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A novel, likely pathogenic variant in UBTF‐related neurodegeneration with brain atrophy is associated with a severe divergent neurodevelopmental phenotype

BACKGROUND: A de novo, pathogenic, missense variant in UBTF, c.628G>A p.Glu210Lys, has been described as the cause of an emerging neurodegenerative disorder, Childhood‐Onset Neurodegeneration with Brain Atrophy (CONDBA). The p.Glu210Lys alteration yields a positively charged stretch of three lysi...

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Autores principales: Tinker, Rory J., Guess, Tiffany, Rinker, David C., Sheehan, Jonathan H., Lubarsky, Daniel, Porath, Binu, Mosera, Mackenzie, Mayo, Ping, Solem, Emily, Lee, Laura A., Sharam, Asha, Brault, Jennifer
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9747545/
https://www.ncbi.nlm.nih.gov/pubmed/36106513
http://dx.doi.org/10.1002/mgg3.2054
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author Tinker, Rory J.
Guess, Tiffany
Rinker, David C.
Sheehan, Jonathan H.
Lubarsky, Daniel
Porath, Binu
Mosera, Mackenzie
Mayo, Ping
Solem, Emily
Lee, Laura A.
Sharam, Asha
Brault, Jennifer
author_facet Tinker, Rory J.
Guess, Tiffany
Rinker, David C.
Sheehan, Jonathan H.
Lubarsky, Daniel
Porath, Binu
Mosera, Mackenzie
Mayo, Ping
Solem, Emily
Lee, Laura A.
Sharam, Asha
Brault, Jennifer
author_sort Tinker, Rory J.
collection PubMed
description BACKGROUND: A de novo, pathogenic, missense variant in UBTF, c.628G>A p.Glu210Lys, has been described as the cause of an emerging neurodegenerative disorder, Childhood‐Onset Neurodegeneration with Brain Atrophy (CONDBA). The p.Glu210Lys alteration yields a positively charged stretch of three lysine residues. Functional studies confirmed this change results in a stronger interaction with negatively charged DNA and gain‐of‐function activity when compared to the wild‐type sequence. The CONDBA phenotype reported in association with p.Glu210Lys consists of normal early‐neurodevelopment followed by progressive motor, cognitive, and behavioral regression in early‐to‐middle childhood. METHODS AND RESULTS: The current proband presented at 9 months of age with baseline developmental delay and more extensive neuroradiological findings, including pontine hypoplasia, thalamic volume loss and signal abnormality, and hypomyelination. Like the recurrent CONDBA p.Glu210Lys variant, this novel variant, c.608A>G p.(Gln203Arg) lies within the highly conserved second HMG‐box homology domain and involves the replacement of the wild‐type residue with a positively charged residue, arginine. Computational structural modeling demonstrates that this amino acid substitution potentiates the interaction between UBTF and DNA, likely resulting in a gain‐of‐function effect for the UBTF protein, UBF. CONCLUSION: Here we present a new divergent phenotype associated with a novel, likely pathogenic, missense variant at a different position in the UBTF gene, c.608A>G p.(Gln203Arg).
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spelling pubmed-97475452022-12-14 A novel, likely pathogenic variant in UBTF‐related neurodegeneration with brain atrophy is associated with a severe divergent neurodevelopmental phenotype Tinker, Rory J. Guess, Tiffany Rinker, David C. Sheehan, Jonathan H. Lubarsky, Daniel Porath, Binu Mosera, Mackenzie Mayo, Ping Solem, Emily Lee, Laura A. Sharam, Asha Brault, Jennifer Mol Genet Genomic Med Clinical Reports BACKGROUND: A de novo, pathogenic, missense variant in UBTF, c.628G>A p.Glu210Lys, has been described as the cause of an emerging neurodegenerative disorder, Childhood‐Onset Neurodegeneration with Brain Atrophy (CONDBA). The p.Glu210Lys alteration yields a positively charged stretch of three lysine residues. Functional studies confirmed this change results in a stronger interaction with negatively charged DNA and gain‐of‐function activity when compared to the wild‐type sequence. The CONDBA phenotype reported in association with p.Glu210Lys consists of normal early‐neurodevelopment followed by progressive motor, cognitive, and behavioral regression in early‐to‐middle childhood. METHODS AND RESULTS: The current proband presented at 9 months of age with baseline developmental delay and more extensive neuroradiological findings, including pontine hypoplasia, thalamic volume loss and signal abnormality, and hypomyelination. Like the recurrent CONDBA p.Glu210Lys variant, this novel variant, c.608A>G p.(Gln203Arg) lies within the highly conserved second HMG‐box homology domain and involves the replacement of the wild‐type residue with a positively charged residue, arginine. Computational structural modeling demonstrates that this amino acid substitution potentiates the interaction between UBTF and DNA, likely resulting in a gain‐of‐function effect for the UBTF protein, UBF. CONCLUSION: Here we present a new divergent phenotype associated with a novel, likely pathogenic, missense variant at a different position in the UBTF gene, c.608A>G p.(Gln203Arg). John Wiley and Sons Inc. 2022-09-15 /pmc/articles/PMC9747545/ /pubmed/36106513 http://dx.doi.org/10.1002/mgg3.2054 Text en © 2022 The Authors. Molecular Genetics & Genomic Medicine published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Clinical Reports
Tinker, Rory J.
Guess, Tiffany
Rinker, David C.
Sheehan, Jonathan H.
Lubarsky, Daniel
Porath, Binu
Mosera, Mackenzie
Mayo, Ping
Solem, Emily
Lee, Laura A.
Sharam, Asha
Brault, Jennifer
A novel, likely pathogenic variant in UBTF‐related neurodegeneration with brain atrophy is associated with a severe divergent neurodevelopmental phenotype
title A novel, likely pathogenic variant in UBTF‐related neurodegeneration with brain atrophy is associated with a severe divergent neurodevelopmental phenotype
title_full A novel, likely pathogenic variant in UBTF‐related neurodegeneration with brain atrophy is associated with a severe divergent neurodevelopmental phenotype
title_fullStr A novel, likely pathogenic variant in UBTF‐related neurodegeneration with brain atrophy is associated with a severe divergent neurodevelopmental phenotype
title_full_unstemmed A novel, likely pathogenic variant in UBTF‐related neurodegeneration with brain atrophy is associated with a severe divergent neurodevelopmental phenotype
title_short A novel, likely pathogenic variant in UBTF‐related neurodegeneration with brain atrophy is associated with a severe divergent neurodevelopmental phenotype
title_sort novel, likely pathogenic variant in ubtf‐related neurodegeneration with brain atrophy is associated with a severe divergent neurodevelopmental phenotype
topic Clinical Reports
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9747545/
https://www.ncbi.nlm.nih.gov/pubmed/36106513
http://dx.doi.org/10.1002/mgg3.2054
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