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Chromosome alignment maintenance requires the MAP RECQL4, mutated in the Rothmund–Thomson syndrome

RecQ-like helicase 4 (RECQL4) is mutated in patients suffering from the Rothmund–Thomson syndrome, a genetic disease characterized by premature aging, skeletal malformations, and high cancer susceptibility. Known roles of RECQL4 in DNA replication and repair provide a possible explanation of chromos...

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Autores principales: Yokoyama, Hideki, Moreno-Andres, Daniel, Astrinidis, Susanne A, Hao, Yuqing, Weberruss, Marion, Schellhaus, Anna K, Lue, Hongqi, Haramoto, Yoshikazu, Gruss, Oliver J, Antonin, Wolfram
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6362308/
https://www.ncbi.nlm.nih.gov/pubmed/30718377
http://dx.doi.org/10.26508/lsa.201800120
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author Yokoyama, Hideki
Moreno-Andres, Daniel
Astrinidis, Susanne A
Hao, Yuqing
Weberruss, Marion
Schellhaus, Anna K
Lue, Hongqi
Haramoto, Yoshikazu
Gruss, Oliver J
Antonin, Wolfram
author_facet Yokoyama, Hideki
Moreno-Andres, Daniel
Astrinidis, Susanne A
Hao, Yuqing
Weberruss, Marion
Schellhaus, Anna K
Lue, Hongqi
Haramoto, Yoshikazu
Gruss, Oliver J
Antonin, Wolfram
author_sort Yokoyama, Hideki
collection PubMed
description RecQ-like helicase 4 (RECQL4) is mutated in patients suffering from the Rothmund–Thomson syndrome, a genetic disease characterized by premature aging, skeletal malformations, and high cancer susceptibility. Known roles of RECQL4 in DNA replication and repair provide a possible explanation of chromosome instability observed in patient cells. Here, we demonstrate that RECQL4 is a microtubule-associated protein (MAP) localizing to the mitotic spindle. RECQL4 depletion in M-phase–arrested frog egg extracts does not affect spindle assembly per se, but interferes with maintaining chromosome alignment at the metaphase plate. Low doses of nocodazole depolymerize RECQL4-depleted spindles more easily, suggesting abnormal microtubule–kinetochore interaction. Surprisingly, inter-kinetochore distance of sister chromatids is larger in depleted extracts and patient fibroblasts. Consistent with a role to maintain stable chromosome alignment, RECQL4 down-regulation in HeLa cells causes chromosome misalignment and delays mitotic progression. Importantly, these chromosome alignment defects are independent from RECQL4’s reported roles in DNA replication and damage repair. Our data elucidate a novel function of RECQL4 in mitosis, and defects in mitotic chromosome alignment might be a contributing factor for the Rothmund–Thomson syndrome.
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spelling pubmed-63623082019-02-06 Chromosome alignment maintenance requires the MAP RECQL4, mutated in the Rothmund–Thomson syndrome Yokoyama, Hideki Moreno-Andres, Daniel Astrinidis, Susanne A Hao, Yuqing Weberruss, Marion Schellhaus, Anna K Lue, Hongqi Haramoto, Yoshikazu Gruss, Oliver J Antonin, Wolfram Life Sci Alliance Research Articles RecQ-like helicase 4 (RECQL4) is mutated in patients suffering from the Rothmund–Thomson syndrome, a genetic disease characterized by premature aging, skeletal malformations, and high cancer susceptibility. Known roles of RECQL4 in DNA replication and repair provide a possible explanation of chromosome instability observed in patient cells. Here, we demonstrate that RECQL4 is a microtubule-associated protein (MAP) localizing to the mitotic spindle. RECQL4 depletion in M-phase–arrested frog egg extracts does not affect spindle assembly per se, but interferes with maintaining chromosome alignment at the metaphase plate. Low doses of nocodazole depolymerize RECQL4-depleted spindles more easily, suggesting abnormal microtubule–kinetochore interaction. Surprisingly, inter-kinetochore distance of sister chromatids is larger in depleted extracts and patient fibroblasts. Consistent with a role to maintain stable chromosome alignment, RECQL4 down-regulation in HeLa cells causes chromosome misalignment and delays mitotic progression. Importantly, these chromosome alignment defects are independent from RECQL4’s reported roles in DNA replication and damage repair. Our data elucidate a novel function of RECQL4 in mitosis, and defects in mitotic chromosome alignment might be a contributing factor for the Rothmund–Thomson syndrome. Life Science Alliance LLC 2019-02-04 /pmc/articles/PMC6362308/ /pubmed/30718377 http://dx.doi.org/10.26508/lsa.201800120 Text en © 2019 Yokoyama et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Yokoyama, Hideki
Moreno-Andres, Daniel
Astrinidis, Susanne A
Hao, Yuqing
Weberruss, Marion
Schellhaus, Anna K
Lue, Hongqi
Haramoto, Yoshikazu
Gruss, Oliver J
Antonin, Wolfram
Chromosome alignment maintenance requires the MAP RECQL4, mutated in the Rothmund–Thomson syndrome
title Chromosome alignment maintenance requires the MAP RECQL4, mutated in the Rothmund–Thomson syndrome
title_full Chromosome alignment maintenance requires the MAP RECQL4, mutated in the Rothmund–Thomson syndrome
title_fullStr Chromosome alignment maintenance requires the MAP RECQL4, mutated in the Rothmund–Thomson syndrome
title_full_unstemmed Chromosome alignment maintenance requires the MAP RECQL4, mutated in the Rothmund–Thomson syndrome
title_short Chromosome alignment maintenance requires the MAP RECQL4, mutated in the Rothmund–Thomson syndrome
title_sort chromosome alignment maintenance requires the map recql4, mutated in the rothmund–thomson syndrome
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6362308/
https://www.ncbi.nlm.nih.gov/pubmed/30718377
http://dx.doi.org/10.26508/lsa.201800120
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