Functional inhibition of the RNA‐binding protein HuR sensitizes triple‐negative breast cancer to chemotherapy

Author:

Wei Lanjing1ORCID,Zhang Qi2,Zhong Cuncong3,He Lily4,Zhang Yuxia4,Armaly Ahlam M.5,Aubé Jeffrey5,Welch Danny R.67,Xu Liang278ORCID,Wu Xiaoqing79ORCID

Affiliation:

1. Bioengineering Program The University of Kansas Lawrence KS USA

2. Department of Molecular Biosciences The University of Kansas Lawrence KS USA

3. Department of Electrical Engineering and Computer Science The University of Kansas Lawrence KS USA

4. Department of Pharmacology, Toxicology & Therapeutics The University of Kansas Medical Center Kansas City KS USA

5. Division of Chemical Biology and Medicinal Chemistry, UNC Eshelman School of Pharmacy The University of North Carolina Chapel Hill NC USA

6. Department of Cancer Biology The University of Kansas Medical Center Kansas City KS USA

7. The University of Kansas Cancer Center The University of Kansas Medical Center Kansas City KS USA

8. Department of Radiation Oncology The University of Kansas Medical Center Kansas City KS USA

9. Higuchi Biosciences Center The University of Kansas Lawrence KS USA

Abstract

Chemotherapy remains the standard treatment for triple‐negative breast cancer (TNBC); however, chemoresistance compromises its efficacy. The RNA‐binding protein Hu antigen R (HuR) could be a potential therapeutic target to enhance the chemotherapy efficacy. HuR is known to mainly stabilize its target mRNAs, and/or promote the translation of encoded proteins, which are implicated in multiple cancer hallmarks, including chemoresistance. In this study, a docetaxel‐resistant cell subline (231‐TR) was established from the human TNBC cell line MDA‐MB‐231. Both the parental and resistant cell lines exhibited similar sensitivity to the small molecule functional inhibitor of HuR, KH‐3. Docetaxel and KH‐3 combination therapy synergistically inhibited cell proliferation in TNBC cells and tumor growth in three animal models. KH‐3 downregulated the expression levels of HuR targets (e.g., β‐Catenin and BCL2) in a time‐ and dose‐dependent manner. Moreover, KH‐3 restored docetaxel's effects on activating Caspase‐3 and cleaving PARP in 231‐TR cells, induced apoptotic cell death, and caused S‐phase cell cycle arrest. Together, our findings suggest that HuR is a critical mediator of docetaxel resistance and provide a rationale for combining HuR inhibitors and chemotherapeutic agents to enhance chemotherapy efficacy.

Funder

National Institutes of Health

U.S. Department of Defense

Publisher

Wiley

Subject

Cancer Research,Genetics,Molecular Medicine,General Medicine,Oncology

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