4.7 Article

KIAA1109 Variants Are Associated with a Severe Disorder of Brain Development and Arthrogryposis

Journal

AMERICAN JOURNAL OF HUMAN GENETICS
Volume 102, Issue 1, Pages 116-132

Publisher

CELL PRESS
DOI: 10.1016/j.ajhg.2017.12.002

Keywords

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Funding

  1. Swiss National Science Foundation [31003A_160203]
  2. Lithuanian Swiss cooperation program to reduce economic and social disparities within the enlarged European Union (Unigene project) [CH-3-SMM-0104]
  3. King Abdulaziz City for Science and Technology grant [13BIO-1113-20]
  4. Saudi Human Genome Program
  5. Health Innovation Challenge Fund [HICF-1009-003]
  6. Wellcome Trust
  7. Department of Health
  8. Wellcome Trust Sanger Institute [WT098051]
  9. National Institute for Health Research, through the Comprehensive Clinical Research Network

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Whole-exome and targeted sequencing of 13 individuals from 10 unrelated families with overlapping clinical manifestations identified loss-of-function and missense variants in KIAA1109 allowing delineation of an autosomal-recessive multi-system syndrome, which we suggest to name Alkuraya-Kucinskas syndrome (MIM 617822). Shared phenotypic features representing the cardinal characteristics of this syndrome combine brain atrophy with clubfoot and arthrogryposis. Affected individuals present with cerebral parenchymal underdevelopment, ranging from major cerebral parenchymal thinning with lissencephalic aspect to moderate parenchymal rarefaction, severe to mild ventriculomegaly, cerebellar hypoplasia with brainstem dysgenesis, and cardiac and ophthalmologic anomalies, such as microphthalmia and cataract. Severe loss-of-function cases were incompatible with life, whereas those individuals with milder missense variants presented with severe global developmental delay, syndactyly of 2nd and 3rd toes, and severe muscle hypotonia resulting in incapacity to stand without support. Consistent with a causative role for KIAA1109 loss-of-function/hypomorphic variants in this syndrome, knockdowns of the zebrafish orthologous gene resulted in embryos with hydrocephaly and abnormally curved notochords and overall body shape, whereas published knockouts of the fruit fly and mouse orthologous genes resulted in lethality or severe neurological defects reminiscent of the probands' features.

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