Breast tumours maintain a reservoir of subclonal diversity during expansion.


Journal

Nature
ISSN: 1476-4687
Titre abrégé: Nature
Pays: England
ID NLM: 0410462

Informations de publication

Date de publication:
04 2021
Historique:
received: 13 05 2020
accepted: 12 02 2021
pubmed: 26 3 2021
medline: 1 9 2021
entrez: 25 3 2021
Statut: ppublish

Résumé

Our knowledge of copy number evolution during the expansion of primary breast tumours is limited

Identifiants

pubmed: 33762732
doi: 10.1038/s41586-021-03357-x
pii: 10.1038/s41586-021-03357-x
pmc: PMC8049101
mid: NIHMS1673613
doi:

Types de publication

Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

302-308

Subventions

Organisme : NCI NIH HHS
ID : R01 CA236864
Pays : United States
Organisme : NCI NIH HHS
ID : P30 CA016672
Pays : United States
Organisme : NCI NIH HHS
ID : U54 CA143798
Pays : United States
Organisme : NCI NIH HHS
ID : R01 CA240526
Pays : United States
Organisme : Arthritis Research UK
ID : FC001202
Pays : United Kingdom
Organisme : Wellcome Trust
Pays : United Kingdom
Organisme : Wellcome Trust
ID : FC001202
Pays : United Kingdom

