Aneuploidy, a state of karyotype imbalance, is a hallmark of cancer. Changes in chromosome copy number have been proposed to drive disease by modulating the dosage of cancer driver genes and by promoting cancer genome evolution. Given the potential of cells with abnormal karyotypes to become cancerous, do pathways that limit the prevalence of such cells exist? By investigating the immediate consequences of aneuploidy on cell physiology, we identified mechanisms that eliminate aneuploid cells. We find that chromosome missegregation leads to further genomic instability that ultimately causes cell-cycle arrest. We further show that cells with complex karyotypes exhibit features of senescence and produce pro-inflammatory signals that promote their clearance by the immune system. We propose that cells with abnormal karyotypes generate a signal for their own elimination that may serve as a means for cancer cell immunosurveillance.

Chromosome Mis-segregation Generates Cell-Cycle-Arrested Cells with Complex Karyotypes that Are Eliminated by the Immune System / S. Santaguida, A. Richardson, D. Iyer, O. M'Saad, L. Zasadil, K. Knouse, Y. Wong, N. Rhind, A. Desai, A. Amon. - In: DEVELOPMENTAL CELL. - ISSN 1534-5807. - 41:6(2017), pp. 638-651.

Chromosome Mis-segregation Generates Cell-Cycle-Arrested Cells with Complex Karyotypes that Are Eliminated by the Immune System

S. Santaguida
Primo
;
2017

Abstract

Aneuploidy, a state of karyotype imbalance, is a hallmark of cancer. Changes in chromosome copy number have been proposed to drive disease by modulating the dosage of cancer driver genes and by promoting cancer genome evolution. Given the potential of cells with abnormal karyotypes to become cancerous, do pathways that limit the prevalence of such cells exist? By investigating the immediate consequences of aneuploidy on cell physiology, we identified mechanisms that eliminate aneuploid cells. We find that chromosome missegregation leads to further genomic instability that ultimately causes cell-cycle arrest. We further show that cells with complex karyotypes exhibit features of senescence and produce pro-inflammatory signals that promote their clearance by the immune system. We propose that cells with abnormal karyotypes generate a signal for their own elimination that may serve as a means for cancer cell immunosurveillance.
English
Settore BIO/11 - Biologia Molecolare
Articolo
Esperti anonimi
Pubblicazione scientifica
2017
Cell Press
41
6
638
651
14
Pubblicato
Periodico con rilevanza internazionale
Aderisco
info:eu-repo/semantics/article
Chromosome Mis-segregation Generates Cell-Cycle-Arrested Cells with Complex Karyotypes that Are Eliminated by the Immune System / S. Santaguida, A. Richardson, D. Iyer, O. M'Saad, L. Zasadil, K. Knouse, Y. Wong, N. Rhind, A. Desai, A. Amon. - In: DEVELOPMENTAL CELL. - ISSN 1534-5807. - 41:6(2017), pp. 638-651.
open
Prodotti della ricerca::01 - Articolo su periodico
10
262
Article (author)
si
S. Santaguida, A. Richardson, D. Iyer, O. M'Saad, L. Zasadil, K. Knouse, Y. Wong, N. Rhind, A. Desai, A. Amon
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/622936
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