Human Mutation · 2019 · 104 citations · 38 references
Cardiometabolic RiskImmunodeficienciesGenetic EpidemiologyPathologyGaa VariantsDisease Gene IdentificationGaa Sequence VariantsClinical GeneticsGenome-wide Association StudyClinical EpidemiologyPublic HealthMolecular DiagnosticsVariant InterpretationPompe DiseaseAutoimmune DiseaseInherited Metabolic DiseaseEpidemiologyMolecular Diagnostic TechniquesPompe RegistryGenetic DisorderMedical GeneticsMedicineLysosomal Storage DiseaseCardiovascular Genetics
Identification of variants in the acid α-glucosidase (GAA) gene in Pompe disease provides valuable insights and systematic overviews are needed. We report on the number, nature, frequency, and geographic distribution of GAA sequence variants listed in the Pompe Registry, a long-term, observational program and the largest global repository of Pompe disease data. Variant information was reviewed and compared with publicly available GAA databases/resources. Among 1,079 eligible patients, 2,075 GAA variants (80 unique novel) were reported. Variants were listed by groups representing Pompe disease phenotypes. Patients were classified as Group A: Symptom onset ≤ 12 months of age with cardiomyopathy; Group B: Symptom onset ≤ 12 years of age (includes patients with symptom onset ≤ 12 months of age without cardiomyopathy); or Group C: Symptom onset > 12 years of age. Likely impact of novel variants was predicted using bioinformatics algorithms. Variants were classified by pathogenicity using ACMG guidelines. Data reported from the Pompe Registry provide new information about the distribution of GAA variants globally and across the clinical spectrum, add to the number and diversity of GAA variants registered in public databases through published data sharing, provide a first indication of the severity of novel variants, and assist in diagnostic practice and outcome prediction.
38
Sue Richards, Nazneen Aziz, Sherri J. Bale et al. · Genetics in Medicine · 2015 · 30.5K citations · Full text
Predicting the Functional Effect of Amino Acid Substitutions and Indels
Yongwook Choi, Gregory E. Sims, Sean V. Murphy et al. · PLoS ONE · 2012 · 2.9K citations · Full text
SIFT web server: predicting effects of amino acid substitutions on proteins
Ngak-Leng Sim, P. Naresh Kumar, Jing Hu et al. · Nucleic Acids Research · 2012 · 2.4K citations · Full text
HGVS Recommendations for the Description of Sequence Variants: 2016 Update
Johan T. den Dunnen, Raymond Dalgleish, Donna Maglott et al. · Human Mutation · 2016 · 1.6K citations · Full text