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A novel autosomal recessive TERT T1129P mutation in a dyskeratosis congenita family leads to cellular senescence and loss of CD34+ hematopoietic stem cells not reversible by mTOR-inhibition
The TERT gene encodes for the reverse transcriptase activity of the telomerase complex and mutations in TERT can lead to dysfunctional telomerase activity resulting in diseases such as dyskeratosis congenita (DKC). Here, we describe a novel TERT mutation at position T1129P leading to DKC with progre...
Autores principales: | , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Impact Journals LLC
2015
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4694062/ https://www.ncbi.nlm.nih.gov/pubmed/26546739 |
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author | Stockklausner, Clemens Raffel, Simon Klermund, Julia Bandapalli, Obul Reddy Beier, Fabian Brümmendorf, Tim H. Bürger, Friederike Sauer, Sven W. Hoffmann, Georg F. Lorenz, Holger Tagliaferri, Laura Nowak, Daniel Hofmann, Wolf-Karsten Buergermeister, Rebecca Kerber, Carolin Rausch, Tobias Korbel, Jan O. Luke, Brian Trumpp, Andreas Kulozik, Andreas E. |
author_facet | Stockklausner, Clemens Raffel, Simon Klermund, Julia Bandapalli, Obul Reddy Beier, Fabian Brümmendorf, Tim H. Bürger, Friederike Sauer, Sven W. Hoffmann, Georg F. Lorenz, Holger Tagliaferri, Laura Nowak, Daniel Hofmann, Wolf-Karsten Buergermeister, Rebecca Kerber, Carolin Rausch, Tobias Korbel, Jan O. Luke, Brian Trumpp, Andreas Kulozik, Andreas E. |
author_sort | Stockklausner, Clemens |
collection | PubMed |
description | The TERT gene encodes for the reverse transcriptase activity of the telomerase complex and mutations in TERT can lead to dysfunctional telomerase activity resulting in diseases such as dyskeratosis congenita (DKC). Here, we describe a novel TERT mutation at position T1129P leading to DKC with progressive bone marrow (BM) failure in homozygous members of a consanguineous family. BM hematopoietic stem cells (HSCs) of an affected family member were 300-fold reduced associated with a significantly impaired colony forming capacity in vitro and impaired repopulation activity in mouse xenografts. Recent data in yeast suggested improved cellular checkpoint controls by mTOR inhibition preventing cells with short telomeres or DNA damage from dividing. To evaluate a potential therapeutic option for the patient, we treated her primary skin fibroblasts and BM HSCs with the mTOR inhibitor rapamycin. This led to prolonged survival and decreased levels of senescence in T1129P mutant fibroblasts. In contrast, the impaired HSC function could not be improved by mTOR inhibition, as colony forming capacity and multilineage engraftment potential in xenotransplanted mice remained severely impaired. Thus, rapamycin treatment did not rescue the compromised stem cell function of TERT(T1129P) mutant patient HSCs and outlines limitations of a potential DKC therapy based on rapamycin. |
format | Online Article Text |
id | pubmed-4694062 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Impact Journals LLC |
record_format | MEDLINE/PubMed |
spelling | pubmed-46940622016-01-07 A novel autosomal recessive TERT T1129P mutation in a dyskeratosis congenita family leads to cellular senescence and loss of CD34+ hematopoietic stem cells not reversible by mTOR-inhibition Stockklausner, Clemens Raffel, Simon Klermund, Julia Bandapalli, Obul Reddy Beier, Fabian Brümmendorf, Tim H. Bürger, Friederike Sauer, Sven W. Hoffmann, Georg F. Lorenz, Holger Tagliaferri, Laura Nowak, Daniel Hofmann, Wolf-Karsten Buergermeister, Rebecca Kerber, Carolin Rausch, Tobias Korbel, Jan O. Luke, Brian Trumpp, Andreas Kulozik, Andreas E. Aging (Albany NY) Research Paper The TERT gene encodes for the reverse transcriptase activity of the telomerase complex and mutations in TERT can lead to dysfunctional telomerase activity resulting in diseases such as dyskeratosis congenita (DKC). Here, we describe a novel TERT mutation at position T1129P leading to DKC with progressive bone marrow (BM) failure in homozygous members of a consanguineous family. BM hematopoietic stem cells (HSCs) of an affected family member were 300-fold reduced associated with a significantly impaired colony forming capacity in vitro and impaired repopulation activity in mouse xenografts. Recent data in yeast suggested improved cellular checkpoint controls by mTOR inhibition preventing cells with short telomeres or DNA damage from dividing. To evaluate a potential therapeutic option for the patient, we treated her primary skin fibroblasts and BM HSCs with the mTOR inhibitor rapamycin. This led to prolonged survival and decreased levels of senescence in T1129P mutant fibroblasts. In contrast, the impaired HSC function could not be improved by mTOR inhibition, as colony forming capacity and multilineage engraftment potential in xenotransplanted mice remained severely impaired. Thus, rapamycin treatment did not rescue the compromised stem cell function of TERT(T1129P) mutant patient HSCs and outlines limitations of a potential DKC therapy based on rapamycin. Impact Journals LLC 2015-11-06 /pmc/articles/PMC4694062/ /pubmed/26546739 Text en Copyright: © 2015 Stockklausner et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Paper Stockklausner, Clemens Raffel, Simon Klermund, Julia Bandapalli, Obul Reddy Beier, Fabian Brümmendorf, Tim H. Bürger, Friederike Sauer, Sven W. Hoffmann, Georg F. Lorenz, Holger Tagliaferri, Laura Nowak, Daniel Hofmann, Wolf-Karsten Buergermeister, Rebecca Kerber, Carolin Rausch, Tobias Korbel, Jan O. Luke, Brian Trumpp, Andreas Kulozik, Andreas E. A novel autosomal recessive TERT T1129P mutation in a dyskeratosis congenita family leads to cellular senescence and loss of CD34+ hematopoietic stem cells not reversible by mTOR-inhibition |
title | A novel autosomal recessive TERT T1129P mutation in a dyskeratosis congenita family leads to cellular senescence and loss of CD34+ hematopoietic stem cells not reversible by mTOR-inhibition |
title_full | A novel autosomal recessive TERT T1129P mutation in a dyskeratosis congenita family leads to cellular senescence and loss of CD34+ hematopoietic stem cells not reversible by mTOR-inhibition |
title_fullStr | A novel autosomal recessive TERT T1129P mutation in a dyskeratosis congenita family leads to cellular senescence and loss of CD34+ hematopoietic stem cells not reversible by mTOR-inhibition |
title_full_unstemmed | A novel autosomal recessive TERT T1129P mutation in a dyskeratosis congenita family leads to cellular senescence and loss of CD34+ hematopoietic stem cells not reversible by mTOR-inhibition |
title_short | A novel autosomal recessive TERT T1129P mutation in a dyskeratosis congenita family leads to cellular senescence and loss of CD34+ hematopoietic stem cells not reversible by mTOR-inhibition |
title_sort | novel autosomal recessive tert t1129p mutation in a dyskeratosis congenita family leads to cellular senescence and loss of cd34+ hematopoietic stem cells not reversible by mtor-inhibition |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4694062/ https://www.ncbi.nlm.nih.gov/pubmed/26546739 |
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