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Altered trafficking and processing of galc mutants correlates with globoid cell leukodystrophy severity

  • SUNY Buffalo

Research output: Contribution to journalArticlepeer-review

38 Scopus citations

Abstract

Globoid cell leukodystrophy (GLD, Krabbe disease) is due to autosomal recessive mutations in the lysosomal enzyme galactosylceramidase (GALC). Many GLD patients develop infantile-onset of progressive neurologic deterioration and death by 2 years of age, whereas others have a later-onset, milder disease. Cord blood transplant slows disease progression much more effectively when performed presymptomatically, highlighting the importance of early diagnosis. Current diagnosis is based on reduced GALCactivity, DNA sequence, and clinical examination. However, presymptomatic diagnosis is hampered by imperfect genotype-GALC activity-phenotype correlations. In addition, three polymorphisms in the GALC gene are variably associated with disease mutations and have unknown effects on GALC activity and disease outcome. Here, we study mutations that cause infantile or later-onset GLD, and show that GALC activity is significantly lower in infantile versus later-onset mutants when measured in the lysosomal fraction, but not in whole-cell lysates. In parallel, infantile-onset mutant GALCs showed reduced trafficking to lysosomes and processing than later-onset mutant GALCs. Finally, the cis-polymorphisms also affected trafficking to the lysosome and processing of GALC. These differences potentially explain why the activity of different mutations appears similar in whole-cell extracts from lymphocytes, and suggest that measure of GALC activity in lysosomes may better predict the onset and severity of disease for a given GLD genotype.

Original languageEnglish
Pages (from-to)1858-1870
Number of pages13
JournalJournal of Neuroscience
Volume36
Issue number6
DOIs
StatePublished - Feb 10 2016

Keywords

  • Galactosylceramidase
  • Globoid cell leukodystrophy
  • Krabbe disease
  • Lysosomal processing
  • Lysosomal storage disorders
  • Protein trafficking

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