Commentaires et corrections

Type : CommentIn

Références

Davis, A., Gao, R. & Navin, N. Tumor evolution: linear, branching, neutral or punctuated? Biochim. Biophys. Acta Rev. Cancer 1867, 151–161 (2017).
pubmed: 28110020
Burrell, R. A., McGranahan, N., Bartek, J. & Swanton, C. The causes and consequences of genetic heterogeneity in cancer evolution. Nature 501, 338–345 (2013).
pubmed: 24048066
Pfister, K. et al. Identification of drivers of aneuploidy in breast tumors. Cell Rep. 23, 2758–2769 (2018).
pubmed: 29847804 pmcid: 5997284
Xu, J., Huang, L. & Li, J. DNA aneuploidy and breast cancer: a meta-analysis of 141,163 cases. Oncotarget 7, 60218–60229 (2016).
pubmed: 27528028 pmcid: 5312380
Gordon, D. J., Resio, B. & Pellman, D. Causes and consequences of aneuploidy in cancer. Nat. Rev. Genet. 13, 189–203 (2012).
pubmed: 22269907
Fearon, E. R. & Vogelstein, B. A genetic model for colorectal tumorigenesis. Cell 61, 759–767 (1990).
pubmed: 2188735
Gao, R. et al. Punctuated copy number evolution and clonal stasis in triple-negative breast cancer. Nat. Genet. 48, 1119–1130 (2016).
pubmed: 27526321 pmcid: 5042845
Navin, N. et al. Tumour evolution inferred by single-cell sequencing. Nature 472, 90–94 (2011).
pubmed: 21399628 pmcid: 4504184
Cross, W. et al. The evolutionary landscape of colorectal tumorigenesis. Nat. Ecol. Evol. 2, 1661–1672 (2018).
pubmed: 30177804 pmcid: 6152905
Baca, S. C. et al. Punctuated evolution of prostate cancer genomes. Cell 153, 666–677 (2013).
pubmed: 23622249 pmcid: 3690918
Carter, S. L. et al. Absolute quantification of somatic DNA alterations in human cancer. Nat. Biotechnol. 30, 413–421 (2012).
pubmed: 22544022 pmcid: 4383288
Zack, T. I. et al. Pan-cancer patterns of somatic copy number alteration. Nat. Genet. 45, 1134–1140 (2013).
pubmed: 24071852 pmcid: 3966983
Gerstung, M. et al. The evolutionary history of 2,658 cancers. Nature 578, 122–128 (2020).
pubmed: 32025013 pmcid: 7054212
Cross, W. Ch., Graham, T. A. & Wright, N. A. New paradigms in clonal evolution: punctuated equilibrium in cancer. J. Pathol. 240, 126–136 (2016).
pubmed: 27282810
Hadimioglu, B., Stearns, R. & Ellson, R. Moving liquids with sound: the physics of acoustic droplet ejection for robust laboratory automation in life sciences. J. Lab. Autom. 21, 4–18 (2016).
pubmed: 26538573
Zahn, H. et al. Scalable whole-genome single-cell library preparation without preamplification. Nat. Methods 14, 167–173 (2017).
pubmed: 28068316
Chavez, K. J., Garimella, S. V. & Lipkowitz, S. Triple negative breast cancer cell lines: one tool in the search for better treatment of triple negative breast cancer. Breast Dis. 32, 35–48 (2010).
pubmed: 21778573 pmcid: 3532890
Williams, M. J., Werner, B., Barnes, C. P., Graham, T. A. & Sottoriva, A. Identification of neutral tumor evolution across cancer types. Nat. Genet. 48, 238–244 (2016).
pubmed: 26780609 pmcid: 4934603
Liberzon, A. et al. The Molecular Signatures Database (MSigDB) hallmark gene set collection. Cell Syst. 1, 417–425 (2015).
pubmed: 26771021 pmcid: 4707969
Wang, Y. et al. Clonal evolution in breast cancer revealed by single nucleus genome sequencing. Nature 512, 155–160 (2014).
pubmed: 25079324 pmcid: 4158312
Cross, W. et al. Stabilising selection causes grossly altered but stable karyotypes in metastatic colorectal cancer. Preprint at https://doi.org/10.1101/2020.03.26.007138 (2020).
Fehrmann, R. S. et al. Gene expression analysis identifies global gene dosage sensitivity in cancer. Nat. Genet. 47, 115–125 (2015).
pubmed: 25581432
Ben-David, U. et al. Genetic and transcriptional evolution alters cancer cell line drug response. Nature 560, 325–330 (2018).
pubmed: 30089904 pmcid: 6522222
Greenfield, E. A. Single-cell cloning of hybridoma cells by limiting dilution. Cold Spring Harb. Protoc. https://doi.org/10.1101/pdb.prot103192 (2019).
Zong, C., Lu, S., Chapman, A. R. & Xie, X. S. Genome-wide detection of single-nucleotide and copy-number variations of a single human cell. Science 338, 1622–1626 (2012).
pubmed: 23258894 pmcid: 3600412
Xi, L. et al. New library construction method for single-cell genomes. PLoS ONE 12, e0181163 (2017).
pubmed: 28723968 pmcid: 5517011
Laks, E. et al. Clonal decomposition and DNA replication states defined by scaled single-cell genome sequencing. Cell 179, 1207–1221 (2019).
pubmed: 31730858 pmcid: 6912164
Vitak, S. A. et al. Sequencing thousands of single-cell genomes with combinatorial indexing. Nat. Methods 14, 302–308 (2017).
doi: 10.1038/nmeth.4154 pubmed: 28135258 pmcid: 5908213
Baslan, T. et al. Genome-wide copy number analysis of single cells. Nat. Protoc. 7, 1024–1041 (2012).
pubmed: 22555242 pmcid: 5069701
Langmead, B. & Salzberg, S. L. Fast gapped-read alignment with Bowtie 2. Nat. Methods 9, 357–359 (2012).
pubmed: 22388286 pmcid: 3322381
Li, H. et al. The Sequence Alignment/Map format and SAMtools. Bioinformatics 25, 2078–2079 (2009).
pubmed: 19505943 pmcid: 2723002
Venkatraman, E. S. & Olshen, A. B. A faster circular binary segmentation algorithm for the analysis of array CGH data. Bioinformatics 23, 657–663 (2007).
