Novel small molecule SIRT2 inhibitors induce cell death in leukemic cell lines
Tomohiro Kozako1, Paolo Mellini2, Takeo Ohsugi3
1Department of Biochemistry, Faculty of Pharmaceutical Sciences, Fukuoka University, 8-19-1 Nanakuma, Jonan-ku, Fukuoka, 814-0180, Japan. kozako@fukuoka-u.ac.jp.
Background:
Sirtuin 2 (SIRT2) is a member of the sirtuin family, nicotinamide adenine dinucleotide+-dependent deacylases, which participates in modulation of cell cycle control, neurodegeneration, and tumorigenesis. SIRT2 expression increases in acute myeloid leukemia blasts. Downregulation of SIRT2 using siRNA causes apoptosis of HeLa cells. Therefore, selective inhibitors of SIRT2 are candidate therapeutic agents for cancer. Adult T-cell leukemia/lymphoma (ATL) is a T-cell malignancy that has a poor prognosis and develops after long-term infection with human T-cell leukemia virus (HTLV)-1. Sirtuin 1 inhibition has been shown to induce apoptosis and autophagy in HTLV-1-infected cell lines, whereas the effects of SIRT2 inhibition alone have not been elucidated.
Methods:
We assessed the efficacy of our small molecule selective SIRT2 inhibitors NCO-90/141 to induce leukemic cell death. Cell viability was examined using the cell proliferation reagent Cell Count Reagent SF. Apoptotic cells were detected by annexin V-FITC and terminal deoxynucleotidyl transferase dUTP nick end labeling assays by flow cytometry. Caspase activity was detected using an APOPCYTO Intracellular Caspase Activity Detection Kit. The presence of autophagic vacuoles was assessed using a Cyto-ID Autophagy Detection Kit.
Results:
Our novel small molecule SIRT2-specific inhibitors NCO-90/141 inhibited cell growth of leukemic cell lines including HTLV-1-transformed T-cells. NCO-90/141 induced apoptosis via caspase activation and mitochondrial superoxide generation in leukemic cell lines. However, a caspase inhibitor did not prevent this caspase-associated cell death. Interestingly, NCO-90/141 increased the LC3-II level together with autophagosome accumulation, indicating autophagic cell death. Thus, NCO-90/141 simultaneously caused apoptosis and autophagy.
Conclusions:
These results suggest that NCO-90/141 are highly effective against leukemic cells in caspase-dependent or -independent manners via autophagy, and they may have a novel therapeutic potential for treatment of leukemias including ATL.
Insights
Novel SIRT2 inhibitors, NCO-90/141, effectively induce apoptosis and autophagy in leukemic cells. These findings suggest potential therapeutic applications for treating leukemias, including Adult T-cell leukemia/lymphoma.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Sirtuin 2 (SIRT2) is a NAD+-dependent deacylase involved in cell cycle, neurodegeneration, and tumorigenesis.
- Increased SIRT2 expression is observed in acute myeloid leukemia, and its downregulation induces apoptosis.
- Selective SIRT2 inhibitors are potential anticancer therapeutics, but SIRT2's role in Adult T-cell leukemia/lymphoma (ATL) remains unclear.
Purpose of the Study:
- To assess the efficacy of novel small molecule selective SIRT2 inhibitors, NCO-90/141, in inducing leukemic cell death.
- To investigate the mechanisms of cell death induced by NCO-90/141, including apoptosis and autophagy.
Main Methods:
- Cell viability was measured using Cell Count Reagent SF.
- Apoptosis was detected via annexin V-FITC and TUNEL assays using flow cytometry.
- Caspase activity and autophagic vacuoles were assessed using specific detection kits.
Main Results:
- NCO-90/141 inhibited growth in leukemic cell lines, including HTLV-1-transformed T-cells.
- NCO-90/141 induced apoptosis through caspase activation and mitochondrial superoxide generation, independent of caspase inhibition.
- NCO-90/141 promoted autophagic cell death, evidenced by increased LC3-II levels and autophagosome accumulation.
Conclusions:
- NCO-90/141 effectively eliminates leukemic cells via both caspase-dependent and -independent pathways, involving autophagy.
- These SIRT2 inhibitors demonstrate novel therapeutic potential for treating leukemias, including ATL.
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