Literature DB >> 16697227

Homozygous nonsense mutation in the MCEE gene and siRNA suppression of methylmalonyl-CoA epimerase expression: a novel cause of mild methylmalonic aciduria.

C Melissa Dobson1, Abigail Gradinger, Nicola Longo, Xuchu Wu, Daniel Leclerc, Jordan Lerner-Ellis, Melissa Lemieux, Caroline Belair, David Watkins, David S Rosenblatt, Roy A Gravel.   

Abstract

Methylmalonyl-CoA epimerase (MCE) catalyzes the interconversion of D- and L-methylmalonyl-CoA in the pathway responsible for the degradation of branched chain amino acids, odd chain-length fatty acids, and other metabolites. Despite the occurrence of metabolic disorders in the enzymatic step occurring immediately upstream of MCE (propionyl-CoA carboxylase) and downstream of MCE (adenosylcobalamin-dependent methylmalonyl-CoA mutase), no disease-causing mutations have been described affecting MCE itself. A patient, formerly identified as belonging to the cblA complementation group of vitamin B12 disorders but lacking mutations in the affected gene, MMAA, was tested for mutations in the MCEE gene. The patient's fibroblasts had normal levels of adenosylcobalamin compared to controls, whereas other cblA cell lines typically had reduced levels of the cofactor. As well, this patient had a milder form of methylmalonic aciduria than usually observed in cblA patients. The patient was found to be homozygous for a c.139C>T (p.R47X) mutation in MCEE by sequence analysis that was confirmed by restriction digestion of PCR products. One sibling, also with mild methylmalonic aciduria, was homozygous for the mutation. Both parents and one other sibling were heterozygous. A nearby insertion polymorphism, c.41-160_161insT, heterozygous in both parents, showed the wild-type configuration on the mutant alleles. To assess the impact of isolated MCE deficiency in cultured cells, HeLa cells were transfected with a selectable vector containing MCEE-specific small interfering RNA (siRNA) to suppress gene expression. The reduced level of MCEE mRNA resulted in the reduction of [14C]-propionate incorporation into cellular macromolecules. However, siRNA only led to a small reduction in pathway activity, suggesting that previously postulated non-enzymatic conversion of D- to L-methylmalonyl-CoA may contribute to some flux through the pathway. We conclude that the patient's MCEE defect was responsible for the mild methylmalonic aciduria, confirming a partial requirement for the enzymatic activity in humans.

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Year:  2006        PMID: 16697227     DOI: 10.1016/j.ymgme.2006.03.009

Source DB:  PubMed          Journal:  Mol Genet Metab        ISSN: 1096-7192            Impact factor:   4.797


  12 in total

1.  Heptadecanoylcarnitine (C17) a novel candidate biomarker for newborn screening of propionic and methylmalonic acidemias.

Authors:  Sabrina Malvagia; Christopher A Haynes; Laura Grisotto; Daniela Ombrone; Silvia Funghini; Elisa Moretti; Kathleen S McGreevy; Annibale Biggeri; Renzo Guerrini; Raquel Yahyaoui; Uttam Garg; Mary Seeterlin; Donald Chace; Victor R De Jesus; Giancarlo la Marca
Journal:  Clin Chim Acta       Date:  2015-09-11       Impact factor: 3.786

2.  p38 MAPK regulates PKAα and CUB-serine protease in Amphibalanus amphitrite cyprids.

Authors:  Gen Zhang; Li-Sheng He; Yue Him Wong; Ying Xu; Yu Zhang; Pei-Yuan Qian
Journal:  Sci Rep       Date:  2015-10-05       Impact factor: 4.379

3.  Anti-Atherosclerotic Action of Agmatine in ApoE-Knockout Mice.

Authors:  Anna Wiśniewska; Rafał Olszanecki; Justyna Totoń-Żurańska; Katarzyna Kuś; Aneta Stachowicz; Maciej Suski; Anna Gębska; Mariusz Gajda; Jacek Jawień; Ryszard Korbut
Journal:  Int J Mol Sci       Date:  2017-08-04       Impact factor: 5.923

4.  Mutation analysis, treatment and prenatal diagnosis of Chinese cases of methylmalonic acidemia.

Authors:  Chuan Zhang; Xing Wang; Shengju Hao; Qinghua Zhang; Lei Zheng; Bingbo Zhou; Furong Liu; Xuan Feng; Xue Chen; Panpan Ma; Cuixia Chen; Zongfu Cao; Xu Ma
Journal:  Sci Rep       Date:  2020-07-27       Impact factor: 4.379

Review 5.  Hyperammonaemia in classic organic acidaemias: a review of the literature and two case histories.

Authors:  Johannes Häberle; Anupam Chakrapani; Nicholas Ah Mew; Nicola Longo
Journal:  Orphanet J Rare Dis       Date:  2018-12-06       Impact factor: 4.123

Review 6.  Causes of and diagnostic approach to methylmalonic acidurias.

Authors:  B Fowler; J V Leonard; M R Baumgartner
Journal:  J Inherit Metab Dis       Date:  2008-06-19       Impact factor: 4.750

7.  Methylmalonyl-coA epimerase deficiency: A new case, with an acute metabolic presentation and an intronic splicing mutation in the MCEE gene.

Authors:  Paula J Waters; Fanny Thuriot; Joe T R Clarke; Serge Gravel; David Watkins; David S Rosenblatt; Sébastien Lévesque
Journal:  Mol Genet Metab Rep       Date:  2016-09-24

8.  Methylmalonyl-CoA Epimerase Deficiency Mimicking Propionic Aciduria.

Authors:  Lenaig Abily-Donval; Stéphanie Torre; Aurélie Samson; Bénédicte Sudrié-Arnaud; Cécile Acquaviva; Anne-Marie Guerrot; Jean-François Benoist; Stéphane Marret; Soumeya Bekri; Abdellah Tebani
Journal:  Int J Mol Sci       Date:  2017-11-01       Impact factor: 5.923

9.  Genetic, structural, and functional analysis of pathogenic variations causing methylmalonyl-CoA epimerase deficiency.

Authors:  Kathrin Heuberger; Henry J Bailey; Patricie Burda; Apirat Chaikuad; Ewelina Krysztofinska; Terttu Suormala; Céline Bürer; Seraina Lutz; Brian Fowler; D Sean Froese; Wyatt W Yue; Matthias R Baumgartner
Journal:  Biochim Biophys Acta Mol Basis Dis       Date:  2019-01-22       Impact factor: 5.187

Review 10.  Mitochondrial disease, mitophagy, and cellular distress in methylmalonic acidemia.

Authors:  Alessandro Luciani; D Sean Froese; Matthew C S Denley; Larissa P Govers; Vincenzo Sorrentino
Journal:  Cell Mol Life Sci       Date:  2021-09-15       Impact factor: 9.261

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