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PMID: 16483311 Published · ppublish English

Structural relationship of curcumin derivatives binding to the BRCT domain of human DNA polymerase lambda.

Takeuchi Toshifumi, Ishidoh Tomomi, Iijima Hiroshi, Kuriyama Isoko, Shimazaki Noriko, Koiwai Osamu, Kuramochi Kouji, Kobayashi Susumu, Sugawara Fumio, Sakaguchi Kengo, Yoshida Hiromi, Mizushina Yoshiyuki

Abstract

We previously reported that phenolic compounds, petasiphenol and curcumin (diferuloylmethane), were a selective inhibitor of DNA polymerase lambda (pol lambda) in vitro. The purpose of this study was to investigate the molecular structural relationship of curcumin and 13 chemically synthesized derivatives of curcumin. The inhibitory effect on pol lambda (full-length, i.e. intact pol lambda including the BRCA1 C- terminal [BRCT] domain) by some derivatives was stronger than that by curcumin, and monoacetylcurcumin (compound 13) was the strongest pol lambda inhibitor of all the compounds tested, achieving 50% inhibition at a concentration of 3.9 microm. The compound did not influence the activities of replicative pols such as alpha, delta, and epsilon. It had no effect on pol beta activity either, although the three-dimensional structure of pol beta is thought to be highly similar to that of pol lambda. Compound 13 did not inhibit the activity of the C-terminal catalytic domain of pol lambda including the pol beta-like core, in which the BRCT motif was deleted from its N-terminal region. MALDI-TOF MS analysis demonstrated that compound 13 bound selectively to the N-terminal domain of pol lambda, but did not bind to the C-terminal region. Based on these results, the pol lambda-inhibitory mechanism of compound 13 is discussed.

Article Info
Journal
Genes to cells : devoted to molecular & cellular mechanisms
Abbr.
Genes Cells
Published
2006-04-18
Indexed
2006-02-17
Updated
2013-11-21
Language
English
Country/Region
England
NLM ID
9607379
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