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SIRT3-Mediated SOD2 and PGC-1α Contribute to Chemoresistance in Colorectal Cancer Cells
Masakatsu Paku1, Naotsugu Haraguchi2, Mitsunobu Takeda3
1Department of Gastroenterological Surgery, Osaka University, Suita, Osaka, Japan.
Background:
Anticancer drugs generate excessive reactive oxygen species (ROS), which can cause cell death. Cancer cells can resist this oxidative stress, but the mechanism of resistance and associations with chemoresistance are unclear. Here, we focused on Sirtuin 3 (SIRT3), a deacetylating mitochondrial enzyme, in oxidative stress resistance in colorectal cancer (CRC).
Methods:
To evaluate SIRT3-related changes in mitochondrial function, ROS (mtROS) induction, and apoptosis, we used the human CRC cell lines HT29 and HCT116 transfected with short-hairpin RNA targeting SIRT3 and small interfering RNAs targeting superoxide dismutase 2 mitochondrial (SOD2) and peroxisome proliferator-activated receptor γ coactivator-1 (PGC-1α). In 142 clinical specimens from patients with CRC, we also assessed the association of SIRT3 protein levels (high/low) and prognosis.
Results:
SIRT3 expression correlated with mtROS generation and apoptosis induction in cells treated with anticancer agents. Suppressing SIRT3 increased mtROS levels and cell sensitivity to anticancer agents. SIRT3 knockdown decreased SOD2 expression and activity, and suppressing SOD2 also improved sensitivity to anticancer drugs. In addition, SIRT3 was recruited with PGC-1α under oxidative stress, and suppressing SIRT3 decreased PGC-1α expression and mitochondrial function. PGC-1α knockdown decreased mitochondrial activity and increased apoptosis in cells treated with anticancer drugs. In resected CRC specimens, high vs low SIRT3 protein levels were associated with significantly reduced cancer-specific survival.
Conclusions:
SIRT3 expression affected CRC cell chemoresistance through SOD2 and PGC-1α regulation and was an independent prognostic factor in CRC. SIRT3 may be a novel target for CRC therapies and a predictive marker of sensitivity to chemotherapy.
Insights
Sirtuin 3 (SIRT3) regulates colorectal cancer cell resistance to oxidative stress and chemotherapy. High SIRT3 levels predict poor survival, suggesting SIRT3 as a therapeutic target and predictive marker for colorectal cancer.
Area of Science:
- Mitochondrial biology
- Cancer research
- Biochemistry
Background:
- Anticancer drugs induce reactive oxygen species (ROS), leading to cell death.
- Mechanisms of cancer cell resistance to oxidative stress and chemoresistance are not fully understood.
- Sirtuin 3 (SIRT3), a mitochondrial deacetylating enzyme, is investigated for its role in colorectal cancer (CRC) oxidative stress resistance.
Purpose of the Study:
- To investigate the role of SIRT3 in oxidative stress resistance and chemoresistance in colorectal cancer (CRC).
- To evaluate the association between SIRT3 protein levels and prognosis in CRC patients.
Main Methods:
- Utilized human CRC cell lines (HT29, HCT116) with genetic manipulation of SIRT3, SOD2, and PGC-1α.
- Assessed mitochondrial function, mitochondrial ROS (mtROS) induction, and apoptosis.
- Analyzed SIRT3 protein levels and prognosis in 142 clinical CRC specimens.
Main Results:
- SIRT3 expression correlated with mtROS generation and apoptosis; SIRT3 suppression increased mtROS and chemosensitivity.
- SIRT3 knockdown decreased SOD2 expression/activity; SOD2 suppression enhanced chemosensitivity.
- SIRT3 interacts with PGC-1α, regulating mitochondrial function and apoptosis; PGC-1α knockdown increased apoptosis.
- High SIRT3 protein levels in CRC specimens were linked to reduced cancer-specific survival.
Conclusions:
- SIRT3 influences CRC chemoresistance by regulating SOD2 and PGC-1α.
- SIRT3 is an independent prognostic factor in colorectal cancer.
- SIRT3 presents a potential therapeutic target and predictive biomarker for CRC treatment sensitivity.
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