Mechanism of Crosstalk between m6A Modification and Epigenetic Regulation
Crosstalk ID
M6ACROT05751
[1]
m6A modification miR-196b-5p miR-196b-5p METTL3 Methylation : m6A sites Direct Inhibition Non-coding RNA miR-196b-5p Regulated Target  lncRNA       miRNA   circRNA
m6A Modification:
m6A Regulator Methyltransferase-like 3 (METTL3) WRITER
m6A Target hsa-miR-196b-5p
Epigenetic Regulation that have Cross-talk with This m6A Modification:
Epigenetic Regulation Type Non-coding RNA (ncRNA)
Epigenetic Regulator hsa-miR-196b-5p microRNA View Details
Crosstalk Relationship m6A  →  ncRNA Inhibition
Crosstalk Mechanism m6A regulators directly modulate the functionality of ncRNAs through specific targeting ncRNA
Crosstalk Summary METTL3 Promotes Osteo/Odontogenic Differentiation of Stem Cells by Inhibiting hsa-miR-196b-5p Maturation.
Responsed Disease Structural developmental anomalies of teeth and periodontal tissues ICD-11: LA30.5
Cell Process Cell migration
Cell invasion
Cell proliferation
In-vitro Model
Ca Ski Cervical squamous cell carcinoma Homo sapiens CVCL_1100
SiHa Cervical squamous cell carcinoma Homo sapiens CVCL_0032
End1/E6E7 Normal Homo sapiens CVCL_3684
HUCECs (Human Uterine Cervical Epithelial Cells)
In-vivo Model A total of 2.0 × 106 SCAPs were mixed with 20 mg HA/tricalcium phosphate (Engineering Research Center for Biomaterials, Sichuan University, Chengdu, China) at 37°C for 2 h, and then, the mixture was subcutaneously transplanted into the back of nude mice (10-week-old female, nu/nu).
References
Ref 1 METTL3 Promotes Osteo/Odontogenic Differentiation of Stem Cells by Inhibiting miR-196b-5p Maturation. Stem Cells Int. 2023 Jun 7;2023:8992284. doi: 10.1155/2023/8992284. eCollection 2023.