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

Author:

Yamada Ryuichi123ORCID,Oguri Akira2ORCID,Fujiki Katsunori4,Shirahige Katsuhiko4,Hirate Yoshikazu5,Kanai-Azuma Masami5ORCID,Takezoe Hirotaka6ORCID,Akimoto Yoshihiro7,Takahashi Naoki23ORCID,Kanai Yoshiakira1ORCID

Affiliation:

1. Department of Veterinary Anatomy, the University of Tokyo, Tokyo 113-8657, Japan

2. Department of Applied Biological Chemistry, the University of Tokyo, Tokyo 113-8657, Japan

3. RNA Company Limited, Tokyo 144-0051, Japan

4. Laboratory of Genome Structure and Function, Institute for Quantitative Biosciences, the University of Tokyo, Tokyo 113-0032, Japan

5. Department of Experimental Animal Model for Human Disease, Center for Experimental Animals, Tokyo Medical and Dental University, Tokyo 113-8510, Japan

6. Genble Inc., Fukuoka 814-0001, Japan

7. Department of Anatomy, Kyorin University School of Medicine, Tokyo 181-8611, Japan

Abstract

ABSTRACT 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.

Funder

Japan Society for the Promotion of Science

Japan Agency for Medical Research and Development

Publisher

The Company of Biologists

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology and Microbiology (miscellaneous),Medicine (miscellaneous),Neuroscience (miscellaneous)

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