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Dose imbalance of DYRK1A kinase causes systemic progeroid status in Down syndrome by increasing the un-repaired DNA damage and reducing LaminB1 levels

BACKGROUND: People with Down syndrome (DS) show clinical signs of accelerated ageing. Causative mechanisms remain unknown and hypotheses range from the (essentially untreatable) amplified-chromosomal-instability explanation, to potential actions of individual supernumerary chromosome-21 genes. The l...

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Autores principales: Murray, Aoife, Gough, Gillian, Cindrić, Ana, Vučković, Frano, Koschut, David, Borelli, Vincenzo, Petrović, Dražen J., Bekavac, Ana, Plećaš, Ante, Hribljan, Valentina, Brunmeir, Reinhard, Jurić, Julija, Pučić-Baković, Maja, Slana, Anita, Deriš, Helena, Frkatović, Azra, Groet, Jűrgen, O’Brien, Niamh L., Chen, Hong Yu, Yeap, Yee Jie, Delom, Frederic, Havlicek, Steven, Gammon, Luke, Hamburg, Sarah, Startin, Carla, D’Souza, Hana, Mitrečić, Dinko, Kero, Mijana, Odak, Ljubica, Krušlin, Božo, Krsnik, Željka, Kostović, Ivica, Foo, Jia Nee, Loh, Yuin-Han, Dunn, Norris Ray, de la Luna, Susana, Spector, Tim, Barišić, Ingeborg, Thomas, Michael S.C., Strydom, Andre, Franceschi, Claudio, Lauc, Gordan, Krištić, Jasminka, Alić, Ivan, Nižetić, Dean
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10435767/
https://www.ncbi.nlm.nih.gov/pubmed/37451904
http://dx.doi.org/10.1016/j.ebiom.2023.104692
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author Murray, Aoife
Gough, Gillian
Cindrić, Ana
Vučković, Frano
Koschut, David
Borelli, Vincenzo
Petrović, Dražen J.
Bekavac, Ana
Plećaš, Ante
Hribljan, Valentina
Brunmeir, Reinhard
Jurić, Julija
Pučić-Baković, Maja
Slana, Anita
Deriš, Helena
Frkatović, Azra
Groet, Jűrgen
O’Brien, Niamh L.
Chen, Hong Yu
Yeap, Yee Jie
Delom, Frederic
Havlicek, Steven
Gammon, Luke
Hamburg, Sarah
Startin, Carla
D’Souza, Hana
Mitrečić, Dinko
Kero, Mijana
Odak, Ljubica
Krušlin, Božo
Krsnik, Željka
Kostović, Ivica
Foo, Jia Nee
Loh, Yuin-Han
Dunn, Norris Ray
de la Luna, Susana
Spector, Tim
Barišić, Ingeborg
Thomas, Michael S.C.
Strydom, Andre
Franceschi, Claudio
Lauc, Gordan
Krištić, Jasminka
Alić, Ivan
Nižetić, Dean
author_facet Murray, Aoife
Gough, Gillian
Cindrić, Ana
Vučković, Frano
Koschut, David
Borelli, Vincenzo
Petrović, Dražen J.
Bekavac, Ana
Plećaš, Ante
Hribljan, Valentina
Brunmeir, Reinhard
Jurić, Julija
Pučić-Baković, Maja
Slana, Anita
Deriš, Helena
Frkatović, Azra
Groet, Jűrgen
O’Brien, Niamh L.
Chen, Hong Yu
Yeap, Yee Jie
Delom, Frederic
Havlicek, Steven
Gammon, Luke
Hamburg, Sarah
Startin, Carla
D’Souza, Hana
Mitrečić, Dinko
Kero, Mijana
Odak, Ljubica
Krušlin, Božo
Krsnik, Željka
Kostović, Ivica
Foo, Jia Nee
Loh, Yuin-Han
Dunn, Norris Ray
de la Luna, Susana
Spector, Tim
Barišić, Ingeborg
Thomas, Michael S.C.
