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PMID: 12119025 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

The microtubule stabilizing agent laulimalide does not bind in the taxoid site, kills cells resistant to paclitaxel and epothilones, and may not require its epoxide moiety for activity.

Biochemistry ·Vol. 41 ·No. 29 ·2002-07-23 ·Pages 9109-15

Pryor DE, O'Brate A, Bilcer G, Díaz JF, Wang Y, Wang Y, Kabaki M, Jung MK, Andreu JM, Ghosh AK, Giannakakou P, Hamel E

Abstract

Laulimalide is a cytotoxic natural product that stabilizes microtubules. The compound enhances tubulin assembly, and laulimalide is quantitatively comparable to paclitaxel in its effects on the reaction. Laulimalide is also active in P-glycoprotein overexpressing cells, while isolaulimalide, a congener without the drug's epoxide moiety, was reported to have negligible cytotoxic and biochemical activity [Mooberry et al. (1999) Cancer Res. 59, 653-660]. We report here that laulimalide binds at a site on tubulin polymer that is distinct from the taxoid site. We found that laulimalide, while as active as paclitaxel, epothilone A, and eleutherobin in promoting the assembly of cold-stable microtubules, was unable to inhibit the binding of radiolabeled paclitaxel or of 7-O-[N-(2,7-difluoro-4'-fluoresceincarbonyl)-L-alanyl]paclitaxel, a fluorescent paclitaxel derivative, to tubulin. Confirming this observation, we demonstrated that microtubules formed in the presence of both laulimalide and paclitaxel contained near-molar quantities, relative to tubulin, of both drugs. Laulimalide was active against cell lines resistant to paclitaxel or epothilones A and B on the basis of mutations in the M40 human beta-tubulin gene. We also report that a laulimalide analogue lacking the epoxide moiety, while less active than laulimalide in biochemical and cellular systems, is probably more active than isolaulimalide. Further exploration of the role of the epoxide in the interaction of laulimalide with tubulin is therefore justified.

MeSH Terms
Binding Sites Drug Resistance, Neoplasm Epoxy Compounds/pharmacology Fluorescence Polarization Macrolides Microtubules/drug effects,metabolism Models, Molecular Paclitaxel/analogs & derivatives,metabolism,pharmacology Taxoids Tritium
Chemicals
Epoxy Compounds Macrolides Taxoids laulimalide Tritium Paclitaxel
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Pryor Donald E
Screening Technologies Branch, Developmental Therapeutics Program, Division of Cancer Treatment and Diagnosis, National Cancer Institute at Frederick, National Institutes of Health, Frederick, Maryland 21702, USA.
O'Brate Aurora
Bilcer Geoffrey
Díaz J Fernando
Wang Yuefang
Wang Yong
Kabaki Mikio
Jung M Katherine
Andreu José M
Ghosh Arun K
Giannakakou Paraskevi
Hamel Ernest
Article Info
Journal
Biochemistry
Abbr.
Biochemistry
ISSN
0006-2960
Published
2002-07-23
Pages
9109-15
Language
English
Region
United States
NLM ID
0370623
Subset
IM
Grants
NIGMS NIH HHS · GM 55600 · United States
NCI NIH HHS · N01-CO-1240 · United States
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