahashi, Naoki
Kanai, Yoshiakira
MAB21L1 modulates gene expression and DNA metabolic processes in the lens placode
title MAB21L1 modulates gene expression and DNA metabolic processes in the lens placode
title_full MAB21L1 modulates gene expression and DNA metabolic processes in the lens placode
title_fullStr MAB21L1 modulates gene expression and DNA metabolic processes in the lens placode
title_full_unstemmed MAB21L1 modulates gene expression and DNA metabolic processes in the lens placode
title_short MAB21L1 modulates gene expression and DNA metabolic processes in the lens placode
title_sort mab21l1 modulates gene expression and dna metabolic processes in the lens placode
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8713989/
https://www.ncbi.nlm.nih.gov/pubmed/34779479
http://dx.doi.org/10.1242/dmm.049251
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