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dc.contributor.authorAkcali, Nermin
dc.contributor.authorYildiz, Saliha Handan
dc.contributor.authorErdogan, Mujgan Ozdemir
dc.contributor.authorEslamkhah, Sajjad
dc.contributor.authorElmas, Muhsin
dc.contributor.authorPehlivan, Aysen
dc.contributor.authorSolak, Mustafa
dc.date.accessioned2025-12-28T16:39:53Z
dc.date.available2025-12-28T16:39:53Z
dc.date.issued2025
dc.identifier.issn0256-7040
dc.identifier.issn1433-0350
dc.identifier.urihttps://doi.org/10.1007/s00381-025-06884-4
dc.identifier.urihttps://hdl.handle.net/20.500.12933/2190
dc.description.abstractBackgroundNeural tube defects (NTDs) are severe congenital malformations with complex and multifactorial etiologies involving genetic, environmental, and metabolic factors. Despite folic acid fortification efforts, a considerable proportion of cases remains unexplained at the molecular level.ObjectiveThis study aimed to identify rare pathogenic variants in patients with NTDs using whole exome sequencing (WES) and to evaluate their functional significance through systems biology approaches.MethodsWES was performed on nine unrelated patients with clinically diagnosed NTDs. Variants were filtered using ACMG-AMP criteria and curated via the Franklin by Genoox platform. Genes carrying pathogenic or likely pathogenic variants were analyzed using STRING for protein-protein interactions and Metascape for functional enrichment.ResultsSeven genes (PAH, ADGRG6, MPDZ, NARS1, ITGB2, PIGV, and STIL) harbored rare, clinically significant variants. Mutation types included missense, stop-gain, and frameshift, with both heterozygous and homozygous inheritance patterns. STRING analysis revealed a subnetwork involving MPDZ and ITGB2, related to tight junction integrity. Metascape analysis identified enrichment in biological processes such as catecholamine metabolism, floor plate development, and immune regulation.ConclusionThis study supports a polygenic and mechanistically diverse model of NTD pathogenesis, wherein rare variants affect developmental pathways including metabolism, cell adhesion, and neurogenesis. Integrating high-throughput sequencing with systems biology enhances variant interpretation and may inform future diagnostics and prevention strategies.
dc.description.sponsorshipDepartment of Medical Genetics, Faculty of Medicine, Afyonkarahisar Health Sciences University [21.DOK.002]
dc.description.sponsorshipThis study was conducted as part of the scientific research project numbered 21.DOK.002 under the Department of Medical Genetics, Faculty of Medicine, Afyonkarahisar Health Sciences University.
dc.language.isoen
dc.publisherSpringer
dc.relation.ispartofChilds Nervous System
dc.rightsinfo:eu-repo/semantics/closedAccess
dc.subjectNTDs
dc.subjectWES
dc.subjectRare pathogenic variants
dc.subjectProtein networks
dc.subjectDevelopmental signaling
dc.titleWhole exome-based variant profiling and functional network characterization in neural tube defects
dc.typeArticle
dc.identifier.orcid0000-0001-9805-4223
dc.departmentAfyonkarahisar Sağlık Bilimleri Üniversitesi
dc.identifier.doi10.1007/s00381-025-06884-4
dc.identifier.volume41
dc.identifier.issue1
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanı
dc.department-temp[Akcali, Nermin; Eslamkhah, Sajjad; Solak, Mustafa] Biruni Univ, Fac Engn & Nat Sci, Dept Mol Biol & Genet, Istanbul TR-34015, Turkiye; [Akcali, Nermin; Eslamkhah, Sajjad; Solak, Mustafa] Biruni Univ, Biruni Univ Res Ctr B MER, TR-34015 Istanbul, Turkiye; [Yildiz, Saliha Handan; Erdogan, Mujgan Ozdemir; Pehlivan, Aysen] Afyonkarahisar Hlth Sci Univ, Fac Med, Dept Med Genet, Afyonkarahisar, Turkiye; [Elmas, Muhsin] Istanbul Medipol Univ, Dept Med Genet, Istanbul, Turkiye
dc.identifier.pmid40613906
dc.identifier.scopus2-s2.0-105010114166
dc.identifier.scopusqualityQ2
dc.identifier.wosWOS:001526734400001
dc.identifier.wosqualityN/A
dc.indekslendigikaynakWeb of Science
dc.indekslendigikaynakScopus
dc.indekslendigikaynakPubMed
dc.snmzKA_WoS_20251227


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