Aim: To investigate genetic heterogeneity within the cblA class of inborn error of cobalamin metabolism.
Context: The cblA disorder is characterised by vitamin B12 (cobalamin) responsive methylmalonic aciduria and deficient synthesis of adenosylcobalamin, required for activity of the mitochondrial enzyme methylmalonyl CoA mutase. The cblA gene has not been identified or cloned. We have previously described a patient with the clinical and biochemical phenotype of the cblA disorder whose fibroblasts complemented cells from patients with all known types of inborn error of adenosylcobalamin synthesis, including cblA.
Methods: We have performed somatic cell complementation analysis of the cblA variant fibroblast line with a panel of 28 cblA lines. We have also performed detailed complementation analysis on a panel of 10 cblA fibroblast lines, not including the cblA variant line.
Results: The cblA variant line complemented all 28 cell lines of the panel. There was evidence for interallelic complementation among the 10 cblA lines used for detailed complementation analysis; no cell line in this panel complemented all other members.
Conclusions: These results strongly suggest that the cblA variant represents a novel complementation class, which we have designated cblH and which represents a mutation at a distinct gene. They also suggest that the cblA gene encodes a protein that functions as a multimer, allowing for extensive interallelic complementation.
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http://dx.doi.org/10.1136/jmg.37.7.510 | DOI Listing |
Indian J Pediatr
July 2024
Division of Genetics, Department of Pediatrics, All India Institute of Medical Sciences, Room 840, 8th floor, Mother and Child Block, Ansari Nagar, New Delhi, 110029, India.
Objectives: To study the clinical and molecular spectrum of Methylmalonic acidemia (MMA).
Methods: In this retrospective study, the records of 30 MMA patients were evaluated for their phenotype, biochemical abnormalities, genotype, and outcomes.
Results: Thirty patients with MMA (age range 0-21 y) from 27 unrelated families were enrolled.
Vitam Horm
April 2022
Department of Human Genetics, McGill University, The Research Institute of the McGill University Health Centre, Montreal, QC, Canada.
Cobalamin (vitamin B) is required for activity of the enzymes methylmalonyl-CoA mutase and methionine synthase in human cells. Inborn errors affecting cobalamin uptake or metabolism are characterized by accumulation of the substrates for these enzymes, methylmalonic acid and homocysteine, in blood and urine. Inborn errors affecting synthesis of the adenosylcobalamin coenzyme required by methylmalonyl-CoA mutase (cblA and cblB) result in isolated methylmalonic aciduria; inborn errors affecting synthesis of the methylcobalamin coenzyme required by methionine synthase (cblE and cblG) result in isolated homocystinuria.
View Article and Find Full Text PDFHum Genet
July 2022
UMR_S 1256, NGERE - Nutrition, Genetics, and Environmental Risk Exposure, INSERM, University of Lorraine, 54000, Nancy, France.
Inherited disorders of cobalamin (cbl) metabolism (cblA-J) result in accumulation of methylmalonic acid (MMA) and/or homocystinuria (HCU). Clinical presentation includes ophthalmological manifestations related to retina, optic nerve and posterior visual alterations, mainly reported in cblC and sporadically in other cbl inborn errors.We searched MEDLINE EMBASE and Cochrane Library, and analyzed articles reporting ocular manifestations in cbl inborn errors.
View Article and Find Full Text PDFZhonghua Yi Xue Yi Chuan Xue Za Zhi
February 2020
Department of Pediatric Endocrinology and Genetic Metabolism, Shanghai Institute for Pediatric Research, Xinhua Hospital, Shanghai Jiaotong University School of Medicine, Shanghai 200092, China.
Objective: To explore the clinical feature, genetic variant and clinical outcome of patients with cblA-type methylmalonic acidemia (MMA).
Methods: Clinical manifestations, therapeutic schedule and prognosis of 12 patients with cblA type MMA were analyzed. MMAA gene variants were analyzed for all patients and their parents.
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