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Efficient Purification and LC-MS/MS-based Assay Development for Ten-Eleven Translocation-2 5-Methylcytosine Dioxygenase
Published on: October 15, 2018
Transcobalamin (TC) deficiency--potential cause of bone marrow failure in childhood
C Prasad1, D S Rosenblatt, K Corley
1Department of Pediatrics, Children's Hospital of Western Ontario and University of Western Ontario, London, Ontario, Canada. Chitra.Prasad@lhsc.on.ca
Insights
Inborn errors of metabolism, specifically transcobalamin II deficiency, can cause bone marrow failure in children. Early diagnosis and vitamin B12 treatment lead to dramatic recovery and normal development.
Area of Science:
- Genetics and Metabolism
- Hematology
Background:
- Inborn errors of metabolism are rarely considered in pancytopenia investigations.
- Bone marrow failure syndromes in children often present with hematological abnormalities.
Observation:
- A family presented with a proband experiencing failure to thrive and bone marrow failure, with a sibling previously deceased from suspected leukemia.
- The proband exhibited pancytopenia and dysplastic bone marrow changes, with elevated methylmalonic acid in urine.
- Cultured fibroblasts showed reduced transcobalamin II (TC) synthesis, confirming TC deficiency due to a novel R399X mutation.
Findings:
- The proband and his sister were homozygous for a novel mutation (R399X) in the TC gene.
- Parenteral vitamin B12 administration resulted in a dramatic recovery for the proband.
- Both affected children are developing normally, indicating the efficacy of early intervention.
Implications:
- Inherited cobalamin disorders should be included in the differential diagnosis of pediatric bone marrow failure.
- Early detection of metabolic causes of bone marrow failure can lead to prompt recovery and normal development.
- This case highlights the importance of considering metabolic pathways in hematological disorders.
Abstract:
It is unusual for inborn errors of metabolism to be considered in the investigative work-up of pancytopenia. We report a family in which the proband presented with failure to thrive at 2 months of age and subsequent bone marrow failure. A previous sibling had died at 7 months of age with suspected leukaemia. Haematological findings in the proband were significant for pancytopenia, and bone marrow aspiration showed dysplastic changes in all cell lineages. Urinary organic acid analysis revealed elevated methylmalonic acid. The synthesis of transcobalamin II (transcobalamin, TC) by cultured fibroblasts was markedly reduced, confirming the diagnosis of TC deficiency. The proband and his younger asymptomatic sister (also found to have TC deficiency) were homozygous for R399X (c.1195C>T), a novel mutation resulting in the loss of the C- terminal 29 amino acids of TC, a highly conserved region. Response to parenteral vitamin B(12) in the proband was dramatic. At 6 years 3 months of age, physical examination is normal and developmental level is age appropriate. His sister is clinically asymptomatic and is also developing normally. Propionylcarnitine concentrations were not elevated in the newborn screening cards from the proband and sister, but that was for specimens retrieved from storage after 7 years and 5 years, respectively. Inherited and acquired cobalamin disorders should both be considered in the differential diagnosis of bone marrow failure syndromes in young children. Early detection of the metabolic causes of bone marrow failure can ensure prompt recovery in some cases involving the vitamin B(12) pathway.
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