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Isolation and Functional Assessment of Human Breast Cancer Stem Cells from Cell and Tissue Samples
Published on: October 2, 2020
DOT1L Mediates Stem Cell Maintenance and Represents a Therapeutic Vulnerability in Cancer
Hetakshi Kurani1, Joyce M Slingerland1
1Cancer Host Interactions Program, Department of Oncology, Lombardi Comprehensive Cancer Center, Georgetown University, Washington, District of Columbia.
Abstract:
Tumor-initiating cancer stem cells (CSC) pose a challenge in human malignancies as they are largely treatment resistant and can seed local recurrence and metastasis. Epigenetic mechanisms governing cell fate decisions in embryonic and adult stem cells are deregulated in CSCs. This review focuses on the methyltransferase disruptor of telomeric silencing protein 1-like (DOT1L), which methylates histone H3 lysine 79 and is a key epigenetic regulator governing embryonic organogenesis and adult tissue stem cell maintenance. DOT1L is overexpressed in many human malignancies, and dysregulated histone H3 lysine 79 methylation is pathogenic in acute myeloid leukemia and several solid tumors. DOT1L regulates core stem cell genes governing CSC self-renewal, tumorigenesis, and multidrug resistance. Recent work has situated DOT1L as an attractive stem cell target in cancer. These reports showed that DOT1L is overexpressed and its protein activated specifically in malignant stem cells compared with bulk tumor cells, making them vulnerable to DOT1L inhibition in vitro and in vivo. Although early DOT1L inhibitor clinical trials were limited by inadequate drug bioavailability, accumulating preclinical data indicate that DOT1L critically regulates CSC self-renewal and might be more effective when given with other anticancer therapies. The appropriate combinations of DOT1L inhibitors with other agents and the sequence and timing of drug delivery for maximum efficacy warrant further investigation.
Insights
Cancer stem cells (CSCs) drive tumor growth and resistance. Targeting DOT1L, an epigenetic regulator, shows promise for inhibiting CSC self-renewal and overcoming treatment resistance in various cancers.
Area of Science:
- Epigenetics
- Cancer Biology
- Stem Cell Biology
Background:
- Cancer stem cells (CSCs) are crucial drivers of tumor initiation, recurrence, and metastasis.
- CSCs exhibit resistance to conventional therapies due to deregulated epigenetic mechanisms.
- Disruptor of telomeric silencing protein 1-like (DOT1L) is a key epigenetic regulator involved in stem cell maintenance.
Purpose of the Study:
- To review the role of DOT1L in regulating cancer stem cell properties.
- To evaluate DOT1L as a potential therapeutic target in malignancies.
- To discuss the implications of DOT1L inhibition for cancer treatment.
Main Methods:
- Review of preclinical and clinical studies on DOT1L function in cancer.
- Analysis of DOT1L expression and activity in various human malignancies.
- Evaluation of DOT1L inhibitors in preclinical cancer models.
Main Results:
- DOT1L is overexpressed and dysregulated in numerous cancers, particularly in CSCs.
- DOT1L regulates critical stem cell genes involved in self-renewal, tumorigenesis, and drug resistance.
- DOT1L inhibition demonstrates efficacy against CSCs in vitro and in vivo.
Conclusions:
- DOT1L is a critical regulator of cancer stem cell function and a promising therapeutic target.
- DOT1L inhibitors show potential for overcoming treatment resistance and preventing recurrence.
- Further investigation into combination therapies and optimal drug delivery is warranted for clinical efficacy.
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