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Single-cell transcription profiles in Bloom syndrome patients link BLM deficiency with altered condensin complex expression signatures

Bloom syndrome (BS) is an autosomal recessive disease clinically characterized by primary microcephaly, growth deficiency, immunodeficiency and predisposition to cancer. It is mainly caused by biallelic loss-of-function mutations in the BLM gene, which encodes the BLM helicase, acting in DNA replica...

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Autores principales: Gönenc, Ipek Ilgin, Wolff, Alexander, Schmidt, Julia, Zibat, Arne, Müller, Christian, Cyganek, Lukas, Argyriou, Loukas, Räschle, Markus, Yigit, Gökhan, Wollnik, Bernd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9262399/
https://www.ncbi.nlm.nih.gov/pubmed/35099000
http://dx.doi.org/10.1093/hmg/ddab373
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author Gönenc, Ipek Ilgin
Wolff, Alexander
Schmidt, Julia
Zibat, Arne
Müller, Christian
Cyganek, Lukas
Argyriou, Loukas
Räschle, Markus
Yigit, Gökhan
Wollnik, Bernd
author_facet Gönenc, Ipek Ilgin
Wolff, Alexander
Schmidt, Julia
Zibat, Arne
Müller, Christian
Cyganek, Lukas
Argyriou, Loukas
Räschle, Markus
Yigit, Gökhan
Wollnik, Bernd
author_sort Gönenc, Ipek Ilgin
collection PubMed
description Bloom syndrome (BS) is an autosomal recessive disease clinically characterized by primary microcephaly, growth deficiency, immunodeficiency and predisposition to cancer. It is mainly caused by biallelic loss-of-function mutations in the BLM gene, which encodes the BLM helicase, acting in DNA replication and repair processes. Here, we describe the gene expression profiles of three BS fibroblast cell lines harboring causative, biallelic truncating mutations obtained by single-cell (sc) transcriptome analysis. We compared the scRNA transcription profiles from three BS patient cell lines to two age-matched wild-type controls and observed specific deregulation of gene sets related to the molecular processes characteristically affected in BS, such as mitosis, chromosome segregation, cell cycle regulation and genomic instability. We also found specific upregulation of genes of the Fanconi anemia pathway, in particular FANCM, FANCD2 and FANCI, which encode known interaction partners of BLM. The significant deregulation of genes associated with inherited forms of primary microcephaly observed in our study might explain in part the molecular pathogenesis of microcephaly in BS, one of the main clinical characteristics in patients. Finally, our data provide first evidence of a novel link between BLM dysfunction and transcriptional changes in condensin complex I and II genes. Overall, our study provides novel insights into gene expression profiles in BS on an sc level, linking specific genes and pathways to BLM dysfunction.
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spelling pubmed-92623992022-07-08 Single-cell transcription profiles in Bloom syndrome patients link BLM deficiency with altered condensin complex expression signatures Gönenc, Ipek Ilgin Wolff, Alexander Schmidt, Julia Zibat, Arne Müller, Christian Cyganek, Lukas Argyriou, Loukas Räschle, Markus Yigit, Gökhan Wollnik, Bernd Hum Mol Genet Original Article Bloom syndrome (BS) is an autosomal recessive disease clinically characterized by primary microcephaly, growth deficiency, immunodeficiency and predisposition to cancer. It is mainly caused by biallelic loss-of-function mutations in the BLM gene, which encodes the BLM helicase, acting in DNA replication and repair processes. Here, we describe the gene expression profiles of three BS fibroblast cell lines harboring causative, biallelic truncating mutations obtained by single-cell (sc) transcriptome analysis. We compared the scRNA transcription profiles from three BS patient cell lines to two age-matched wild-type controls and observed specific deregulation of gene sets related to the molecular processes characteristically affected in BS, such as mitosis, chromosome segregation, cell cycle regulation and genomic instability. We also found specific upregulation of genes of the Fanconi anemia pathway, in particular FANCM, FANCD2 and FANCI, which encode known interaction partners of BLM. The significant deregulation of genes associated with inherited forms of primary microcephaly observed in our study might explain in part the molecular pathogenesis of microcephaly in BS, one of the main clinical characteristics in patients. Finally, our data provide first evidence of a novel link between BLM dysfunction and transcriptional changes in condensin complex I and II genes. Overall, our study provides novel insights into gene expression profiles in BS on an sc level, linking specific genes and pathways to BLM dysfunction. Oxford University Press 2022-01-31 /pmc/articles/PMC9262399/ /pubmed/35099000 http://dx.doi.org/10.1093/hmg/ddab373 Text en © The Author(s) 2022. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Gönenc, Ipek Ilgin
Wolff, Alexander
Schmidt, Julia
Zibat, Arne
Müller, Christian
Cyganek, Lukas
Argyriou, Loukas
Räschle, Markus
Yigit, Gökhan
Wollnik, Bernd
Single-cell transcription profiles in Bloom syndrome patients link BLM deficiency with altered condensin complex expression signatures
title Single-cell transcription profiles in Bloom syndrome patients link BLM deficiency with altered condensin complex expression signatures
title_full Single-cell transcription profiles in Bloom syndrome patients link BLM deficiency with altered condensin complex expression signatures
title_fullStr Single-cell transcription profiles in Bloom syndrome patients link BLM deficiency with altered condensin complex expression signatures
title_full_unstemmed Single-cell transcription profiles in Bloom syndrome patients link BLM deficiency with altered condensin complex expression signatures
title_short Single-cell transcription profiles in Bloom syndrome patients link BLM deficiency with altered condensin complex expression signatures
title_sort single-cell transcription profiles in bloom syndrome patients link blm deficiency with altered condensin complex expression signatures
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9262399/
https://www.ncbi.nlm.nih.gov/pubmed/35099000
http://dx.doi.org/10.1093/hmg/ddab373
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