pubmed: 17234643
Hahsler, M., Piekenbrock, M. & Doran, D. Fast density-based Clustering with R. J. Stat. Softw. https://doi.org/10.18637/jss.v091.i01 (2019).
doi: 10.18637/jss.v091.i01
Leung, M. L. et al. Highly multiplexed targeted DNA sequencing from single nuclei. Nat. Protoc. 11, 214–235 (2016).
pubmed: 26741407 pmcid: 4807405
Quinlan, A. R. & Hall, I. M. BEDTools: a flexible suite of utilities for comparing genomic features. Bioinformatics 26, 841–842 (2010).
pubmed: 20110278 pmcid: 2832824
Nilsen, G. et al. Copynumber: efficient algorithms for single- and multi-track copy number segmentation. BMC Genomics 13, 591 (2012).
pubmed: 23442169 pmcid: 3582591
L. McInnes, J. Healy & J. Melville. UMAP: uniform manifold approximation and projection for dimension reduction. Preprint at https://arxiv.org/abs/1802.03426 (2018).
Lun, A. T., McCarthy, D. J. & Marioni, J. C. A step-by-step workflow for low-level analysis of single-cell RNA-seq data with Bioconductor. F1000Res. 5, 2122 (2016).
pubmed: 27909575 pmcid: 5112579
Csardi, G. & Nepusz, T. The igraph software package for complex network research. InterJournal 1695 (2006).
McInnes, L. Healy, J. & Astels, S. hdbscan: hierarchical density based clustering. JOSS 2, 205 (2017).
Gu, Z., Eils, R. & Schlesner, M. Complex heatmaps reveal patterns and correlations in multidimensional genomic data. Bioinformatics 32, 2847–2849 (2016).
pubmed: 27207943
Zhang, Z., Lange, K. & Sabatti, C. Reconstructing DNA copy number by joint segmentation of multiple sequences. BMC Bioinformatics 13, 205 (2012).
pubmed: 22897923 pmcid: 3534631
Desper, R. & Gascuel, O. Fast and accurate phylogeny reconstruction algorithms based on the minimum-evolution principle. J. Comput. Biol. 9, 687–705 (2002).
pubmed: 12487758
Paradis, E. & Schliep, K. ape 5.0: an environment for modern phylogenetics and evolutionary analyses in R. Bioinformatics 35, 526–528 (2019).
pubmed: 30016406
Yu, G., Smith, D. K., Zhu, H., Guan, Y. & Lam, T. T.-Y. ggtree: an r package for visualization and annotation of phylogenetic trees with their covariates and other associated data. Methods Ecol. Evol. 8, 28–36 (2017).
McKenna, A. et al. The genome analysis toolkit: a mapreduce framework for analyzing next-generation DNA sequencing data. Genome Res. 20, 1297–1303 (2010).
pubmed: 20644199 pmcid: 2928508
Cibulskis, K. et al. Sensitive detection of somatic point mutations in impure and heterogeneous cancer samples. Nat. Biotechnol. 31, 213–219 (2013).
pubmed: 23396013 pmcid: 3833702
Knaus, B. J. & Grünwald, N. J. vcfr: a package to manipulate and visualize variant call format data in R. Mol. Ecol. Resour. 17, 44–53 (2017).
pubmed: 27401132
Wang, K., Li, M. & Hakonarson, H. ANNOVAR: functional annotation of genetic variants from high-throughput sequencing data. Nucleic Acids Res. 38, e164 (2010).
pubmed: 20601685 pmcid: 2938201
Ng, P. C. & Henikoff, S. SIFT: Predicting amino acid changes that affect protein function. Nucleic Acids Res. 31, 3812–3814 (2003).
pubmed: 12824425 pmcid: 168916
Adzhubei, I., Jordan, D. M. & Sunyaev, S. R. Predicting functional effect of human missense mutations using PolyPhen-2. Curr. Protoc. Hum. Genet. 7, 20 (2013).
pubmed: 23315928
1000 Genomes Project Consortium. A global reference for human genetic variation. Nature 526, 68–74 (2015).
Van Loo, P. et al. Allele-specific copy number analysis of tumors. Proc. Natl Acad. Sci. USA 107, 16910–16915 (2010).
pubmed: 20837533 pmcid: 2947907
Nik-Zainal, S. et al. The life history of 21 breast cancers. Cell 149, 994–1007 (2012).
pubmed: 22608083 pmcid: 3428864
Patro, R., Duggal, G., Love, M. I., Irizarry, R. A. & Kingsford, C. Salmon provides fast and bias-aware quantification of transcript expression. Nat. Methods 14, 417–419 (2017).
pubmed: 28263959 pmcid: 5600148
Frankish, A. et al. GENCODE reference annotation for the human and mouse genomes. Nucleic Acids Res. 47, D766–D773 (2019).
pubmed: 30357393
Soneson, C., Love, M. I. & Robinson, M. D. Differential analyses for RNA-seq: transcript-level estimates improve gene-level inferences. F1000Res. 4, 1521 (2015).
pubmed: 26925227
Love, M. I., Huber, W. & Anders, S. Moderated estimation of fold change and dispersion for RNA-seq data with DESeq2. Genome Biol. 15, 550 (2014).
pubmed: 25516281 pmcid: 4302049
Korotkevich, G., Sukhov, V. & Sergushichev, A. Fast gene set enrichment analysis. Preprint at https://doi.org/10.1101/060012 (2019).
R Core Team. R: A Language and Environment for Statistical Computing http://www.R-project.org/ (R Foundation for Statistical Computing, 2013).
Kassambara, A. rstatix: Pipe-Friendly Framework for Basic Statistical Tests https://CRAN.R-project.org/package=rstatix (2020).
Wickham, H. ggplot2: Elegant Graphics for Data Analysis (Springer-Verlag, 2016).
Virtanen, P. et al. SciPy 1.0: fundamental algorithms for scientific computing in Python. Nat. Methods 17, 261–272 (2020).
pubmed: 32015543 pmcid: 7056644
McKinney, W. Data structures for statistical computing in Python. In Proc. 9th Python in Science Conference (eds van der Walt, S. & Millman, J.) 56–61 (2010).

