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Mutations in FLVCR2 Are Associated with Proliferative Vasculopathy and Hydranencephaly-Hydrocephaly Syndrome (Fowler Syndrome)

  • Esther Meyer
  • , Christopher Ricketts
  • , Neil V. Morgan
  • , Mark R. Morris
  • , Shanaz Pasha
  • , Louise J. Tee
  • , Fatimah Rahman
  • , Anne Bazin
  • , Bettina Bessières
  • , Pierre Déchelotte
  • , Mohamed T. Yacoubi
  • , Mudher Al-Adnani
  • , Tamas Marton
  • , David Tannahill
  • , Richard C. Trembath
  • , Catherine Fallet-Bianco
  • , Phillip Cox
  • , Denise Williams
  • , Eamonn R. Maher*
  • *Corresponding author for this work
    • University College Birmingham
    • Sainte-Anne Hospital
    • Université d'Auvergne
    • CHU Farhat-Hached
    • Sheffield Children's NHS Foundation Trust
    • Birmingham Women's Hospital NHS Trust
    • Cranfield University
    • King's College London

    Research output: Contribution to journalArticlepeer-review

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    Abstract

    Proliferative vasculopathy and hydranencephaly-hydrocephaly syndrome (PVHH), also known as Fowler syndrome, is an autosomal-recessively inherited prenatal lethal disorder characterized by hydranencephaly; brain stem, basal ganglia, and spinal cord diffuse clastic ischemic lesions with calcifications; glomeruloid vasculopathy of the central nervous system and retinal vessels; and a fetal akinesia deformation sequence (FADS) with muscular neurogenic atrophy. To identify the molecular basis for Fowler syndrome, we performed autozygosity mapping studies in three consanguineous families. The results of SNP microarrays and microsatellite marker genotyping demonstrated linkage to chromosome 14q24.3. Direct sequencing of candidate genes within the target interval revealed five different germline mutations in FLVCR2 in five families with Fowler syndrome. FLVCR2 encodes a transmembrane transporter of the major facilitator superfamily (MFS) hypothesized to be involved in regulation of growth, calcium exchange, and homeostasis. This is the first gene to be associated with Fowler syndrome, and this finding provides a basis for further studies to elucidate the pathogenetic mechanisms and phenotypic spectrum of associated disorders.

    Original languageEnglish
    Pages (from-to)471-478
    Number of pages8
    JournalAmerican Journal of Human Genetics
    Volume86
    Issue number3
    Early online date4 Mar 2010
    DOIs
    Publication statusPublished - 12 Mar 2010

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