Your browser doesn't support javascript.
loading
Rare Variants Analyses Suggest Novel Cleft Genes in the African Population.
Alade, Azeez; Mossey, Peter; Awotoye, Waheed; Busch, Tamara; Oladayo, Abimbola; Aladenika, Emmanuel; Olujitan, Mojisola; Gowans, J J Lord; Eshete, Mekonen A; Adeyemo, Wasiu L; Zeng, Erliang; Otterloo, Eric; O'Rorke, Michael; Adeyemo, Adebowale; Murray, Jeffrey C; Cotney, Justin; Lachke, Salil A; Romitti, Paul; Butali, Azeez; Wentworth, Emma; Anand, Deepti; Naicker, Thirona.
Afiliación
  • Alade A; University of Iowa.
  • Mossey P; University of Dundee.
  • Awotoye W; University of Iowa.
  • Busch T; University of Iowa.
  • Oladayo A; University of Iowa.
  • Aladenika E; University of Iowa.
  • Olujitan M; University of Iowa.
  • Gowans JJL; Komfo Anokye Teaching Hospital and Kwame Nkrumah University of Science and Technology.
  • Eshete MA; Addis Ababa University.
  • Adeyemo WL; University of Lagos.
  • Zeng E; University of Iowa.
  • Otterloo E; University of Iowa.
  • O'Rorke M; University of Iowa.
  • Adeyemo A; National Human Genomic Research Institute.
  • Murray JC; University of Iowa.
  • Cotney J; University of Connecticut.
  • Lachke SA; University of Delaware.
  • Romitti P; University of Iowa.
  • Butali A; University of Iowa.
  • Wentworth E; University of Connecticut.
  • Anand D; University of Delaware.
  • Naicker T; University of KwaZulu-Natal.
Res Sq ; 2024 Feb 27.
Article en En | MEDLINE | ID: mdl-38464065
ABSTRACT
Non-syndromic orofacial clefts (NSOFCs) are common birth defects with a complex etiology. While over 60 common risk loci have been identified, they explain only a small proportion of the heritability for NSOFC. Rare variants have been implicated in the missing heritability. Thus, our study aimed to identify genes enriched with nonsynonymous rare coding variants associated with NSOFCs. Our sample included 814 non-syndromic cleft lip with or without palate (NSCL/P), 205 non-syndromic cleft palate only (NSCPO), and 2150 unrelated control children from Nigeria, Ghana, and Ethiopia. We conducted a gene-based analysis separately for each phenotype using three rare-variants collapsing models (1) protein-altering (PA), (2) missense variants only (MO); and (3) loss of function variants only (LOFO). Subsequently, we utilized relevant transcriptomics data to evaluate associated gene expression and examined their mutation constraint using the gnomeAD database. In total, 13 genes showed suggestive associations (p = E-04). Among them, eight genes (ABCB1, ALKBH8, CENPF, CSAD, EXPH5, PDZD8, SLC16A9, and TTC28) were consistently expressed in relevant mouse and human craniofacial tissues during the formation of the face, and three genes (ABCB1, TTC28, and PDZD8) showed statistically significant mutation constraint. These findings underscore the role of rare variants in identifying candidate genes for NSOFCs.
Palabras clave

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Res Sq Año: 2024 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Res Sq Año: 2024 Tipo del documento: Article