Dll1+ quiescent tumor stem cells drive chemoresistance in breast cancer through NF-κB survival pathway

Author:

Kumar SushilORCID,Nandi Ajeya,Singh Snahlata,Regulapati RohanORCID,Li NingORCID,Tobias John W.,Siebel Christian W.,Blanco Mario Andres,Klein-Szanto Andres J.,Lengner ChristopherORCID,Welm Alana L.ORCID,Kang YibinORCID,Chakrabarti Rumela

Abstract

AbstractDevelopment of chemoresistance in breast cancer patients greatly increases mortality. Thus, understanding mechanisms underlying breast cancer resistance to chemotherapy is of paramount importance to overcome this clinical challenge. Although activated Notch receptors have been associated with chemoresistance in cancer, the specific Notch ligands and their molecular mechanisms leading to chemoresistance in breast cancer remain elusive. Using conditional knockout and reporter mouse models, we demonstrate that tumor cells expressing the Notch ligand Dll1 is important for tumor growth and metastasis and bear similarities to tumor-initiating cancer cells (TICs) in breast cancer. RNA-seq and ATAC-seq using reporter models and patient data demonstrated that NF-κB activation is downstream of Dll1 and is associated with a chemoresistant phenotype. Finally, pharmacological blocking of Dll1 or NF-κB pathway completely sensitizes Dll1+ tumors to chemotherapy, highlighting therapeutic avenues for chemotherapy resistant breast cancer patients in the near future.

Funder

American Cancer Society

U.S. Department of Health & Human Services | NIH | National Cancer Institute

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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