Germline recessive mutations in PI4KA are associated with perisylvian polymicrogyria, cerebellar hypoplasia and arthrogryposis

نویسندگان

  • Alistair T. Pagnamenta
  • Malcolm F. Howard
  • Eva Wisniewski
  • Niko Popitsch
  • Samantha J.L. Knight
  • David A. Keays
  • Gerardine Quaghebeur
  • Helen Cox
  • Phillip Cox
  • Tamas Balla
  • Jenny C. Taylor
  • Usha Kini
چکیده

Polymicrogyria (PMG) is a structural brain abnormality involving the cerebral cortex that results from impaired neuronal migration and although several genes have been implicated, many cases remain unsolved. In this study, exome sequencing in a family where three fetuses had all been diagnosed with PMG and cerebellar hypoplasia allowed us to identify regions of the genome for which both chromosomes were shared identical-by-descent, reducing the search space for causative variants to 8.6% of the genome. In these regions, the only plausibly pathogenic mutations were compound heterozygous variants in PI4KA, which Sanger sequencing confirmed segregated consistent with autosomal recessive inheritance. The paternally transmitted variant predicted a premature stop mutation (c.2386C>T; p.R796X), whereas the maternally transmitted variant predicted a missense substitution (c.5560G>A; p.D1854N) at a conserved residue within the catalytic domain. Functional studies using expressed wild-type or mutant PI4KA enzyme confirmed the importance of p.D1854 for kinase activity. Our results emphasize the importance of phosphoinositide signalling in early brain development.

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PMG: Polymicrogyria BFPP: Bilateral frontoparietal PMG BPP: Bilateral perisylvian PMG CNV: copy number variants EEG: Electroencephalogram ILS: isolated LIS LIS: Lissencephaly MCD: Malformations of cortical development MLPA: Multiplex Ligation-dependent Probe Amplification MRI: Magnetic resonance imaging MDS: Miller-Dieker syndrome

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عنوان ژورنال:

دوره 24  شماره 

صفحات  -

تاریخ انتشار 2015