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Deacetylation Assays to Unravel the Interplay between Sirtuins SIRT2 and Specific Protein-substrates
Published on: February 27, 2016
Pharmacological Advantage of SIRT2-Selective versus pan-SIRT1-3 Inhibitors
Jun Young Hong1, Irma Fernandez1,2, Ananya Anmangandla1
1Department of Chemistry and Chemical Biology, Cornell University, Ithaca, New York 14853, United States.
Abstract:
Because of their involvement in various biological pathways, the sirtuin enzyme family members SIRT1, SIRT2, and SIRT3 play both tumor-promoting and tumor-suppressing roles, based on the context and experimental conditions. Thus, an interesting question is whether inhibiting one of them or inhibiting all of them would be better for treating cancers. Pharmacologically, this is difficult to address, due in part to potential off-target effects of different compounds. Compounds with almost identical properties but differing in SIRT1-3 selectivity will be useful for addressing this question. Here, we have developed a pan SIRT1-3 inhibitor (NH4-6) and a SIRT2-selective inhibitor (NH4-13) with very similar chemical structures, with the only difference being the substitution of an ester bond to an amide bond. Such a minimal difference allows us to accurately compare the anticancer effect of pan SIRT1-3 inhibition and SIRT2-selective inhibition in cellular and mouse models. NH4-6 showed stronger cytotoxicity than NH4-13 in cancer cell lines. In mice, both inhibitors showed similar anticancer efficacy. However, NH4-6 is toxic to mice, which hinders the use of higher dosages. These results highlight the advantage of SIRT2-selective inhibitors as potential anticancer therapeutics.
Insights
Targeting sirtuin enzymes (SIRTs) in cancer therapy is complex. A pan-SIRT1-3 inhibitor showed toxicity, suggesting SIRT2-selective inhibition is a more promising anticancer strategy.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Sirtuin enzymes (SIRT1, SIRT2, SIRT3) have dual roles in cancer, acting as both tumor promoters and suppressors depending on context.
- Developing targeted cancer therapies requires understanding the specific roles of individual sirtuins.
Purpose of the Study:
- To compare the anticancer effects of pan-SIRT1-3 inhibition versus SIRT2-selective inhibition.
- To evaluate novel compounds NH4-6 (pan-SIRT1-3 inhibitor) and NH4-13 (SIRT2-selective inhibitor) in cellular and mouse cancer models.
Main Methods:
- Synthesis of structurally similar pan-SIRT1-3 (NH4-6) and SIRT2-selective (NH4-13) inhibitors.
- Assessment of compound cytotoxicity in cancer cell lines.
- Evaluation of anticancer efficacy and toxicity in mouse models.
Main Results:
- NH4-6 exhibited greater cytotoxicity than NH4-13 in cancer cell lines.
- Both NH4-6 and NH4-13 demonstrated comparable anticancer efficacy in mouse models.
- NH4-6 displayed significant toxicity in mice, limiting its therapeutic potential.
Conclusions:
- SIRT2-selective inhibition represents a potentially advantageous therapeutic strategy for cancer treatment compared to broad SIRT1-3 inhibition.
- The developed compounds provide valuable tools for dissecting sirtuin functions in cancer.
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