1. Academic Validation
  2. Mutation of the PDGFRB gene as a cause of idiopathic basal ganglia calcification

Mutation of the PDGFRB gene as a cause of idiopathic basal ganglia calcification

  • Neurology. 2013 Jan 8;80(2):181-7. doi: 10.1212/WNL.0b013e31827ccf34.
Gaël Nicolas 1 Cyril Pottier David Maltête Sophie Coutant Anne Rovelet-Lecrux Solenn Legallic Stéphane Rousseau Yvan Vaschalde Lucie Guyant-Maréchal Jérôme Augustin Olivier Martinaud Luc Defebvre Pierre Krystkowiak Jérémie Pariente Michel Clanet Pierre Labauge Xavier Ayrignac Romain Lefaucheur Isabelle Le Ber Thierry Frébourg Didier Hannequin Dominique Campion
Affiliations

Affiliation

  • 1 Inserm U1079, University Hospital and Faculty of Medicine, Rouen.
Abstract

Objectives: To identify a new idiopathic basal ganglia calcification (IBGC)-causing gene.

Methods: In a 3-generation family with no SLC20A2 mutation, we performed whole exome sequencing in 2 affected first cousins, once removed. Nonsynonymous coding variants, splice acceptor and donor site variants, and frameshift coding indels (NS/SS/I) were filtered against dbSNP131, the HapMap Project, 1000 Genomes Project, and our in-house database including 72 exomes.

Results: Seventeen genes were affected by identical unknown NS/SS/I variations in the 2 patients. After screening the relatives, the p.Leu658Pro substitution within the PDGFRB gene remained the sole unknown mutation segregating with the disease in the family. This variation, which is predicted to be highly damaging, was present in 13 of 13 affected subjects and absent in 8 relatives without calcifications. Sequencing PDGFRB of 19 other unrelated IBGC cases allowed us to detect another potentially pathogenic substitution within PDGFRB, p.Arg987Trp, also predicted to be highly damaging. PDGFRB encodes a protein involved in angiogenesis and in the regulation of inorganic phosphate (Pi) transport in vascular smooth muscle cells via Pit-1, a Pi transporter encoded by SLC20A1.

Conclusion: Mutations of PDGFRB further support the involvement of this biological pathway in IBGC pathophysiology.

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