Trisomy 12 is the most common whole-chromosome abnormality in human pluripotent stem cells. Conventionally, this acquired aneuploidy is ascribed to a rare single-cell event followed by selective growth advantage. Instead, we show that trisomy 12 emerges simultaneously in a very high percentage of cells in critical transition passages. Mis-segregation and incorporation of chromosome 12 into micronuclei occur through bridging of the short p arms of chromosome 12. Subsequently, single, unreplicated chromosome 12 chromatids are observed in mitotic cells. Erosion of the subtelomeric regions of the 12p arms is found during the passages when chromosome 12 bridges become frequent and trisomy 12 increases. Trisomy 12 cells persist due to a slight growth advantage. Among the shortest telomeres in humans are those on the 12p arms, making them particularly vulnerable to damage and bridging during mitosis. These findings reveal a novel mechanism of whole-chromosome instability in human stem cells, with broad implications for understanding the genesis of aneuploidy across diverse biological systems.
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3 November 2025
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August 13 2025
Origin of chromosome 12 trisomy surge in human induced pluripotent stem cells
Maria Narozna
,
(Conceptualization, Data curation, Formal analysis, Investigation, Methodology, Validation, Visualization, Writing - original draft)
1
Program in Cell Cycle and Cancer Biology, Oklahoma Medical Research Foundation
, Oklahoma City, OK, USA
Maria Narozna: [email protected]
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Megan C. Latham
,
Megan C. Latham
(Investigation, Methodology, Writing - review & editing)
1
Program in Cell Cycle and Cancer Biology, Oklahoma Medical Research Foundation
, Oklahoma City, OK, USA
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Gary J. Gorbsky
(Conceptualization, Funding acquisition, Project administration, Resources, Supervision, Writing - review & editing)
1
Program in Cell Cycle and Cancer Biology, Oklahoma Medical Research Foundation
, Oklahoma City, OK, USA
2Department of Cell Biology,
University of Oklahoma Health Sciences Center
, Oklahoma City, OK, USA
Correspondence to Gary J. Gorbsky: [email protected]
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Maria Narozna
https://orcid.org/0000-0001-6247-2079
Conceptualization, Data curation, Formal analysis, Investigation, Methodology, Validation, Visualization, Writing - original draft
1
Program in Cell Cycle and Cancer Biology, Oklahoma Medical Research Foundation
, Oklahoma City, OK, USA
Megan C. Latham
https://orcid.org/0000-0001-7467-4719
Investigation, Methodology, Writing - review & editing
1
Program in Cell Cycle and Cancer Biology, Oklahoma Medical Research Foundation
, Oklahoma City, OK, USA
Gary J. Gorbsky
https://orcid.org/0000-0003-3076-4725
Conceptualization, Funding acquisition, Project administration, Resources, Supervision, Writing - review & editing
1
Program in Cell Cycle and Cancer Biology, Oklahoma Medical Research Foundation
, Oklahoma City, OK, USA
2Department of Cell Biology,
University of Oklahoma Health Sciences Center
, Oklahoma City, OK, USA
Correspondence to Gary J. Gorbsky: [email protected]
Maria Narozna: [email protected]
Disclosures: The authors declare no competing interests exist.
Received:
January 28 2025
Revision Received:
May 15 2025
Accepted:
July 28 2025
Online ISSN: 1540-8140
Print ISSN: 0021-9525
Funding
Funder(s):
Oklahoma Center for Adult Stem Cell Research
Funder(s):
National Institute of General Medical Sciences
- Award Id(s): R35GM126980
Funder(s):
McCasland Foundation
© 2025 Narozna et al.
2025
Narozna et al.
This article is distributed under the terms as described at https://rupress.org/pages/terms102024/.
J Cell Biol (2025) 224 (11): e202501231.
Article history
Received:
January 28 2025
Revision Received:
May 15 2025
Accepted:
July 28 2025
Connected Content
Citation
Maria Narozna, Megan C. Latham, Gary J. Gorbsky; Origin of chromosome 12 trisomy surge in human induced pluripotent stem cells. J Cell Biol 3 November 2025; 224 (11): e202501231. doi: https://doi.org/10.1083/jcb.202501231
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