4.7 Article

Familial thrombocytopenia due to a complex structural variant resulting in a WAC-ANKRD26 fusion transcript

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JOURNAL OF EXPERIMENTAL MEDICINE
卷 218, 期 6, 页码 -

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ROCKEFELLER UNIV PRESS
DOI: 10.1084/jem.20210444

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资金

  1. National Institutes of Health [R01 DK103794, R01 HL146500]
  2. Broad Institute of Massachusetts Institute of Technology and Harvard Center for Mendelian Genomics
  3. National Human Genome Research Institute
  4. National Eye Institute
  5. National Heart, Lung, and Blood Institute [UM1 HG008900]
  6. National Human Genome Research Institute [R01 HG009141]
  7. European Union's Seventh Framework Programme (FP7/2007-2013) [282510]
  8. New York Stem Cell Foundation

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Advances in genome sequencing have helped identify causes for many rare diseases, but complex structural variants like the one described in this study may still be missed by conventional sequencing methods. The discovery of a pathogenic WAC-ANKRD26 fusion transcript resulting from a large complex structural variant highlights the importance of utilizing long-read whole-genome sequencing for comprehensive genetic analyses.
Advances in genome sequencing have resulted in the identification of the causes for numerous rare diseases. However, many cases remain unsolved with standard molecular analyses. We describe a family presenting with a phenotype resembling inherited thrombocytopenia 2 (THC2). THC2 is generally caused by single nucleotide variants that prevent silencing of ANKRD26 expression during hematopoietic differentiation. Short-read whole-exome and genome sequencing approaches were unable to identify a causal variant in this family. Using long-read whole-genome sequencing, a large complex structural variant involving a paired-duplication inversion was identified. Through functional studies, we show that this structural variant results in a pathogenic gain-of-function WAC-ANKRD26 fusion transcript. Our findings illustrate how complex structural variants that may be missed by conventional genome sequencing approaches can cause human disease.

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