AI Article Synopsis

  • - Isolated Methylmalonic acidemia/aciduria (MMA) is a metabolic disorder due to defects in the methylmalonyl-CoA mutase (MCM) enzyme, which is essential for breaking down certain amino acids; it can result from mutations in the MUT, MMAA, and MMAB genes.
  • - A research study aimed to explore the mutation spectrum of MMA in an Iranian population, utilizing Short Tandem Repeat (STR) markers and multiplex PCR methods to identify potential genetic variants in 11 diagnosed patients.
  • - The study found five novel mutations in the MUT gene and four recurrent mutations in the associated genes, with the c.571C > T mutation in MMAB being the most

Article Abstract

Isolated Methylmalonic acidemia/aciduria (MMA) is a group of inborn errors of metabolism disease which is caused by defect in methylmalonyl-CoA mutase (MCM) enzyme. The enzyme has a key function in the catabolism of branched chain amino acids (BCAA, isoleucine, and valine), methionine, and threonine. MCM is encoded by a single gene named "MUT". Other subtypes of MMA are caused by mutations in cblA (encoded by MMAA) and cblB (encoded by MMAB), which is involved in the synthesis of methylmalonyl-coenzyme A cofactor. Different types of mutations have been identified as the cause of MMA. However, the mutation spectrum of MMA in Iran has not been studied so far. Here, we aimed to investigate the MMA causative mutations in the Iranian population. Using STR (Short Tandem Repeat) markers, we performed autozygosity mapping to identify the potential pathogenic variants in 11 patients with clinical diagnosis of MMA. Nineteen STR markers which are linked to the MUT, MMAA and MMAB genes (the genes with known causative mutations in MMA) were selected for PCR-amplification using two recently designed multiplex PCR panels. Next, the families that were diagnosed with homozygous haplotypes for the candidate genes were directly sequenced. Five novel mutations (c.805delG, c.693delC, c.223A > T, c.668A > G and c.976A > G in MUT) were identified beside other 4 recurrent mutations (c.361insT in MUT, c.571C > T and c.197-1 G > T in MMAB and c.1075C > T in MMAA). In silico analyses were also performed to predict the pathogenicity of the identified variants. The mutation c.571C > T in MMAB was the most common mutation in our study.

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Source
http://dx.doi.org/10.1007/s11011-018-0277-4DOI Listing

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