CRISPRa screen identifies a role for c-KIT signaling in tamoxifen resistance, potentially through upregulation of ABC transporters
Marks, B. A.; Choate, L. A.; Sams, K.; Zhu, L.; Waidyaratne, G.; Danko, C. G.; Coonrod, S. A.
Show abstract
Resistance to endocrine therapy is a common problem in patients with estrogen receptor alpha (ER) positive breast cancer. In this study, we took a non-biased genome-wide approach to identify novel mechanisms of endocrine resistance using a clustered regularly interspaced short palindromic repeats (CRISPR) activating (CRISPRa) screen. Results from the screen identified 109 candidate resistance-associated genes, with several of these genes, such as EGFR and SRC, having been previously associated with endocrine resistance. One candidate gene that has not been previously associated with endocrine resistance is the tyrosine kinase receptor, c-KIT. We further tested for associations between c-KIT and endocrine resistance and found that c-KIT overexpressing cells proliferate more rapidly in the presence of tamoxifen compared to control cell lines. To gain deeper insight into the potential role of c-KIT signaling in tamoxifen resistance, we next performed precision nuclear run-on and sequencing (PRO-seq) analysis of c-KIT overexpressing cells to identify downstream factors that may mediate the c-KIT response. Kyoto Encyclopedia of Genes and Genomes (KEGG) analysis of the overexpressed genes found that the only class of factors that was significantly induced by c-KIT was the ATP-binding cassette (ABC) transporters; specifically, ABCA1, ABCA4, and ABCG1. Interestingly, overexpression of two of these ABC transporters, ABCA1 and ABCG1, significantly correlated with worse prognosis in ER+ breast cancer patients following endocrine therapy. We then tested for potential therapeutic effects of c-KIT inhibition on endocrine resistance and found that the c-KIT inhibitor Gleevec appears to synergize with tamoxifen to suppress MCF-7-S cell growth. Together, our findings support the hypothesis that c-KIT signaling promotes endocrine resistance via the induction of ABC transporter activity. Additionally, our studies suggest that inhibition of c-KIT signaling may represent a novel strategy for preventing or overcoming endocrine resistance in ER+ patients.
Matching journals
The top 12 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Co-regulation and functional cooperativity of FOXM1 and RHNO1 bidirectional genes in ovarian cancer 95%
- CREB5 reprograms nuclear interactions to promote resistance to androgen receptor targeting therapies 95%
- Loss function of tumor suppressor FRMD8 confers resistance to tamoxifen therapy via a dual mechanism 94%
Similar papers in this journal
- Tumor suppressor PLK2 may serve as a biomarker in triple-negative breast cancer for improved response to PLK1 therapeutics 93%
- p300 KAT regulates SOX10 stability and function in human melanoma 92%
- WNT4 regulates cellular metabolism via intracellular activity at the mitochondria in breast and gynecologic cancers 92%
Similar papers in this journal
- GDNF-RET signaling and EGR1 form a positive feedback loop that promotes tamoxifen resistance via cyclin D1 95%
- IL-1-conferred gene expression pattern in ERα+ BCa and AR+ PCa cells is intrinsic to ERα- BCa and AR- PCa cells and promotes cell survival 94%
- NSMCE2, a Novel Super-Enhancer Regulated Gene, is Linked to Poor Prognosis and Therapy Resistance in Breast Cancer 94%
Similar papers in this journal
- Targeting LDHC dysregulates the cell cycle and improves sensitivity to cisplatin and olaparib 95%
- CRISPR targeting of FOXL2 c.402C>G mutation reduces malignant phenotype in granulosa tumor cells and identifies anti-tumoral compounds 94%
- Stochastic variation in the FOXM1 transcription program mediates replication stress tolerance. 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.