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PMID: 15902208 Published · ppublish English Journal Article

An inhibitor of Bcl-2 family proteins induces regression of solid tumours.

Nature ·Vol. 435 ·No. 7042 ·2005-06-02 ·Pages 677-81

Oltersdorf T, Elmore SW, Shoemaker AR, Armstrong RC, Augeri DJ, Belli BA, Bruncko M, Deckwerth TL, Dinges J, Hajduk PJ, Joseph MK, Kitada S, Korsmeyer SJ, Kunzer AR, Letai A, Li C, Mitten MJ, Nettesheim DG, Ng S, Nimmer PM, O'Connor JM, Oleksijew A, Petros AM, Reed JC, Shen W, Tahir SK, Thompson CB, Tomaselli KJ, Wang B, Wendt MD, Zhang H, Fesik SW, Rosenberg SH

Abstract

Proteins in the Bcl-2 family are central regulators of programmed cell death, and members that inhibit apoptosis, such as Bcl-X(L) and Bcl-2, are overexpressed in many cancers and contribute to tumour initiation, progression and resistance to therapy. Bcl-X(L) expression correlates with chemo-resistance of tumour cell lines, and reductions in Bcl-2 increase sensitivity to anticancer drugs and enhance in vivo survival. The development of inhibitors of these proteins as potential anti-cancer therapeutics has been previously explored, but obtaining potent small-molecule inhibitors has proved difficult owing to the necessity of targeting a protein-protein interaction. Here, using nuclear magnetic resonance (NMR)-based screening, parallel synthesis and structure-based design, we have discovered ABT-737, a small-molecule inhibitor of the anti-apoptotic proteins Bcl-2, Bcl-X(L) and Bcl-w, with an affinity two to three orders of magnitude more potent than previously reported compounds. Mechanistic studies reveal that ABT-737 does not directly initiate the apoptotic process, but enhances the effects of death signals, displaying synergistic cytotoxicity with chemotherapeutics and radiation. ABT-737 exhibits single-agent-mechanism-based killing of cells from lymphoma and small-cell lung carcinoma lines, as well as primary patient-derived cells, and in animal models, ABT-737 improves survival, causes regression of established tumours, and produces cures in a high percentage of the mice.

MeSH Terms
Animals Antineoplastic Agents/chemical synthesis,chemistry,pharmacology,therapeutic use Apoptosis/drug effects Biphenyl Compounds/chemical synthesis,chemistry,pharmacology,therapeutic use Carcinoma, Small Cell/drug therapy,pathology Cell Line, Tumor Cytochromes c/metabolism Disease Models, Animal Drug Synergism Humans Lymphoma/drug therapy,pathology Magnetic Resonance Spectroscopy Mice Mitochondria/drug effects,metabolism Models, Molecular Neoplasms/drug therapy,pathology Nitrophenols Paclitaxel/pharmacology Piperazines Proto-Oncogene Proteins c-bcl-2/antagonists & inhibitors,classification,metabolism Structure-Activity Relationship Sulfonamides Survival Rate
Chemicals
ABT-737 Antineoplastic Agents Biphenyl Compounds Nitrophenols Piperazines Proto-Oncogene Proteins c-bcl-2 Sulfonamides Cytochromes c Paclitaxel
Authors & Affiliations
33 authors, click to expand affiliations / ORCID
Oltersdorf Tilman
Idun Pharmaceuticals, 9380 Judicial Drive, San Diego, California 92121, USA.
Elmore Steven W
Shoemaker Alexander R
Armstrong Robert C
Augeri David J
Belli Barbara A
Bruncko Milan
Deckwerth Thomas L
Dinges Jurgen
Hajduk Philip J
Joseph Mary K
Kitada Shinichi
Korsmeyer Stanley J
Kunzer Aaron R
Letai Anthony
Li Chi
Mitten Michael J
Nettesheim David G
Ng ShiChung
Nimmer Paul M
O'Connor Jacqueline M
Oleksijew Anatol
Petros Andrew M
Reed John C
Shen Wang
Tahir Stephen K
Thompson Craig B
Tomaselli Kevin J
Wang Baole
Wendt Michael D
Zhang Haichao
Fesik Stephen W
Rosenberg Saul H
Article Info
Journal
Nature
Abbr.
Nature
ISSN
1476-4687
Published
2005-06-02
Epub
2005-00-15
Pages
677-81
Language
English
Region
England
NLM ID
0410462
Subset
IM
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