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Mild orotic aciduria in UMPS heterozygotes: a metabolic finding without clinical consequences

BACKGROUND: Elevated urinary excretion of orotic acid is associated with treatable disorders of the urea cycle and pyrimidine metabolism. Establishing the correct and timely diagnosis in a patient with orotic aciduria is key to effective treatment. Uridine monophosphate synthase is involved in de no...

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Autores principales: Wortmann, Saskia B., Chen, Margaret A., Colombo, Roberto, Pontoglio, Alessandro, Alhaddad, Bader, Botto, Lorenzo D., Yuzyuk, Tatiana, Coughlin, Curtis R., Descartes, Maria, Grűnewald, Stephanie, Maranda, Bruno, Mills, Philippa B., Pitt, James, Potente, Catherine, Rodenburg, Richard, Kluijtmans, Leo A. J., Sampath, Srirangan, Pai, Emil F., Wevers, Ron A., Tiller, George E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Netherlands 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5393157/
https://www.ncbi.nlm.nih.gov/pubmed/28205048
http://dx.doi.org/10.1007/s10545-017-0015-9
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author Wortmann, Saskia B.
Chen, Margaret A.
Colombo, Roberto
Pontoglio, Alessandro
Alhaddad, Bader
Botto, Lorenzo D.
Yuzyuk, Tatiana
Coughlin, Curtis R.
Descartes, Maria
Grűnewald, Stephanie
Maranda, Bruno
Mills, Philippa B.
Pitt, James
Potente, Catherine
Rodenburg, Richard
Kluijtmans, Leo A. J.
Sampath, Srirangan
Pai, Emil F.
Wevers, Ron A.
Tiller, George E.
author_facet Wortmann, Saskia B.
Chen, Margaret A.
Colombo, Roberto
Pontoglio, Alessandro
Alhaddad, Bader
Botto, Lorenzo D.
Yuzyuk, Tatiana
Coughlin, Curtis R.
Descartes, Maria
Grűnewald, Stephanie
Maranda, Bruno
Mills, Philippa B.
Pitt, James
Potente, Catherine
Rodenburg, Richard
Kluijtmans, Leo A. J.
Sampath, Srirangan
Pai, Emil F.
Wevers, Ron A.
Tiller, George E.
author_sort Wortmann, Saskia B.
collection PubMed
description BACKGROUND: Elevated urinary excretion of orotic acid is associated with treatable disorders of the urea cycle and pyrimidine metabolism. Establishing the correct and timely diagnosis in a patient with orotic aciduria is key to effective treatment. Uridine monophosphate synthase is involved in de novo pyrimidine synthesis. Uridine monophosphate synthase deficiency (or hereditary orotic aciduria), due to biallelic mutations in UMPS, is a rare condition presenting with megaloblastic anemia in the first months of life. If not treated with the pyrimidine precursor uridine, neutropenia, failure to thrive, growth retardation, developmental delay, and intellectual disability may ensue. METHODS AND RESULTS: We identified mild and isolated orotic aciduria in 11 unrelated individuals with diverse clinical signs and symptoms, the most common denominator being intellectual disability/developmental delay. Of note, none had blood count abnormalities, relevant hyperammonemia or altered plasma amino acid profile. All individuals were found to have heterozygous alterations in UMPS. Four of these variants were predicted to be null alleles with complete loss of function. The remaining variants were missense changes and predicted to be damaging to the normal encoded protein. Interestingly, family screening revealed heterozygous UMPS variants in combination with mild orotic aciduria in 19 clinically asymptomatic family members. CONCLUSIONS: We therefore conclude that heterozygous UMPS-mutations can lead to mild and isolated orotic aciduria without clinical consequence. Partial UMPS-deficiency should be included in the differential diagnosis of mild orotic aciduria. The discovery of heterozygotes manifesting clinical symptoms such as hypotonia and developmental delay are likely due to ascertainment bias.
