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Published on: August 15, 2019
PVRL1 variants contribute to non-syndromic cleft lip and palate in multiple populations
Joseph R Avila1, Peter A Jezewski, Alexandre R Vieira
1Department of Cytokine Biology, The Forsyth Institute and Department of Developmental Biology, Harvard School of Dental Medicine, Boston, Massachusetts, USA.
Insights
Mutations in Poliovirus Receptor Like-1 (PVRL1) contribute to sporadic orofacial clefting by disrupting cell adhesion and embryonic facial development. Both common and rare variants play a minor role in these conditions.
Area of Science:
- Genetics
- Developmental Biology
- Molecular Biology
Background:
- Poliovirus Receptor Like-1 (PVRL1) is crucial for epithelial adherens junctions and is linked to cleft lip and palate/ectodermal dysplasia 1 syndrome.
- Previous studies indicated a potential role for PVRL1 mutations in non-syndromic clefting.
Purpose of the Study:
- To investigate the involvement of PVRL1 in sporadic orofacial clefting across diverse populations.
- To identify and analyze rare and common genetic variants in PVRL1 associated with clefting phenotypes.
Main Methods:
- Sequencing of PVRL1 splice isoforms in cases and controls from Iowa and the Philippines.
- Family-based association analysis of identified PVRL1 variants, including G361V, S112T, and T131A.
- Genotyping of over 800 families and screening of over 1,300 controls.
Main Results:
- The common glycine allele of the G361V variant was significantly overtransmitted in families with orofacial clefting (P = 0.005).
- Rare variants S112T and T131A were identified in critical regions of the PVRL1 V1 domain.
- The T131A variant was absent in controls, while S112T occurred at a conserved position.
Conclusions:
- Both rare and common PVRL1 mutations contribute to sporadic orofacial clefting.
- These mutations likely impair cell-to-cell adhesion and embryonic facial morphogenesis.
- PVRL1 variants represent a minor genetic factor in the etiology of orofacial clefts.
Abstract:
Poliovirus Receptor Like-1 (PVRL1) is a member of the immunoglobulin super family that acts in the initiation and maintenance of epithelial adherens junctions and is mutated in the cleft lip and palate/ectodermal dysplasia 1 syndrome (CLPED1, OMIM #225000). In addition, a common non-sense mutation in PVRL1 was discovered more often among non-syndromic sporadic clefting cases in Northern Venezuela in a previous case-control study. The present work sought to ascertain the role of PVRL1 in the sporadic forms of orofacial clefting in multiple populations. Multiple rare and common variants from all three splice isoforms were initially ascertained by sequencing 92 Iowan and 86 Filipino cases and CEPH controls. Using a family-based analysis to examine these variants, the common glycine allele of the G361V coding variant was significantly overtransmitted among all orofacial clefting phenotypes (P = 0.005). This represented G361V genotyping from over 800 Iowan, Danish, and Filipino families. Among four rare amino acid changes found within the V1 and C1 domains, S112T and T131A were found adjacent to critical amino acid positions within the V1 variable domain, regions previously shown to mediate cell-to-cell and cell-to-virus adhesion. The T131A variant was not found in over 1,300 non-affected control samples although the alanine is found in other species. The serine of the S112T variant position is conserved across all known PVRL1 sequences. Together these data suggest that both rare and common mutations within PVRL1 make a minor contribution to disrupting the initiation and regulation of cell-to-cell adhesion and downstream morphogenesis of the embryonic face.
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