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Ataxia-pancytopenia syndrome with SAMD9L mutations

OBJECTIVE: We describe the neurologic, neuroradiologic, and ophthalmologic phenotype of 1 Swedish and 1 Finnish family with autosomal dominant ataxia-pancytopenia (ATXPC) syndrome and SAMD9L mutations. METHODS: Members of these families with germline SAMD9L c.2956C>T, p.Arg986Cys, or c.2672T>C...

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Autores principales: Gorcenco, Sorina, Komulainen-Ebrahim, Jonna, Nordborg, Karin, Suo-Palosaari, Maria, Andréasson, Sten, Krüger, Johanna, Nilsson, Christer, Kjellström, Ulrika, Rahikkala, Elisa, Turkiewicz, Dominik, Karlberg, Mikael, Nilsson, Lars, Cammenga, Jörg, Tedgård, Ulf, Davidsson, Josef, Uusimaa, Johanna, Puschmann, Andreas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5570676/
https://www.ncbi.nlm.nih.gov/pubmed/28852709
http://dx.doi.org/10.1212/NXG.0000000000000183
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author Gorcenco, Sorina
Komulainen-Ebrahim, Jonna
Nordborg, Karin
Suo-Palosaari, Maria
Andréasson, Sten
Krüger, Johanna
Nilsson, Christer
Kjellström, Ulrika
Rahikkala, Elisa
Turkiewicz, Dominik
Karlberg, Mikael
Nilsson, Lars
Cammenga, Jörg
Tedgård, Ulf
Davidsson, Josef
Uusimaa, Johanna
Puschmann, Andreas
author_facet Gorcenco, Sorina
Komulainen-Ebrahim, Jonna
Nordborg, Karin
Suo-Palosaari, Maria
Andréasson, Sten
Krüger, Johanna
Nilsson, Christer
Kjellström, Ulrika
Rahikkala, Elisa
Turkiewicz, Dominik
Karlberg, Mikael
Nilsson, Lars
Cammenga, Jörg
Tedgård, Ulf
Davidsson, Josef
Uusimaa, Johanna
Puschmann, Andreas
author_sort Gorcenco, Sorina
collection PubMed
description OBJECTIVE: We describe the neurologic, neuroradiologic, and ophthalmologic phenotype of 1 Swedish and 1 Finnish family with autosomal dominant ataxia-pancytopenia (ATXPC) syndrome and SAMD9L mutations. METHODS: Members of these families with germline SAMD9L c.2956C>T, p.Arg986Cys, or c.2672T>C, p.Ile891Thr mutations underwent structured interviews and neurologic and ophthalmologic examinations. Neuroimaging was performed, and medical records were reviewed. Previous publications on SAMD9L-ATXPC were reviewed. RESULTS: Twelve individuals in both families were affected clinically. All mutation carriers examined had balance impairment, although severity was very variable. All but 1 had nystagmus, and all but 1 had pyramidal tract signs. Neurologic features were generally present from childhood on and progressed slowly. Two adult patients, who experienced increasing clumsiness, glare, and difficulties with gaze fixation, had paracentral retinal dysfunction verified by multifocal electroretinography. Brain MRI showed early, marked cerebellar atrophy in most carriers and variable cerebral periventricular white matter T2 hyperintensities. Two children were treated with hematopoietic stem cell transplantation for hematologic malignancies, and the neurologic symptoms of one of these worsened after treatment. Three affected individuals had attention deficit hyperactivity disorder or cognitive problems. Retinal dysfunction was not previously reported in individuals with ATXPC. CONCLUSIONS: The neurologic phenotype of this syndrome is defined by balance or gait impairment, nystagmus, hyperreflexia in the lower limbs and, frequently, marked cerebellar atrophy. Paracentral retinal dysfunction may contribute to glare, reading problems, and clumsiness. Timely diagnosis of ATXPC is important to address the risk for severe hemorrhage, infection, and hematologic malignancies inherent in this syndrome; regular hematologic follow-up might be beneficial.
