A comprehensive analysis of AHRR gene as a candidate for cleft lip with or without cleft palate
Bianca Domit Werner Linnenkamp1, Salmo Raskin2, Selene Elifio Esposito3
1Graduate Program in Health Sciences, School of Medicine, Pontifícia Universidade Católica do Paraná (PUCPR), Curitiba, Paraná, Brazil.
Insights
The Aryl-Hydrocarbon Receptor Repressor (AHRR) gene is a key player in cleft lip and palate (CL/P) development. Its interaction with environmental factors like smoking highlights its role in this common congenital malformation.
Area of Science:
- Genetics and Developmental Biology
- Environmental Health
- Congenital Malformations
Background:
- Cleft lip and palate (CL/P) is a common congenital malformation affecting 1 in 700 newborns.
- CL/P etiology involves complex genetic and environmental interactions, necessitating the identification of novel causal genes.
- The Aryl-Hydrocarbon Receptor Repressor (AHRR) gene has emerged as a potential candidate, but its genotype-phenotype interaction in CL/P requires further investigation.
Purpose of the Study:
- To investigate the role of the Aryl-Hydrocarbon Receptor Repressor (AHRR) gene in the etiology of cleft lip and palate (CL/P).
- To explore the functional significance of AHRR in relation to genetic and environmental factors implicated in CL/P.
- To analyze the genotype-phenotype interactions involving AHRR in CL/P development.
Main Methods:
- A systematic literature review was conducted using the PubMed database.
- Keywords included "cleft lip," "cleft palate," "orofacial cleft," and "AHRR" and synonyms.
- In silico analyses were performed to examine gene interactions and pathways.
Main Results:
- AHRR is identified as a positional and functional candidate gene for CL/P.
- In silico analysis revealed interactions between AHRR and other CL/P-associated genes (e.g., ARNT, CYP1A1).
- AHRR's role in regulating cellular toxicity via the AHR pathway and its impact on palate fusion were highlighted. AHRR is also a smoking biomarker, linking maternal smoking and folate status to CL/P risk.
Conclusions:
- The Aryl-Hydrocarbon Receptor Repressor (AHRR) gene plays a significant role in dioxin response and CL/P development.
- This study demonstrates a crucial example of gene-environment interaction in complex diseases.
- AHRR's function in cellular growth, differentiation, and response to environmental toxins underscores its importance in orofacial development.
Abstract:
Cleft lip and palate (CL/P) is among the most common congenital malformations and affects 1 in 700 newborns. CL/P is caused by genetic and environmental factors (maternal smoking, alcohol or drug use and others). Many genes and loci were associated with cleft lip/palate but the amount of heterogeneity justifies identifying new causal genes and variants. AHRR (Aryl-Hydrocarbon Receptor Repressor) gene has recently been related to CL/P however, few functional studies analyze the genotypephenotype interaction of AHRR with CL/P. Several studies associate the molecular pathway of AHRR to CL/P which indicates this gene as a functional candidate in CL/P etiology.
Methods:
Systematic Literature Review was performed using PUBMED database with the keywords cleft lip, cleft palate, orofacial cleft, AHRR and synonyms. SLR resulted in 37 included articles.
Results:
AHRR is a positional and functional candidate gene for CL/P. In silico analysis detected interactions with other genes previously associated to CL/P like ARNT and CYP1A1. AHRR protein regulates cellular toxicity through TCDD mediated AHR pathway. Exposure to TCDD in animal embryos is AHR mediated and lead to cleft palate due to palate fusion failure and post fusion rupture. AHRR regulates cellular growth and differentiation, fundamental to lip and palatogenesis. AHRR decreases carcinogenesis and recently a higher tumor risk has been described in CL/P patients and families. AHRR is also a smoking biomarker due to changed methylation sites found in smokers DNA although folate intake may partially revert these methylation alterations. This corroborates the role of maternal smoking and lack of folate supplementation as risk factors for CL/P.
Conclusion:
This research identified the importance of AHRR in dioxin response and demonstrated an example of genetic and environmental interaction, indispensable in the development of many complex diseases.
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