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FoxM1 repression during human aging leads to mitotic decline and aneuploidy-driven full senescence.


ABSTRACT: Aneuploidy, an abnormal chromosome number, has been linked to aging and age-associated diseases, but the underlying molecular mechanisms remain unknown. Here we show, through direct live-cell imaging of young, middle-aged, and old-aged primary human dermal fibroblasts, that aneuploidy increases with aging due to general dysfunction of the mitotic machinery. Increased chromosome mis-segregation in elderly mitotic cells correlates with an early senescence-associated secretory phenotype (SASP) and repression of Forkhead box M1 (FoxM1), the transcription factor that drives G2/M gene expression. FoxM1 induction in elderly and Hutchison-Gilford progeria syndrome fibroblasts prevents aneuploidy and, importantly, ameliorates cellular aging phenotypes. Moreover, we show that senescent fibroblasts isolated from elderly donors' cultures are often aneuploid, and that aneuploidy is a key trigger into full senescence phenotypes. Based on this feedback loop between cellular aging and aneuploidy, we propose modulation of mitotic efficiency through FoxM1 as a potential strategy against aging and progeria syndromes.

SUBMITTER: Macedo JC 

PROVIDER: S-EPMC6053425 | biostudies-literature | 2018 Jul

REPOSITORIES: biostudies-literature

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FoxM1 repression during human aging leads to mitotic decline and aneuploidy-driven full senescence.

Macedo Joana Catarina JC   Vaz Sara S   Bakker Bjorn B   Ribeiro Rui R   Bakker Petra Lammigje PL   Escandell Jose Miguel JM   Ferreira Miguel Godinho MG   Medema René R   Foijer Floris F   Logarinho Elsa E  

Nature communications 20180719 1


Aneuploidy, an abnormal chromosome number, has been linked to aging and age-associated diseases, but the underlying molecular mechanisms remain unknown. Here we show, through direct live-cell imaging of young, middle-aged, and old-aged primary human dermal fibroblasts, that aneuploidy increases with aging due to general dysfunction of the mitotic machinery. Increased chromosome mis-segregation in elderly mitotic cells correlates with an early senescence-associated secretory phenotype (SASP) and  ...[more]

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