Conference Proceedings

Next-generation sequencing meets genetic diagnostics: Development of a comprehensive workflow for neuromuscular disorders

A Kesari, J Punetha, P Uapinyoying, N Clarke, L Waddell, K North, P Plotz, C Tesi-Rocha, C Bonnemann, C Grosmann, T Bertorini, E Hoffman

NEUROMUSCULAR DISORDERS | PERGAMON-ELSEVIER SCIENCE LTD | Published : 2013

Abstract

Muscle disease shows extensive genetic and allelic heterogeneity, with many genes causing related phenotypes. Some of the gene loci causing muscular dystrophy are the largest in the human genome (e.g. titin, dystrophin) making molecular diagnostics particularly challenging and expensive. Next generation sequencing promises single-test approach to diagnostics. A commonly utilized nextgen approach is whole exome sequence (WES), where hybrid capture of exons enables parallel sequencing of most exons in a single sequencing run. However, WES has an exonic drop-out rate of about 10% – 1 in 10 dystrophin, nebulin, titin or other gene exons would remain ‘non-sequenced’ with the WES approach. Thus, a..

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University of Melbourne Researchers