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Article detail · 2017 · article

title Neurodevelopmental Disorders Caused by De Novo Variants in iKCNB1/i Genotypes and Phenotypes/title

Journal JAMA Neurology
ISSN2168-6149
YÖKSİS OpenAlex Open access · bronze SJR Q1 JCR Q1 Top 10%
Year2017
Citations110OpenAlex
Percentile%98.1
FWCI8.981.00 = world average
Scopus (SJR)Q1
WoS (JCR)Q1

Data source split

  • YÖKSİSYÖKSİS article record
  • YÖKSİS venueJAMA Neurology
  • Catalog match (ISSN)JAMA Neurology
  • OpenAlexOpenAlex enrichment (abstract, citations, topics)

Abstract

OpenAlex English

Importance: Knowing the range of symptoms seen in patients with a missense or loss-of-function variant in KCNB1 and how these symptoms correlate with the type of variant will help clinicians with diagnosis and prognosis when treating new patients. Objectives: To investigate the clinical spectrum associated with KCNB1 variants and the genotype-phenotype correlations. Design, Setting, and Participants: This study summarized the clinical and genetic information of patients with a presumed pathogenic variant in KCNB1. Patients were identified in research projects or during clinical testing. Information on patients from previously published articles was collected and authors contacted if feasible. All patients were seen at a clinic at one of the participating institutes because of presumed genetic disorder. They were tested in a clinical setting or included in a research project. Main Outcomes and Measures: The genetic variant and its inheritance and information on the patient's symptoms and characteristics in a predefined format. All variants were identified with massive parallel sequencing and confirmed with Sanger sequencing in the patient. Absence of the variant in the parents could be confirmed with Sanger sequencing in all families except one. Results: Of 26 patients (10 female, 15 male, 1 unknown; mean age at inclusion, 9.8 years; age range, 2-32 years) with developmental delay, 20 (77%) carried a missense variant in the ion channel domain of KCNB1, with a concentration of variants in region S5 to S6. Three variants that led to premature stops were located in the C-terminal and 3 in the ion channel domain. Twenty-one of 25 patients (84%) had seizures, with 9 patients (36%) starting with epileptic spasms between 3 and 18 months of age. All patients had developmental delay, with 17 (65%) experiencing severe developmental delay; 14 (82%) with severe delay had behavioral problems. The developmental delay was milder in 4 of 6 patients with stop variants and in a patient with a variant in the S2 transmembrane element rather than the S4 to S6 region. Conclusions and Relevance: De novo KCNB1 missense variants in the ion channel domain and loss-of-function variants in this domain and the C-terminal likely cause neurodevelopmental disorders with or without seizures. Patients with presumed pathogenic variants in KCNB1 have a variable phenotype. However, the type and position of the variants in the protein are (imperfectly) correlated with the severity of the disorder.

Topics

Citations

OpenAlex cited_by_count. Not a WoS or Scopus citation count; those sources have no separate column here.

110citationsOpenAlex · cited_by_count (cache / database)

Authors

35
  1. Kovel Carolien de 1
  2. Steffen Syrbe 2
  3. Eva H Brilstra 3
  4. Nienke Verbeek 4
  5. Bronwyn Kerr 5
  6. Holly Dubbs 6
  7. Allan Bayat 7
  8. Sonal Desai 8
  9. Sakkubai Naidu 9
  10. Siddharth Srivastava 10
  11. SERVER HANDE ÇAĞLAYAN 11
  12. ULUÇ YİŞ DOKUZ EYLÜL ÜNİVERSİTESİ 12
  13. Carol Saunders 13
  14. Martin Rook 14
  15. Susanna Plugge 15
  16. Hiltrud Muhle 16
  17. Zaid Afawi 17
  18. Karl-Martin Klein 18
  19. Vijayakumar Jayaraman 19
  20. Ramakrishnan Rajagopalan 20
  21. Ethan Goldberg 21
  22. Eric Marsh 22
  23. Sudha Kessler 23
  24. Christina Bergqvist 24
  25. Laura K Conlin 25
  26. Bryan L Krok 26
  27. Isabelle Thiffault 27
  28. Manuela Pendziwiat 28
  29. Ingo Helbig 29
  30. Tilman Polster 30
  31. Ingo Borggraefe 31
  32. Johannes R Lemke 32
  33. den Boogaardt van 33
  34. Rikke S Møller 34
  35. Bobby P Koeleman 35