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spelling pubmed-55706762017-08-29 Ataxia-pancytopenia syndrome with SAMD9L mutations Gorcenco, Sorina Komulainen-Ebrahim, Jonna Nordborg, Karin Suo-Palosaari, Maria Andréasson, Sten Krüger, Johanna Nilsson, Christer Kjellström, Ulrika Rahikkala, Elisa Turkiewicz, Dominik Karlberg, Mikael Nilsson, Lars Cammenga, Jörg Tedgård, Ulf Davidsson, Josef Uusimaa, Johanna Puschmann, Andreas Neurol Genet Article OBJECTIVE: We describe the neurologic, neuroradiologic, and ophthalmologic phenotype of 1 Swedish and 1 Finnish family with autosomal dominant ataxia-pancytopenia (ATXPC) syndrome and SAMD9L mutations. METHODS: Members of these families with germline SAMD9L c.2956C>T, p.Arg986Cys, or c.2672T>C, p.Ile891Thr mutations underwent structured interviews and neurologic and ophthalmologic examinations. Neuroimaging was performed, and medical records were reviewed. Previous publications on SAMD9L-ATXPC were reviewed. RESULTS: Twelve individuals in both families were affected clinically. All mutation carriers examined had balance impairment, although severity was very variable. All but 1 had nystagmus, and all but 1 had pyramidal tract signs. Neurologic features were generally present from childhood on and progressed slowly. Two adult patients, who experienced increasing clumsiness, glare, and difficulties with gaze fixation, had paracentral retinal dysfunction verified by multifocal electroretinography. Brain MRI showed early, marked cerebellar atrophy in most carriers and variable cerebral periventricular white matter T2 hyperintensities. Two children were treated with hematopoietic stem cell transplantation for hematologic malignancies, and the neurologic symptoms of one of these worsened after treatment. Three affected individuals had attention deficit hyperactivity disorder or cognitive problems. Retinal dysfunction was not previously reported in individuals with ATXPC. CONCLUSIONS: The neurologic phenotype of this syndrome is defined by balance or gait impairment, nystagmus, hyperreflexia in the lower limbs and, frequently, marked cerebellar atrophy. Paracentral retinal dysfunction may contribute to glare, reading problems, and clumsiness. Timely diagnosis of ATXPC is important to address the risk for severe hemorrhage, infection, and hematologic malignancies inherent in this syndrome; regular hematologic follow-up might be beneficial. Wolters Kluwer 2017-08-24 /pmc/articles/PMC5570676/ /pubmed/28852709 http://dx.doi.org/10.1212/NXG.0000000000000183 Text en Copyright © 2017 The Author(s). Published by Wolters Kluwer Health, Inc. on behalf of the American Academy of Neurology. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (http://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits downloading and sharing the work provided it is properly cited. The work cannot be changed in any way or used commercially without permission from the journal.
spellingShingle Article
Gorcenco, Sorina
Komulainen-Ebrahim, Jonna
Nordborg, Karin
Suo-Palosaari, Maria
Andréasson, Sten
Krüger, Johanna
Nilsson, Christer
Kjellström, Ulrika
Rahikkala, Elisa
Turkiewicz, Dominik
Karlberg, Mikael
Nilsson, Lars
Cammenga, Jörg
Tedgård, Ulf
Davidsson, Josef
Uusimaa, Johanna
Puschmann, Andreas
Ataxia-pancytopenia syndrome with SAMD9L mutations
title Ataxia-pancytopenia syndrome with SAMD9L mutations
title_full Ataxia-pancytopenia syndrome with SAMD9L mutations
title_fullStr Ataxia-pancytopenia syndrome with SAMD9L mutations
title_full_unstemmed Ataxia-pancytopenia syndrome with SAMD9L mutations
title_short Ataxia-pancytopenia syndrome with SAMD9L mutations
title_sort ataxia-pancytopenia syndrome with samd9l mutations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5570676/
https://www.ncbi.nlm.nih.gov/pubmed/28852709
http://dx.doi.org/10.1212/NXG.0000000000000183
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