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Chromosomal instability drives metastasis through a cytosolic DNA response
被引:0
|作者:
Samuel F. Bakhoum
Bryan Ngo
Ashley M. Laughney
Julie-Ann Cavallo
Charles J. Murphy
Peter Ly
Pragya Shah
Roshan K. Sriram
Thomas B. K. Watkins
Neil K. Taunk
Mercedes Duran
Chantal Pauli
Christine Shaw
Kalyani Chadalavada
Vinagolu K. Rajasekhar
Giulio Genovese
Subramanian Venkatesan
Nicolai J. Birkbak
Nicholas McGranahan
Mark Lundquist
Quincey LaPlant
John H. Healey
Olivier Elemento
Christine H. Chung
Nancy Y. Lee
Marcin Imielenski
Gouri Nanjangud
Dana Pe’er
Don W. Cleveland
Simon N. Powell
Jan Lammerding
Charles Swanton
Lewis C. Cantley
机构:
[1] Memorial Sloan Kettering Cancer Center,Department of Radiation Oncology
[2] Sandra and Edward Meyer Cancer Center,Department of Surgery
[3] Weill Cornell Medicine,undefined
[4] Cancer Biology and Genetics Program,undefined
[5] Memorial Sloan Kettering Cancer Center,undefined
[6] Ludwig Institute for Cancer Research,undefined
[7] University of California San Diego,undefined
[8] Nancy E. and Peter C. Meinig School of Biomedical Engineering & Weill Institute for Cell and Molecular Biology,undefined
[9] Cornell University,undefined
[10] The Francis Crick Institute,undefined
[11] Institute for Pathology and Molecular Pathology,undefined
[12] University Hospital Zurich,undefined
[13] Molecular Cytogenetics Core,undefined
[14] Memorial Sloan Kettering Cancer Center,undefined
[15] Memorial Sloan Kettering Cancer Center,undefined
[16] The Broad Institute of Harvard and MIT,undefined
[17] Cambridge,undefined
[18] UCL Cancer Institute,undefined
[19] Moffitt Cancer Center,undefined
[20] Computational Biology Program,undefined
[21] Memorial Sloan Kettering Cancer Center,undefined
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摘要:
Chromosomal instability is a hallmark of cancer that results from ongoing errors in chromosome segregation during mitosis. Although chromosomal instability is a major driver of tumour evolution, its role in metastasis has not been established. Here we show that chromosomal instability promotes metastasis by sustaining a tumour cell-autonomous response to cytosolic DNA. Errors in chromosome segregation create a preponderance of micronuclei whose rupture spills genomic DNA into the cytosol. This leads to the activation of the cGAS–STING (cyclic GMP-AMP synthase–stimulator of interferon genes) cytosolic DNA-sensing pathway and downstream noncanonical NF-κB signalling. Genetic suppression of chromosomal instability markedly delays metastasis even in highly aneuploid tumour models, whereas continuous chromosome segregation errors promote cellular invasion and metastasis in a STING-dependent manner. By subverting lethal epithelial responses to cytosolic DNA, chromosomally unstable tumour cells co-opt chronic activation of innate immune pathways to spread to distant organs.
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页码:467 / 472
页数:5
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