Strydom, Andre
Franceschi, Claudio
Lauc, Gordan
Krištić, Jasminka
Alić, Ivan
Nižetić, Dean
author_sort Murray, Aoife
collection PubMed
description BACKGROUND: People with Down syndrome (DS) show clinical signs of accelerated ageing. Causative mechanisms remain unknown and hypotheses range from the (essentially untreatable) amplified-chromosomal-instability explanation, to potential actions of individual supernumerary chromosome-21 genes. The latter explanation could open a route to therapeutic amelioration if the specific over-acting genes could be identified and their action toned-down. METHODS: Biological age was estimated through patterns of sugar molecules attached to plasma immunoglobulin-G (IgG-glycans, an established “biological-ageing-clock”) in n = 246 individuals with DS from three European populations, clinically characterised for the presence of co-morbidities, and compared to n = 256 age-, sex- and demography-matched healthy controls. Isogenic human induced pluripotent stem cell (hiPSCs) models of full and partial trisomy-21 with CRISPR-Cas9 gene editing and two kinase inhibitors were studied prior and after differentiation to cerebral organoids. FINDINGS: Biological age in adults with DS is (on average) 18.4–19.1 years older than in chronological-age-matched controls independent of co-morbidities, and this shift remains constant throughout lifespan. Changes are detectable from early childhood, and do not require a supernumerary chromosome, but are seen in segmental duplication of only 31 genes, along with increased DNA damage and decreased levels of LaminB1 in nucleated blood cells. We demonstrate that these cell-autonomous phenotypes can be gene-dose-modelled and pharmacologically corrected in hiPSCs and derived cerebral organoids. Using isogenic hiPSC models we show that chromosome-21 gene DYRK1A overdose is sufficient and necessary to cause excess unrepaired DNA damage. INTERPRETATION: Explanation of hitherto observed accelerated ageing in DS as a developmental progeroid syndrome driven by DYRK1A overdose provides a target for early pharmacological preventative intervention strategies. FUNDING: Main funding came from the “Research Cooperability” Program of the 10.13039/501100004488Croatian Science Foundation funded by the 10.13039/501100000780European Union from the 10.13039/501100004895European Social Fund under the Operational Programme Efficient Human Resources 2014–2020, Project PZS-2019-02-4277, and the Wellcome Trust Grants 098330/Z/12/Z and 217199/Z/19/Z (UK). All other funding is described in details in the “Acknowledgements”.
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spelling pubmed-104357672023-08-19 Dose imbalance of DYRK1A kinase causes systemic progeroid status in Down syndrome by increasing the un-repaired DNA damage and reducing LaminB1 levels Murray, Aoife Gough, Gillian Cindrić, Ana Vučković, Frano Koschut, David Borelli, Vincenzo Petrović, Dražen J. Bekavac, Ana Plećaš, Ante Hribljan, Valentina Brunmeir, Reinhard Jurić, Julija Pučić-Baković, Maja Slana, Anita Deriš, Helena Frkatović, Azra Groet, Jűrgen O’Brien, Niamh L. Chen, Hong Yu Yeap, Yee Jie Delom, Frederic Havlicek, Steven Gammon, Luke Hamburg, Sarah Startin, Carla D’Souza, Hana Mitrečić, Dinko Kero, Mijana Odak, Ljubica Krušlin, Božo Krsnik, Željka Kostović, Ivica Foo, Jia Nee Loh, Yuin-Han Dunn, Norris Ray de la Luna, Susana Spector, Tim Barišić, Ingeborg Thomas, Michael S.C. Strydom, Andre Franceschi, Claudio Lauc, Gordan Krištić, Jasminka Alić, Ivan Nižetić, Dean eBioMedicine Articles BACKGROUND: People with Down syndrome (DS) show clinical signs of accelerated ageing. Causative mechanisms remain unknown and hypotheses range from the (essentially untreatable) amplified-chromosomal-instability explanation, to potential actions of individual supernumerary chromosome-21 genes. The latter explanation could open a route to therapeutic amelioration if the specific over-acting genes could be identified and their action toned-down. METHODS: Biological age was estimated through patterns of sugar molecules attached to plasma immunoglobulin-G (IgG-glycans, an established “biological-ageing-clock”) in n = 246 individuals with DS from three European populations, clinically characterised for the presence of co-morbidities, and compared to n = 256 age-, sex- and demography-matched healthy controls. Isogenic human induced pluripotent stem cell (hiPSCs) models of full and partial trisomy-21 with CRISPR-Cas9 gene editing and two kinase inhibitors were studied prior and after differentiation to cerebral organoids. FINDINGS: Biological age in adults with DS is (on average) 18.4–19.1 years older than in chronological-age-matched controls independent of co-morbidities, and this shift remains constant throughout lifespan. Changes are detectable from early childhood, and do not require a supernumerary chromosome, but are seen in segmental duplication of only 31 genes, along with increased DNA damage and decreased levels of LaminB1 in nucleated blood cells. We demonstrate that these cell-autonomous phenotypes can be gene-dose-modelled and pharmacologically corrected in hiPSCs and derived cerebral organoids. Using isogenic hiPSC models we show that chromosome-21 gene DYRK1A overdose is sufficient and necessary to cause excess unrepaired DNA damage. INTERPRETATION: Explanation of hitherto observed accelerated ageing in DS as a developmental progeroid syndrome driven by DYRK1A overdose provides a target for early pharmacological preventative intervention strategies. FUNDING: Main funding came from the “Research Cooperability” Program of the 10.13039/501100004488Croatian Science Foundation funded by the 10.13039/501100000780European Union from the 10.13039/501100004895European Social Fund under the Operational Programme Efficient Human Resources 2014–2020, Project PZS-2019-02-4277, and the Wellcome Trust Grants 098330/Z/12/Z and 217199/Z/19/Z (UK). All other funding is described in details in the “Acknowledgements”. Elsevier 2023-07-12 /pmc/articles/PMC10435767/ /pubmed/37451904 http://dx.doi.org/10.1016/j.ebiom.2023.104692 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Articles
Murray, Aoife
Gough, Gillian
Cindrić, Ana
Vučković, Frano
Koschut, David
Borelli, Vincenzo
Petrović, Dražen J.
Bekavac, Ana
Plećaš, Ante
Hribljan, Valentina
Brunmeir, Reinhard
Jurić, Julija
Pučić-Baković, Maja
Slana, Anita
Deriš, Helena
Frkatović, Azra
Groet, Jűrgen
O’Brien, Niamh L.
Chen, Hong Yu
Yeap, Yee Jie
Delom, Frederic
Havlicek, Steven
Gammon, Luke
Hamburg, Sarah
Startin, Carla
D’Souza, Hana
Mitrečić, Dinko
Kero, Mijana
Odak, Ljubica
Krušlin, Božo
Krsnik, Željka
Kostović, Ivica
Foo, Jia Nee
Loh, Yuin-Han
Dunn, Norris Ray
de la Luna, Susana
Spector, Tim
Barišić, Ingeborg
Thomas, Michael S.C.
Strydom, Andre
Franceschi, Claudio
Lauc, Gordan
Krištić, Jasminka
Alić, Ivan
Nižetić, Dean
Dose imbalance of DYRK1A kinase causes systemic progeroid status in Down syndrome by increasing the un-repaired DNA damage and reducing LaminB1 levels
title Dose imbalance of DYRK1A kinase causes systemic progeroid status in Down syndrome by increasing the un-repaired DNA damage and reducing LaminB1 levels
title_full Dose imbalance of DYRK1A kinase causes systemic progeroid status in Down syndrome by increasing the un-repaired DNA damage and reducing LaminB1 levels
title_fullStr Dose imbalance of DYRK1A kinase causes systemic progeroid status in Down syndrome by increasing the un-repaired DNA damage and reducing LaminB1 levels
title_full_unstemmed Dose imbalance of DYRK1A kinase causes systemic progeroid status in Down syndrome by increasing the un-repaired DNA damage and reducing LaminB1 levels
title_short Dose imbalance of DYRK1A kinase causes systemic progeroid status in Down syndrome by increasing the un-repaired DNA damage and reducing LaminB1 levels
title_sort dose imbalance of dyrk1a kinase causes systemic progeroid status in down syndrome by increasing the un-repaired dna damage and reducing laminb1 levels
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10435767/
https://www.ncbi.nlm.nih.gov/pubmed/37451904
http://dx.doi.org/10.1016/j.ebiom.2023.104692
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