British Journal of Haematology · 2018 · 16 citations · 11 references
Establishing a precise diagnosis is essential in inborn haematological cytopenias to enable appropriate treatment decisions and avoid secondary organ damage. However, both diversity and phenotypic overlap of distinct disease entities may make the identification of underlying genetic aetiologies by classical Sanger sequencing challenging. Instead of exome sequencing, we established a systematic next generation sequencing-based panel targeting 292 candidate genes and screened 38 consecutive patients for disease-associated mutations. Efficient identification of the underlying genetic cause in 17 patients (44·7%), including 13 novel mutations, demonstrates that this approach is time- and cost-efficient, enabling optimal management and genetic counselling.
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Clinical Whole-Exome Sequencing for the Diagnosis of Mendelian Disorders
Yaping Yang, Donna M. Muzny, Jeffrey G. Reid et al. · New England Journal of Medicine · 2013 · 1.9K citations · Full text
Mutations in the mechanotransduction protein PIEZO1 are associated with hereditary xerocytosis
Ryan Zarychanski, Vincent Schulz, Brett L. Houston et al. · Blood · 2012 · 440 citations · Full text
Juliette Albuisson, Swetha E. Murthy, Michael Bandell et al. · Nature Communications · 2013 · 374 citations · Full text
Signal Transduction, Molecular Physiology, Molecular Biology +7