Přehled o publikaci
2024
Early embryogenesis in CHDFIDD mouse model reveals facial clefts and altered cranial neurogenesis
HAMPL, Marek, Nela JANDOVÁ, Denisa LUSKOVÁ, Monika NOVÁKOVÁ, Tereza SZOTKOWSKÁ et. al.Basic information
Original name
Early embryogenesis in CHDFIDD mouse model reveals facial clefts and altered cranial neurogenesis
Authors
HAMPL, Marek, Nela JANDOVÁ, Denisa LUSKOVÁ, Monika NOVÁKOVÁ, Tereza SZOTKOWSKÁ, Štěpán ČADA, Jan PROCHÁZKA, Jiří KOHOUTEK and Marcela BUCHTOVÁ
Edition
Mechanisms, Company of Biologists Ltd, 2024, 1754-8403
Other information
Language
English
Type of outcome
Article in a journal
Country of publisher
United Kingdom of Great Britain and Northern Ireland
Confidentiality degree
is not subject to a state or trade secret
References:
Organization
Přírodovědecká fakulta – Repository – Repository
UT WoS
001267747400003
EID Scopus
2-s2.0-85197352924
Keywords in English
Craniofacial development; Orofacial clefts; Axons; Neurite outgrowth; CDK13; Trigeminal ganglion
Links
GA19-01205S, research and development project. LX22NPO5102, research and development project. Czech-BioImaging II, large research infrastructures.
Changed: 28/3/2025 00:50, RNDr. Daniel Jakubík
Abstract
V originále
Congenital heart defects, facial dysmorphism and intellectual development disorder (CHDFIDD) is associated with mutations in CDK13 gene, which encodes a transcription regulating Cyclin-dependent kinase 13 (CDK13). Here, we focused on development of craniofacial structures and analyzed early embryonic stages of CHDFIDD mouse models with hypomorphic mutation in Cdk13 gene, which exhibits cleft lip/palate and knockout of Cdk13 with stronger phenotype including midfacial cleft. Cdk13 was found to be physiologically strongly expressed in the mouse embryonic craniofacial structures, namely in the forebrain, nasal epithelium and maxillary mesenchyme. We also uncovered that Cdk13-deficiency leads to development of hypoplastic branches of the trigeminal nerve including maxillary branch and additionally, we detected significant gene expression changes of molecules involved in neurogenesis (Ache, Dcx, Mef2c, Neurog1, Ntn1, Pou4f1) within the developing palatal shelves. These results, together with changes of gene expression of other key face-specific molecules (Fgf8, Foxd1, Msx1, Meis2 and Shh) at early stages in Cdk13 mutant embryos, demonstrate a key role of CDK13 in regulation of craniofacial morphogenesis.