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spelling pubmed-53931572017-05-02 Mild orotic aciduria in UMPS heterozygotes: a metabolic finding without clinical consequences Wortmann, Saskia B. Chen, Margaret A. Colombo, Roberto Pontoglio, Alessandro Alhaddad, Bader Botto, Lorenzo D. Yuzyuk, Tatiana Coughlin, Curtis R. Descartes, Maria Grűnewald, Stephanie Maranda, Bruno Mills, Philippa B. Pitt, James Potente, Catherine Rodenburg, Richard Kluijtmans, Leo A. J. Sampath, Srirangan Pai, Emil F. Wevers, Ron A. Tiller, George E. J Inherit Metab Dis Original Article BACKGROUND: Elevated urinary excretion of orotic acid is associated with treatable disorders of the urea cycle and pyrimidine metabolism. Establishing the correct and timely diagnosis in a patient with orotic aciduria is key to effective treatment. Uridine monophosphate synthase is involved in de novo pyrimidine synthesis. Uridine monophosphate synthase deficiency (or hereditary orotic aciduria), due to biallelic mutations in UMPS, is a rare condition presenting with megaloblastic anemia in the first months of life. If not treated with the pyrimidine precursor uridine, neutropenia, failure to thrive, growth retardation, developmental delay, and intellectual disability may ensue. METHODS AND RESULTS: We identified mild and isolated orotic aciduria in 11 unrelated individuals with diverse clinical signs and symptoms, the most common denominator being intellectual disability/developmental delay. Of note, none had blood count abnormalities, relevant hyperammonemia or altered plasma amino acid profile. All individuals were found to have heterozygous alterations in UMPS. Four of these variants were predicted to be null alleles with complete loss of function. The remaining variants were missense changes and predicted to be damaging to the normal encoded protein. Interestingly, family screening revealed heterozygous UMPS variants in combination with mild orotic aciduria in 19 clinically asymptomatic family members. CONCLUSIONS: We therefore conclude that heterozygous UMPS-mutations can lead to mild and isolated orotic aciduria without clinical consequence. Partial UMPS-deficiency should be included in the differential diagnosis of mild orotic aciduria. The discovery of heterozygotes manifesting clinical symptoms such as hypotonia and developmental delay are likely due to ascertainment bias. Springer Netherlands 2017-02-15 2017 /pmc/articles/PMC5393157/ /pubmed/28205048 http://dx.doi.org/10.1007/s10545-017-0015-9 Text en © The Author(s) 2017 Open Access This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Original Article
Wortmann, Saskia B.
Chen, Margaret A.
Colombo, Roberto
Pontoglio, Alessandro
Alhaddad, Bader
Botto, Lorenzo D.
Yuzyuk, Tatiana
Coughlin, Curtis R.
Descartes, Maria
Grűnewald, Stephanie
Maranda, Bruno
Mills, Philippa B.
Pitt, James
Potente, Catherine
Rodenburg, Richard
Kluijtmans, Leo A. J.
Sampath, Srirangan
Pai, Emil F.
Wevers, Ron A.
Tiller, George E.
Mild orotic aciduria in UMPS heterozygotes: a metabolic finding without clinical consequences
title Mild orotic aciduria in UMPS heterozygotes: a metabolic finding without clinical consequences
title_full Mild orotic aciduria in UMPS heterozygotes: a metabolic finding without clinical consequences
title_fullStr Mild orotic aciduria in UMPS heterozygotes: a metabolic finding without clinical consequences
title_full_unstemmed Mild orotic aciduria in UMPS heterozygotes: a metabolic finding without clinical consequences
title_short Mild orotic aciduria in UMPS heterozygotes: a metabolic finding without clinical consequences
title_sort mild orotic aciduria in umps heterozygotes: a metabolic finding without clinical consequences
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5393157/
https://www.ncbi.nlm.nih.gov/pubmed/28205048
http://dx.doi.org/10.1007/s10545-017-0015-9
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