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c-Met Inhibitors with Novel Binding Mode Show Activity against Several Hereditary Papillary Renal Cell Carcinoma-related Mutations

Authors :
Paul E. Rose
Teresa L. Burgess
Tae-Seong Kim
Jodi Moriguchi
Alexander M. Long
Angela Coxon
Isabelle Dussault
Steven F. Bellon
Paula Kaplan-Lefko
Carol W. Johnson
Andrew Tasker
Anne B. O’Connor
Yihong Zhang
Karen Rex
Yan Gu
Yajing Yang
Source :
Journal of Biological Chemistry. 283:2675-2683
Publication Year :
2008
Publisher :
Elsevier BV, 2008.

Abstract

c-Met is a receptor tyrosine kinase often deregulated in human cancers, thus making it an attractive drug target. One mechanism by which c-Met deregulation leads to cancer is through gain-of-function mutations. Therefore, small molecules capable of targeting these mutations could offer therapeutic benefits for affected patients. SU11274 was recently described and reported to inhibit the activity of the wild-type and some mutant forms of c-Met, whereas other mutants are resistant to inhibition. We identified a novel series of c-Met small molecule inhibitors that are active against multiple mutants previously identified in hereditary papillary renal cell carcinoma patients. AM7 is active against wild-type c-Met as well as several mutants, inhibits c-Met-mediated signaling in MKN-45 and U-87 MG cells, and inhibits tumor growth in these two models grown as xenografts. The crystal structures of AM7 and SU11274 bound to unphosphorylated c-Met have been determined. The AM7 structure reveals a novel binding mode compared with other published c-Met inhibitors and SU11274. The molecule binds the kinase linker and then extends into a new hydrophobic binding site. This binding site is created by a significant movement of the C-helix and so represents an inactive conformation of the c-Met kinase. Thus, our results demonstrate that it is possible to identify and design inhibitors that will likely be active against mutants found in different cancers.

Details

ISSN :
00219258
Volume :
283
Database :
OpenAIRE
Journal :
Journal of Biological Chemistry
Accession number :
edsair.doi.dedup.....df262b3d0942396db57a78b8733cd840
Full Text :
https://doi.org/10.1074/jbc.m705774200