Misaligned Chromosomes are a Major Source of Chromosomal Instability in Breast Cancer

Author:

Tucker John B.1ORCID,Bonema Sarah C.2ORCID,García-Varela Rebeca3ORCID,Denu Ryan A.4ORCID,Hu Yang4ORCID,McGregor Stephanie M.5ORCID,Burkard Mark E.367ORCID,Weaver Beth A.678ORCID

Affiliation:

1. 1Cancer Biology Graduate Training Program, University of Wisconsin–Madison, Madison, Wisconsin.

2. 2Molecular and Cellular Pharmacology Graduate Training Program, University of Wisconsin–Madison, Madison, Wisconsin.

3. 3Department of Medicine, University of Wisconsin–Madison, Madison, Wisconsin.

4. 4Medical Scientist Training Program, University of Wisconsin–Madison, Madison, Wisconsin.

5. 5Department of Pathology and Laboratory Medicine, University of Wisconsin–Madison, Madison, Wisconsin.

6. 6Department of Oncology/McArdle Laboratory for Cancer Research, University of Wisconsin–Madison, Madison, Wisconsin.

7. 7Carbone Cancer Center, University of Wisconsin–Madison, Madison, Wisconsin.

8. 8Department of Cell and Regenerative Biology, University of Wisconsin–Madison, Madison, Wisconsin.

Abstract

Chromosomal instability (CIN), the persistent reshuffling of chromosomes during mitosis, is a hallmark of human cancers that contributes to tumor heterogeneity and has been implicated in driving metastasis and altering responses to therapy. Though multiple mechanisms can produce CIN, lagging chromosomes generated from abnormal merotelic attachments are the major cause of CIN in a variety of cell lines, and are expected to predominate in cancer. Here, we quantify CIN in breast cancer using a tumor microarray, matched primary and metastatic samples, and patient-derived organoids from primary breast cancer. Surprisingly, misaligned chromosomes are more common than lagging chromosomes and represent a major source of CIN in primary and metastatic tumors. This feature of breast cancers is conserved in a majority of breast cancer cell lines. Importantly, though a portion of misaligned chromosomes align before anaphase onset, the fraction that remain represents the largest source of CIN in these cells. Metastatic breast cancers exhibit higher rates of CIN than matched primary cancers, primarily due to increases in misaligned chromosomes. Whether CIN causes immune activation or evasion is controversial. We find that misaligned chromosomes result in immune-activating micronuclei substantially less frequently than lagging and bridge chromosomes and that breast cancers with greater frequencies of lagging chromosomes and chromosome bridges recruit more stromal tumor-infiltrating lymphocytes. These data indicate misaligned chromosomes represent a major mechanism of CIN in breast cancer and provide support for differential immunostimulatory effects of specific types of CIN. Significance: We surveyed the single-cell landscape of mitotic defects that generate CIN in primary and metastatic breast cancer and relevant models. Misaligned chromosomes predominate, and are less immunostimulatory than other chromosome segregation errors.

Funder

HHS | NIH | National Cancer Institute

U.S. Department of Defense

HHS | NIH | National Institute of General Medical Sciences

Publisher

American Association for Cancer Research (AACR)

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