Breast cancer is marked by specific, Public T-cell receptor CDR3 regions shared by mice and humans
Miri Gordin1, Hagit Philip1, Alona Zilberberg1
1The Mina & Everard Goodman Faculty of Life Sciences, Bar Ilan University, Ramat-Gan, Israel.
Abstract:
The partial success of tumor immunotherapy induced by checkpoint blockade, which is not antigen-specific, suggests that the immune system of some patients contain antigen receptors able to specifically identify tumor cells. Here we focused on T-cell receptor (TCR) repertoires associated with spontaneous breast cancer. We studied the alpha and beta chain CDR3 domains of TCR repertoires of CD4 T cells using deep sequencing of cell populations in mice and applied the results to published TCR sequence data obtained from human patients. We screened peripheral blood T cells obtained monthly from individual mice spontaneously developing breast tumors by 5 months. We then looked at identical TCR sequences in published human studies; we used TCGA data from tumors and healthy tissues of 1,256 breast cancer resections and from 4 focused studies including sequences from tumors, lymph nodes, blood and healthy tissues, and from single cell dataset of 3 breast cancer subjects. We now report that mice spontaneously developing breast cancer manifest shared, Public CDR3 regions in both their alpha and beta and that a significant number of women with early breast cancer manifest identical CDR3 sequences. These findings suggest that the development of breast cancer is associated, across species, with biomarker, exclusive TCR repertoires.
Insights
Breast cancer development is linked to unique T-cell receptor (TCR) repertoires. Shared TCR sequences found in mice and women suggest a potential biomarker for early breast cancer detection.
Area of Science:
- Immunology
- Oncology
- Genomics
Background:
- Checkpoint blockade immunotherapy's partial success suggests pre-existing tumor-specific antigen receptors.
- T-cell receptors (TCRs) are crucial for adaptive immunity and recognizing specific antigens.
Purpose of the Study:
- To investigate T-cell receptor (TCR) repertoires in spontaneous breast cancer.
- To identify shared TCR sequences associated with breast cancer across species.
Main Methods:
- Deep sequencing of alpha and beta chain CDR3 domains of CD4 T cells in mice with spontaneous breast cancer.
- Analysis of published human TCR sequence data from breast cancer patients (TCGA, focused studies, single-cell datasets).
Main Results:
- Mice with spontaneous breast cancer exhibit shared, public CDR3 regions in their TCR alpha and beta chains.
- A significant number of women with early breast cancer share identical TCR CDR3 sequences with these public repertoires.
Conclusions:
- Breast cancer development is associated with species-exclusive TCR repertoires.
- These findings suggest TCR sequences could serve as biomarkers for breast cancer.


