• Title of article

    Molecular Characterization of a Novel Germline VHL Mutation by Extensive In Silico Analysis in an Indian Family with Von Hippel-Lindau Disease

  • Author/Authors

    Arunachal, Gautham Department of Clinical Genetics - Christian Medical College - Vellore - Tamil Nadu 632004 - India , Pachat, Divya Department of Clinical Genetics - Christian Medical College - Vellore - Tamil Nadu 632004 - India , Priya Doss, C. George School of Biosciences and Technology - VIT University - Vellore - Tamil Nadu 632014 - India , Danda, Sumita Department of Clinical Genetics - Christian Medical College - Vellore - Tamil Nadu 632004 - India , Pai, Rekha Department of Pathology - Christian Medical College - Vellore - Tamil Nadu 632004 - India , Ebenazer, Andrew Department of Pathology - Christian Medical College - Vellore - Tamil Nadu 632004 - India

  • Pages
    9
  • From page
    1
  • To page
    9
  • Abstract
    Von Hippel-Lindau [VHL] disease, an autosomal dominant hereditary cancer syndrome, is well known for its complex genotypephenotype correlations. We looked for germline mutations in the VHL gene in an affected multiplex family with Type 1 VHL disease. Real-Time quantitative PCR for deletions and Sanger sequencing of coding regions along with flanking intronic regions were performed in two affected individuals and one related individual. Direct sequencing identified a novel heterozygous single nucleotide base substitution in both the affected members tested, segregating with VHL phenotype in this family. This variant in exon 3, c.473T>A, results in substitution of leucine, a highly conserved acid, to glutamine at position 158 [p.L158Q] and has not been reported thus far as a variant associated with disease causation. Further, this variant was not observed in 50 age and ethnicity matched healthy individuals. Extensive in silico prediction analysis along with molecular dynamics simulation revealed significant deleterious nature of the substitution L158Q on pVHL. The results of this study when collated support the view that the missense variation p.L158Q in the Elongin C binding domain of pVHL may be disease causing.
  • Keywords
    Von Hippel-Lindau [VHL] disease , Molecular Characterization , Silico Analysis , Novel Germline , Indian Family
  • Journal title
    Genetics Research International
  • Serial Year
    2016
  • Record number

    2608321