4.5 Article

Homozygous PLCB1 deletion associated with malignant migrating partial seizures in infancy

期刊

EPILEPSIA
卷 53, 期 8, 页码 E146-E150

出版社

WILEY-BLACKWELL
DOI: 10.1111/j.1528-1167.2012.03538.x

关键词

Focal epilepsy; Migrating partial seizures in infancy; Genetics; Phospholipase C beta 1

资金

  1. NINDS [K23NS069784, R01NS035129, R01NS035129S]
  2. Action Medical Research and Great Ormond Street Children's Charities
  3. College of Medicine Research Center (CMRC) [07-581]
  4. College of Medicine, King Saud University, Riyadh, Saudi Arabia
  5. John Merck Fund
  6. Nancy Lurie Marks Family Foundation
  7. Manton Center for Orphan Disease Research
  8. National Health and Medical Research Council of Australia
  9. Health Research Council of New Zealand
  10. University of Melbourne
  11. American Epilepsy Society
  12. Jack Brockhoff Foundation
  13. Shepherd Foundation
  14. Perpetual Charitable Trustees
  15. Action Medical Research
  16. Chinese National 973 project on Population and Health [2010CB529601]
  17. Science and Technology Council of Shanghai [09JC1402400]
  18. NIMH [NIMH1RC2MH089952]
  19. Dubai Harvard Foundation for Medical Research
  20. Simons Foundation
  21. Pharming Group
  22. Luke O'Brien Foundation
  23. Athena Diagnostics
  24. UCB
  25. Biocodex
  26. Janssen-Cilag EMEA
  27. Novartis [NCT00789828]
  28. Action Medical Research [1722] Funding Source: researchfish
  29. Great Ormond Street Hospital Childrens Charity [ICH1031] Funding Source: researchfish

向作者/读者索取更多资源

Malignant migrating partial seizures in infancy (MMPEI) is an early onset epileptic encephalopathy with few known etiologies. We sought to identify a novel cause of MMPEI in a child with MMPEI whose healthy parents were consanguineous. We used array comparative genomic hybridization (CGH) to identify copy number variants genome-wide and long-range polymerase chain reaction to further delineate the breakpoints of a deletion found by CGH. The proband had an inherited homozygous deletion of chromosome 20p13, disrupting the promoter region and first three coding exons of the gene PLCB1. Additional MMPEI cases were screened for similar deletions or mutations in PLCB1 but did not harbor mutations. Our results suggest that loss of PLC beta 1 function is one cause of MMPEI, consistent with prior studies in a Plcb1 knockout mouse model that develops early onset epilepsy. We provide novel insight into the molecular mechanisms underlying MMPEI and further implicate PLCB1 as a candidate gene for severe childhood epilepsies. This work highlights the importance of pursuing genetic etiologies for severe early onset epilepsy syndromes.

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