Inhibitors of Sir2: Evaluation of splitomicin analogues
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Posakony, J
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Fred Hutchinson Canc Res Ctr, Clin Res & Human Biol Div, Seattle, WA 98109 USAFred Hutchinson Canc Res Ctr, Clin Res & Human Biol Div, Seattle, WA 98109 USA
Posakony, J
[1
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Hirao, M
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Fred Hutchinson Canc Res Ctr, Clin Res & Human Biol Div, Seattle, WA 98109 USAFred Hutchinson Canc Res Ctr, Clin Res & Human Biol Div, Seattle, WA 98109 USA
Hirao, M
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Stevens, S
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Fred Hutchinson Canc Res Ctr, Clin Res & Human Biol Div, Seattle, WA 98109 USAFred Hutchinson Canc Res Ctr, Clin Res & Human Biol Div, Seattle, WA 98109 USA
Stevens, S
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Simon, JA
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Fred Hutchinson Canc Res Ctr, Clin Res & Human Biol Div, Seattle, WA 98109 USAFred Hutchinson Canc Res Ctr, Clin Res & Human Biol Div, Seattle, WA 98109 USA
Simon, JA
[1
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Bedalov, A
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Fred Hutchinson Canc Res Ctr, Clin Res & Human Biol Div, Seattle, WA 98109 USAFred Hutchinson Canc Res Ctr, Clin Res & Human Biol Div, Seattle, WA 98109 USA
Bedalov, A
[1
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[1] Fred Hutchinson Canc Res Ctr, Clin Res & Human Biol Div, Seattle, WA 98109 USA
Splitomicin (1) and 41 analogues were prepared and evaluated in cell-based Sir2 inhibition and toxicity assays and an in vitro Sir2 inhibition assay. Lactone ring or naphthalene (positions 7-9) substituents decrease activity, but other naphthalene substitutions (positions 5 and 6) are well-tolerated. The hydrolytically unstable aromatic lactone is important for activity. Lactone hydrolysis rates were used as a measure of reactivity; hydrolysis rates correlate with inhibitory activity. The most potent Sir2 inhibitors were structurally similar to and had hydrolysis rates similar to 1.