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Simple PCR amplification of the entire glucocerebrosidase gene (GBA) coding region for diagnostic sequence analysis
U Finckh1, P Seeman, O C von Widdern
1AG Molekulare Neurobiologie am Institut für Neuropsychopharmakologie, Freie Universität Berlin, Germany.
Abstract:
Mutations in the human glucocerebrosidase gene (GBA) may lead to Gaucher disease-an autosomal recessive, lysosomal storage disease. In about 15-25% of Caucasian patients with Gaucher disease yet the disease-causing mutations remain to be identified. There exists 16kb downstream from the functional GBA gene (chromosome 1q21) a highly homologous transcribed pseudogene (GBAP) with some sequence differences to GBA. These sequence differences might erroneously imitate a true mutation in the functional gene if an unintentional co-investigation of the pseudogene occurred. We describe a protocol which allows the selective analysis of a PCR-amplified 7.1 kb genomic GBA-fragment encompassing the entire GBA coding region. Direct, nonradioactive double stranded cycle-sequencing procedure of nested PCR fragments from this long range GBA-specific product allowed the sequencing of the coding exons including the flanking splice sites. Several, so far unknown coding mutation were identified in non-Jewish families with Gaucher disease. This protocol allows the rapid detection of new GBA mutations.