Analysis of a pedigree with inherited factor V deficiency caused by compound heterozygous mutation

To explore the molecular pathogenesis of a family with hereditary factor Ⅴ (FⅤ) deficiency. All the exons, flanking sequences, 5' and 3' untranslated regions of the F5 of the proband, and the corresponding mutation sites of the family members were analyzed via direct DNA sequencing. The CA...

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Veröffentlicht in:Zhōnghuá xuèyèxué zázhì 2021-02, Vol.42 (2), p.135
Hauptverfasser: Guo, Y L, Kong, W Z, Wan, Q, Zheng, W J Y, Xi, J Q, Liu, S Q, Wang, M S, Jin, Y H
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Sprache:chi
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Zusammenfassung:To explore the molecular pathogenesis of a family with hereditary factor Ⅴ (FⅤ) deficiency. All the exons, flanking sequences, 5' and 3' untranslated regions of the F5 of the proband, and the corresponding mutation sites of the family members were analyzed via direct DNA sequencing. The CAT measurement was used to detect the amount of thrombin produced. The ClustalX software was used to analyze the conservation of mutation sites. The online bioinformatics software, Mutation Taster, PolyPhen-2, PROVEAN, LRT, and SIFT were applied to predict the effects of mutation sites on protein function. The Swiss-PdbViewer software was used to analyze the changes in the protein model and intermolecular force before and after amino acid variation. The proband had a heterozygous missense mutation c.1258G>T (p.Gly392Cys) in exon 8 of the F5, and a heterozygous deletion mutation c.4797delG (p.Glu1572Lys fsX19) in exon 14, which results in a frameshift and produces a truncated protein. Her grandfather and father had p.Gly392Cys
ISSN:0253-2727
DOI:10.3760/cma.j.issn.0253-2727.2021.02.008