ArticleThe Journal of biological chemistry2020
High-mobility group nucleosomal binding domain 2 protects against microcephaly by maintaining global chromatin accessibility during corticogenesis.
Article in The Journal of biological chemistry, 2020. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.
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Who cites it
12 citing papers in PubMed.
- Chromatin structural gene expression stratifies cardiac cell populations in health and disease.Epigenetics · 2025Article
- Deficiency of HMGN2 enhances antibacterial activity of macrophages by promoting H3 histone modification-mediated CD14/iNOS expression.Frontiers in immunology · 2025Article
- An evolutionarily distinct Hmgn2 variant influences shape recognition in Medaka Fish.Communications biology · 2024Article
- Periodic heat waves-induced neuronal etiology in the elderly is mediated by gut-liver-brain axis: a transcriptome profiling approach.Scientific reports · 2024Article
- The miR-144/Hmgn2 regulatory axis orchestrates chromatin organization during erythropoiesis.Nature communications · 2024Article
- Epigenetic regulation in adult neural stem cells.Frontiers in cell and developmental biology · 2024Review
- Developmental programming and lineage branching of early human telencephalon.The EMBO journal · 2021Article
- Not So Dead Genes-Retrocopies as Regulators of Their Disease-Related Progenitors and Hosts.Cells · 2021Review
- Biological Functions of HMGN Chromosomal Proteins.International journal of molecular sciences · 2020Review
- Differences in the Hemolytic Behavior of Two Isomers inOxidative medicine and cellular longevity · 2020Article
- Multiple Feature Selection Strategies Identified Novel Cardiac Gene Expression Signature for Heart Failure.Frontiers in physiology · 2020Article
- Dissecting the Genetic and Etiological Causes of Primary Microcephaly.Frontiers in neurology · 2020Review
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Authors and funding
6 authors.
Funding
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Abstract
The surface area of the human cerebral cortex undergoes dramatic expansion during late fetal development, leading to cortical folding, an evolutionary feature not present in rodents. Microcephaly is a neurodevelopmental disorder defined by an abnormally small brain, and many gene mutations have been found to be associated with primary microcephaly. However, mouse models generated by ablating primary microcephaly-associated genes often fail to recapitulate the severe loss of cortical surface area observed in individuals with this pathology. Here, we show that a mouse model with deficient expression of high-mobility group nucleosomal binding domain 2 (HMGN2) manifests microcephaly with reduced cortical surface area and almost normal radial corticogenesis, with a pattern of incomplete penetrance. We revealed that altered cleavage plane and mitotic delay of ventricular radial glia may explain the rising ratio of intermediate progenitor cells to radial glia and the displacement of neural progenitor cells in microcephalic mutant mice. These led to decreased self-renewal of the radial glia and reduction in lateral expansion. Furthermore, we found that HMGN2 protected corticogenesis by maintaining global chromatin accessibility mainly at promoter regions, thereby ensuring the correct regulation of the transcriptome. Our findings underscore the importance of the regulation of chromatin structure in cortical development and highlight a mouse model with critical insights into the etiology of microcephaly.
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