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Article

Single-Cell Image-Based Analysis Reveals Chromatin Changes during the Acquisition of Tamoxifen Drug Resistance

1
Davidson School of Chemical Engineering, Purdue University, West Lafayette, IN 47907, USA
2
Purdue University Center for Cancer Research, Purdue University, West Lafayette, IN 47906, USA
*
Author to whom correspondence should be addressed.
Life 2022, 12(3), 438; https://doi.org/10.3390/life12030438
Submission received: 22 February 2022 / Revised: 2 March 2022 / Accepted: 2 March 2022 / Published: 17 March 2022
(This article belongs to the Special Issue Epigenetics and Nuclear Architecture)

Abstract

Cancer drug resistance is the leading cause of cancer related deaths. The development of drug resistance can be partially contributed to tumor heterogeneity and epigenetic plasticity. However, the detailed molecular mechanism underlying epigenetic modulated drug resistance remains elusive. In this work, we systematically analyzed epigenetic changes in tamoxifen (Tam) responsive and resistant breast cancer cell line MCF7, and adopted a data-driven approach to identify key epigenetic features distinguishing between these two cell types. Significantly, we revealed that DNA methylation and H3K9me3 marks that constitute the heterochromatin are distinctively different between Tam-resistant and -responsive cells. We then performed time-lapse imaging of 5mC and H3K9me3 features using engineered probes. After Tam treatment, we observed a slow transition of MCF7 cells from a drug-responsive to -resistant population based on DNA methylation features. A similar trend was not observed using H3K9me3 probes. Collectively, our results suggest that DNA methylation changes partake in the establishment of Tam-resistant breast cancer cell lines. Instead of global changes in the DNA methylation level, the distribution of DNA methylation features inside the nucleus can be one of the drivers that facilitates the establishment of a drug resistant phenotype in MCF7.
Keywords: epigenetics; drug resistance; breast cancer; chromatin epigenetics; drug resistance; breast cancer; chromatin

Share and Cite

MDPI and ACS Style

Zhao, H.; Lin, L.F.; Hahn, J.; Xie, J.; Holman, H.F.; Yuan, C. Single-Cell Image-Based Analysis Reveals Chromatin Changes during the Acquisition of Tamoxifen Drug Resistance. Life 2022, 12, 438. https://doi.org/10.3390/life12030438

AMA Style

Zhao H, Lin LF, Hahn J, Xie J, Holman HF, Yuan C. Single-Cell Image-Based Analysis Reveals Chromatin Changes during the Acquisition of Tamoxifen Drug Resistance. Life. 2022; 12(3):438. https://doi.org/10.3390/life12030438

Chicago/Turabian Style

Zhao, Han, Li F. Lin, Joshua Hahn, Junkai Xie, Harvey F. Holman, and Chongli Yuan. 2022. "Single-Cell Image-Based Analysis Reveals Chromatin Changes during the Acquisition of Tamoxifen Drug Resistance" Life 12, no. 3: 438. https://doi.org/10.3390/life12030438

APA Style

Zhao, H., Lin, L. F., Hahn, J., Xie, J., Holman, H. F., & Yuan, C. (2022). Single-Cell Image-Based Analysis Reveals Chromatin Changes during the Acquisition of Tamoxifen Drug Resistance. Life, 12(3), 438. https://doi.org/10.3390/life12030438

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