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MTH1 as a Chemotherapeutic Target: The Elephant in the Room
Govindi J Samaranayake1,2, Mai Huynh3,4, Priyamvada Rai5,6
1Department of Medicine/Division of Hematology and Oncology, University of Miami Miller School of Medicine, Miami, FL 33136, USA. gjs26@med.miami.edu.
Abstract:
Many tumors sustain elevated levels of reactive oxygen species (ROS), which drive oncogenic signaling. However, ROS can also trigger anti-tumor responses, such as cell death or senescence, through induction of oxidative stress and concomitant DNA damage. To circumvent the adverse consequences of elevated ROS levels, many tumors develop adaptive responses, such as enhanced redox-protective or oxidatively-generated damage repair pathways. Targeting these enhanced oxidative stress-protective mechanisms is likely to be both therapeutically effective and highly specific to cancer, as normal cells are less reliant on such mechanisms. In this review, we discuss one such stress-protective protein human MutT Homolog1 (MTH1), an enzyme that eliminates 8-oxo-7,8-dihydro-2'-deoxyguanosine triphosphate (8-oxodGTP) through its pyrophosphatase activity, and is found to be elevated in many cancers. Our studies, and subsequently those of others, identified MTH1 inhibition as an effective tumor-suppressive strategy. However, recent studies with the first wave of MTH1 inhibitors have produced conflicting results regarding their cytotoxicity in cancer cells and have led to questions regarding the validity of MTH1 as a chemotherapeutic target. To address the proverbial "elephant in the room" as to whether MTH1 is a bona fide chemotherapeutic target, we provide an overview of MTH1 function in the context of tumor biology, summarize the current literature on MTH1 inhibitors, and discuss the molecular contexts likely required for its efficacy as a therapeutic target.
Insights
Targeting human MutT Homolog1 (MTH1), an enzyme elevated in many cancers, shows promise for tumor suppression. This review examines MTH1
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Tumors often exhibit elevated reactive oxygen species (ROS), driving oncogenic signaling.
- ROS can induce anti-tumor responses like cell death and senescence.
- Cancer cells develop adaptive redox-protective mechanisms, including enhanced MTH1 (human MutT Homolog1) activity, to survive oxidative stress.
Purpose of the Study:
- To review the function of MTH1 in tumor biology.
- To summarize current literature on MTH1 inhibitors.
- To discuss the molecular contexts for MTH1 as a therapeutic target.
Main Methods:
- Literature review of MTH1 function and inhibition.
- Analysis of studies on MTH1 inhibitors' cytotoxicity.
- Discussion of tumor biology and MTH1's role.
Main Results:
- MTH1 eliminates 8-oxo-7,8-dihydro-2 -deoxyguanosine triphosphate (8-oxodGTP), a mutagenic oxidized base.
- MTH1 is elevated in many cancers and its inhibition was initially proposed as a tumor-suppressive strategy.
- Recent studies show conflicting results on MTH1 inhibitor efficacy, questioning its validity as a direct chemotherapeutic target.
Conclusions:
- MTH1's role in cancer is complex, with adaptive mechanisms potentially influencing therapeutic outcomes.
- Further research is needed to identify specific molecular contexts where MTH1 inhibition is effective.
- Understanding these contexts is crucial to determine if MTH1 is a bona fide chemotherapeutic target.
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