2017Unpublished venueRequires access

P49 A novel p.v438sfs*3 (c.1311_1312insa) mutation in methylmalonyl-coa mutase gene in a newborn with severe methylmalonic acidemia

Dílek Díllí, DILARA DAG, Mustafa Kılıç, Serdar Ceylaner, Ahmet Özyazıcı, Ayşegül Zenciroğlu

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Abstract

Methylmalonic academia (MMA) is a rare form of organic acidemias characterised by an inborn error of methylmalonate and cobalamin metabolism. The most of MMA cases are caused by mutations in the methylmalonyl-CoA mutase (MUT) gene. The MUT gene encodes the enzyme MUT that converts l-methylmalonyl-CoA to succinyl-CoA. Partial or complete enzyme deficiency occurs because of the mutations in the MUT gene. As a result, methylmalonyl acid and other potentially toxic compounds accumulate in the tissues, leading to signs and symptoms of MMA. Here, we report a novel p.V438Sfs*3 (c.1311_1312InsA) mutation in MUT gene in a newborn with severe MMA.

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What this paper is about

Methylmalonic academia (MMA) is a rare form of organic acidemias characterised by an inborn error of methylmalonate and cobalamin metabolism. The most of MMA cases are caused by mutations in the methylmalonyl-CoA mutase (MUT) gene. The MUT gene encodes the enzyme MUT that converts l-methylmalonyl-CoA to succinyl-CoA. Partial or complete enzyme deficiency occurs because of the mutations in the MUT gene. As a result, methylmalonyl acid and other potentially toxic compounds accumulate in the tissues, leading to signs and symptoms of MMA. Here, we report a novel p.V438Sfs*3 (c.1311_1312InsA) mutation in MUT gene in a newborn with severe MMA.

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Available abstract

Methylmalonic academia (MMA) is a rare form of organic acidemias characterised by an inborn error of methylmalonate and cobalamin metabolism. The most of MMA cases are caused by mutations in the methylmalonyl-CoA mutase (MUT) gene. The MUT gene encodes the enzyme MUT that converts l-methylmalonyl-CoA to succinyl-CoA. Partial or complete enzyme deficiency occurs because of the mutations in the MUT gene. As a result, methylmalonyl acid and other potentially toxic compounds accumulate in the tissues, leading to signs and symptoms of MMA. Here, we report a novel p.V438Sfs*3 (c.1311_1312InsA) mutation in MUT gene in a newborn with severe MMA.

Key concepts: Methylmalonic acidemia, Mutase, Methylmalonic acid, Gene, Mutation, Medicine, Cobalamin, Inborn error of metabolism

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P49 A novel p.v438sfs*3 (c.1311_1312insa) mutation in methylmalonyl-coa mutase gene in a newborn with severe methylmalonic acidemia — Research Paper | ScholarLens