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Clinical, biochemical, and genetic spectrum of MADD in a South African cohort: an ICGNMD study

dc.contributor.authorSchoonen, Marykeen_ZA
dc.contributor.authorBisschoff, Michelleen_ZA
dc.contributor.authorSmuts, Izelleen_ZA
dc.contributor.authorDercksen, Marlien_ZA
dc.contributor.authorVorster, Barend C.en_ZA
dc.contributor.authorvan der Watt, Georgeen_ZA
dc.contributor.authorSpencer, Carenien_ZA
dc.contributor.authorNaidu, Kireshneeen_ZA
dc.contributor.authorHenning, Francloen_ZA
dc.contributor.authorMeldau, Suritaen_ZA
dc.contributor.authorMcFarland, Roberten_ZA
dc.contributor.authorTaylor, Robert W.en_ZA
dc.contributor.authorPatel, Krutiken_ZA
dc.contributor.authorFassad, Mahmoud R.en_ZA
dc.contributor.authorVandrovcova, Janaen_ZA
dc.contributor.authorThe ICGNMD Consortiumen_ZA
dc.contributor.authorWanders, Ronald J. A.en_ZA
dc.contributor.authorvan der Westhuizen, Francois H.en_ZA
dc.date.accessioned2025-09-23T12:19:18Zen_ZA
dc.date.issued2024en_ZA
dc.descriptionArticle, Faculty of Natural and Agricultural Science (Agricultural Sciences)-- Northwest University, Potchefstroom campusen_ZA
dc.description.abstractBackground Multiple acyl-CoA dehydrogenase deficiency (MADD) is an autosomal recessive disorder resulting from pathogenic variants in three distinct genes, with most of the variants occurring in the electron transfer flavopro-tei ubiquinone oxidoreductase gene (ETFDH). Recent evidence of potential founder variants for MADD in the South African (SA) population, initiated this extensive investigation. As part of the International Centre for Genomic Medicine in Neuromuscular Diseases study, we recruited a cohort of patients diagnosed with MADD from academic medical centres across SA over a three-year period. The aim was to extensively profile the clinical, biochemical, and genomic characteristics of MADD in this understudied population. Methods Clinical evaluations and whole exome sequencing were conducted on each patient. Metabolic profiling was performed before and after treatment, where possible. The recessive inheritance and phase of the variants were established via segregation analyses using Sanger sequencing. Lastly, the haplotype and allele frequencies were determined for the two main variants in the four largest SA populations. Results Twelve unrelated families (ten of White SA and two of mixed ethnicity) with clinically heterogeneous presen-tations in 14 affected individuals were observed, and five pathogenic ETFDH variants were identified. Based on disease severity and treatment response, three distinct groups emerged. The most severe and fatal presentations were associated with the homozygous c.[1067G > A];c.[1067G > A] and compound heterozygous c.[976G > C];c [1067G > A] genotypes, causing MADD types I and I/II, respectively. These, along with three less severe compound heterozygous genotypes (c.[1067G > A];c.[1448C > T], c.[740G > T];c.[1448C > T], and c.[287dupA*];c.[1448C > T]), resulting in MADD types II/III, presented before the age of five years, depending on the time and maintenance of intervention. By contrast, the homozygous c.[1448C > T];c.[1448C > T] genotype, which causes MADD type III, presented later in life. Except for the type I, I/II and II cases, urinary metabolic markers for MADD improved/normalised following treat- ment with riboflavin and L-carnitine. Furthermore, genetic analyses of the most frequent variants (c.[1067G > A]and c.[1448C > T]) revealed a shared haplotype in the region of ETFDH, with SA population-specific allele frequencies of < 0.00067-0.00084%.Conclusions This study reveals the first extensive genotype-phenotype profile of a MADD patient cohort from the diverse and understudied SA population. The pathogenic variants and associated variable phenotypes were characterised, which will enable early screening, genetic counselling, and patient-specific treatment of MADD in this population.en_ZA
dc.identifier.citationSchoonen, Maryke. et al . 2024. Clinical, biochemical, and genetic spectrum of MADD in a South African cohort: an ICGNMD study. Orphanet Journal of Rare Diseases (2024) 19:15. [https://doi.org/10.1186/s13023-023-03014-8]en_ZA
dc.identifier.urihttps://doi.org/10.1186/s13023-023-03014-8en_ZA
dc.identifier.urihttp://hdl.handle.net/10394/43404en_ZA
dc.language.isoenen_ZA
dc.subjectMultiple acyl-CoA dehydrogenase deficiencyen_ZA
dc.subjectMADDen_ZA
dc.subjectGlutaric aciduria type IIen_ZA
dc.subjectETFDHen_ZA
dc.subjectRiboflavinen_ZA
dc.subjectSouth Africaen_ZA
dc.subjectInternational Centre for Genomic Medicine in Neuromuscular Diseasesen_ZA
dc.subjectICGNMDen_ZA
dc.titleClinical, biochemical, and genetic spectrum of MADD in a South African cohort: an ICGNMD studyen_ZA
dc.typeArticleen_ZA

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