EHMT2 Controls Neural Crest-Derived Craniofacial Development but is Dispensable in Limb Development
Liu, Y.; Zhao, Y.; Liu, M.; Kim, P.; Liao, J.; Lu, D.; Liu, H.; Szabo, P.; Yang, T.
Show abstract
Post-translational modifications of histones, such as methylation of histone H3 at lysine 9 (H3K9), play critical roles in regulating chromatin structure and gene expression. EHMT2 (also called G9A), a histone methyltransferase, mediates H3K9 mono- and dimethylation and has been implicated in both transcriptional repression and context-specific gene activation. Although global knockout of the mouse Ehmt2 gene results in early embryonic lethality, tissue-specific knockouts have uncovered diverse roles in organ development. However, how EHMT2 contributes to skeletal development in a lineage-specific manner remains to be fully elucidated. Here, we investigated the role of EHMT2 in skeletal development by conditionally inactivating Ehmt2 in neural crest-derived and mesoderm-derived progenitors using Wnt1-Cre and Prx1-Cre mouse lines, respectively. Loss of Ehmt2 function in neural crest cells led to postnatal growth failure and craniofacial defects, including delayed intramembranous ossification and malformations of the jaw and cranial base. Transcriptomic analysis of neural crest cells revealed disrupted chromatin regulatory networks, reduced expression of proliferation-associated genes, and upregulation of inflammatory pathways. In contrast, inactivation of Ehmt2 in Prx1-expressing mesodermal progenitors had minimal impact on limb and cranial bone development, with no significant alterations in bone mass or osteoblast function. Together, these results reveal a lineage-specific requirement for EHMT2 in neural crest-derived skeletal tissues, suggesting that distinct progenitor populations exhibit differential dependency for bone development.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Control of Craniofacial Development by the Collagen Receptor, Discoidin Domain Receptor 2 97%
- MicroRNA-27a is essential for bone remodeling by modulating p62-mediated osteoclast signaling 97%
- Lipolysis of bone marrow adipocytes is required to fuel bone and the marrow niche during energy deficits 96%
Similar papers in this journal
- Control of alveolar bone development, homeostasis, and socket healing by salt inducible kinases 96%
- Spatial Transcriptomics Reveals the Requirement of ADGRG6 in Maintaining Chondrocyte Homeostasis in Mouse Growth Plates 96%
- Dmp1Cre-directed knockdown of PTHrP in murine decidua is associated with increased bone width and a life-long increase in strength specific to male progeny 95%
Similar papers in this journal
- Basigin Links Altered Skeletal Stem Cell Lineage Dynamics with Glucocorticoid-induced Bone Loss and Impaired Angiogenesis 96%
- Osteocyte Transcriptome Mapping Identifies a Molecular Landscape Controlling Skeletal Homeostasis and Susceptibility to Skeletal Disease 95%
- SARS-CoV-2 infection induces inflammatory bone loss in golden Syrian hamsters 95%
Similar papers in this journal
- CD13 is a Critical Regulator of Cell-cell Fusion in Osteoclastogenesis 95%
- Mechanical loading of cranial joints minimizes the craniofacial phenotype in Crouzon syndrome 93%
- Similarities and differences between IL11 and IL11RA1 knockout mice for lung fibro-inflammation, fertility and craniosynostosis 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.