Whole exome sequencing and cluster analysis reveal that EPB41L4A mutation may trigger tooth agenesis

Objective To detect and analyze the correlation between commonly mutated genes and known genes associated with tooth agenesis in patients with non-syndromic tooth agenesis. The aim is to explore new genes that may be associated with tooth agenesis, to provide a genetic reference for its prevention as well as for the clinical diagnosis and treatment of tooth agenesis. Methods Genomic DNA was extracted from the peripheral blood of 18 congenitally edentulous subjects, and related gene mutations were identified by whole-exome sequencing. The genes related to maxillofacial development and the known pathogenic gene sequences of congenital tooth agenesis were selected for local alignment analysis of pairwise sequences, and the metric relationship of related sequences was determined. Hierarchical and fuzzy clustering methods were used for cluster analysis. Results Hierarchical clustering and fuzzy clusterings yielded consistent results. The EPB41L4A gene clustered with a large number of well-known and well-defined genes associated with tooth agenesis. From the perspective of cluster analysis, it can be inferred that the genes clustered together generally have similar functions. Conclusion EPB41L4A , which is involved in the Wnt pathway, may be a candidate gene warranting further investigation.

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Publication Details

Journal
PLoS ONE
Published
2026-09-09
DOI
https://doi.org/10.1371/journal.pone.0357667
Primary Topic
dental development and anomalies
Type
article
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article

Whole exome sequencing and cluster analysis reveal that EPB41L4A mutation may trigger tooth agenesis

Kegui Hou, Huijuan Wang, Qin Zhang, Zhaofeng Ma et al.
PLoS ONE
dental development and anomalies
article

Whole exome sequencing and cluster analysis reveal that EPB41L4A mutation may trigger tooth agenesis

Kegui Hou, Huijuan Wang, Qin Zhang, Zhaofeng Ma, Leo Li, Xiang-Yu Zhang, Bing-Yu Lu
article en

Abstract

Objective To detect and analyze the correlation between commonly mutated genes and known genes associated with tooth agenesis in patients with non-syndromic tooth agenesis. The aim is to explore new genes that may be associated with tooth agenesis, to provide a genetic reference for its prevention as well as for the clinical diagnosis and treatment of tooth agenesis. Methods Genomic DNA was extracted from the peripheral blood of 18 congenitally edentulous subjects, and related gene mutations were identified by whole-exome sequencing. The genes related to maxillofacial development and the known pathogenic gene sequences of congenital tooth agenesis were selected for local alignment analysis of pairwise sequences, and the metric relationship of related sequences was determined. Hierarchical and fuzzy clustering methods were used for cluster analysis. Results Hierarchical clustering and fuzzy clusterings yielded consistent results. The EPB41L4A gene clustered with a large number of well-known and well-defined genes associated with tooth agenesis. From the perspective of cluster analysis, it can be inferred that the genes clustered together generally have similar functions. Conclusion EPB41L4A , which is involved in the Wnt pathway, may be a candidate gene warranting further investigation.

PLoS ONEVol. 21(9)
Shunyi Hospital of Beijing Traditional Chinese Medicine Hospital (CN), Tianjin Medical University (CN)
Openalex Percentile: Top 18%
dental development and anomalies
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Whole exome sequencing and cluster analysis reveal that EPB41L4A mutation may trigger tooth agenesis — Kegui Hou, Huijuan Wang, et al. · PLoS ONE (2026) | TGRS Research Map | TGRS