Auteurs

Darlan C Minussi (DC)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Graduate School of Biomedical Sciences, The University of Texas MD Anderson Cancer Center UTHealth, Houston, TX, USA.

Michael D Nicholson (MD)

Department of Data Science, Dana-Farber Cancer Institute, Boston, MA, USA.
Department of Biostatistics, Harvard T.H. Chan School of Public Health, Boston, MA, USA.
Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, USA.

Hanghui Ye (H)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Graduate School of Biomedical Sciences, The University of Texas MD Anderson Cancer Center UTHealth, Houston, TX, USA.

Alexander Davis (A)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Graduate School of Biomedical Sciences, The University of Texas MD Anderson Cancer Center UTHealth, Houston, TX, USA.

Kaile Wang (K)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

Toby Baker (T)

Cancer Genomics Laboratory, The Francis Crick Institute, London, UK.

Maxime Tarabichi (M)

Cancer Genomics Laboratory, The Francis Crick Institute, London, UK.

Emi Sei (E)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

Haowei Du (H)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Graduate Program in Diagnostic Genetics, School of Health Professions, MD Anderson Cancer Center, Houston, TX, USA.

Mashiat Rabbani (M)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Graduate Program in Diagnostic Genetics, School of Health Professions, MD Anderson Cancer Center, Houston, TX, USA.

Cheng Peng (C)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Graduate Program in Diagnostic Genetics, School of Health Professions, MD Anderson Cancer Center, Houston, TX, USA.

Min Hu (M)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

Shanshan Bai (S)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

Yu-Wei Lin (YW)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Graduate School of Biomedical Sciences, The University of Texas MD Anderson Cancer Center UTHealth, Houston, TX, USA.

Aislyn Schalck (A)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Graduate School of Biomedical Sciences, The University of Texas MD Anderson Cancer Center UTHealth, Houston, TX, USA.

Asha Multani (A)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

Jin Ma (J)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

Thomas O McDonald (TO)

Department of Data Science, Dana-Farber Cancer Institute, Boston, MA, USA.
Department of Biostatistics, Harvard T.H. Chan School of Public Health, Boston, MA, USA.
Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, USA.
Center for Cancer Evolution, Dana-Farber Cancer Institute, Boston, MA, USA.

Anna Casasent (A)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Graduate School of Biomedical Sciences, The University of Texas MD Anderson Cancer Center UTHealth, Houston, TX, USA.

Angelica Barrera (A)

Department of Breast Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

Hui Chen (H)

Department of Pathology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

Bora Lim (B)

Department of Breast Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

Banu Arun (B)

Department of Breast Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

Funda Meric-Bernstam (F)

Department of Breast Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

Peter Van Loo (P)

Cancer Genomics Laboratory, The Francis Crick Institute, London, UK.

Franziska Michor (F)

Department of Data Science, Dana-Farber Cancer Institute, Boston, MA, USA. michor@jimmy.harvard.edu.
Department of Biostatistics, Harvard T.H. Chan School of Public Health, Boston, MA, USA. michor@jimmy.harvard.edu.
Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, USA. michor@jimmy.harvard.edu.
Center for Cancer Evolution, Dana-Farber Cancer Institute, Boston, MA, USA. michor@jimmy.harvard.edu.
The Ludwig Center at Harvard, Boston, MA, and the Broad Institute of MIT and Harvard, Cambridge, MA, USA. michor@jimmy.harvard.edu.

Nicholas E Navin (NE)

Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA. nnavin@mdanderson.org.
Graduate School of Biomedical Sciences, The University of Texas MD Anderson Cancer Center UTHealth, Houston, TX, USA. nnavin@mdanderson.org.
Department of Bioinformatics and Computational Biology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA. nnavin@mdanderson.org.

Articles similaires

[Redispensing of expensive oral anticancer medicines: a practical application].

Lisanne N van Merendonk, Kübra Akgöl, Bastiaan Nuijen
1.00
Humans Antineoplastic Agents Administration, Oral Drug Costs Counterfeit Drugs

Smoking Cessation and Incident Cardiovascular Disease.

Jun Hwan Cho, Seung Yong Shin, Hoseob Kim et al.
1.00
Humans Male Smoking Cessation Cardiovascular Diseases Female
Humans United States Aged Cross-Sectional Studies Medicare Part C
1.00
Humans Yoga Low Back Pain Female Male

Classifications MeSH