Title of article :
Bone-targeted Src SH2 inhibitors block Src cellular activity and osteoclast-mediated resorption
Author/Authors :
S.M Violette، نويسنده , , W Guan، نويسنده , , C Bartlett، نويسنده , , JA Smith، نويسنده , , C Bardelay، نويسنده , , E Antoine، نويسنده , , R.J Rickles، نويسنده , , E Mandine، نويسنده , , M.R van Schravendijk، نويسنده , , S.E Adams، نويسنده , , B.A Lynch، نويسنده , , W.C Shakespeare، نويسنده , , M Yang، نويسنده , , V.A Jacobsen، نويسنده , , C.S Takeuchi، نويسنده , , K.J Macek، نويسنده , , R.S Bohacek، نويسنده , , D.C Dalgarno، نويسنده , , Peter Weigele، نويسنده , , D Lesuisse، نويسنده , , et al.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2001
Pages :
11
From page :
54
To page :
64
Abstract :
Src, a nonreceptor tyrosine kinase, is an important regulator of osteoclast-mediated resorption. We have investigated whether compounds that bind to the Src SH2 domain inhibit Src activity in cells and decrease osteoclast-mediated resorption. Compounds were examined for binding to the Src SH2 domain in vitro using a fluorescence polarization binding assay. Experiments were carried out with compounds demonstrating in vitro binding activity (nmol/L range) to determine if they inhibit Src SH2 binding and Src function in cells, demonstrate blockade of Src signaling, and lack cellular toxicity. Cell-based assays included: (1) a mammalian two-hybrid assay; (2) morphological reversion and growth inhibition of cSrcY527F-transformed cells; and (3) inhibition of cortactin phosphorylation in csk−/− cells. The Src SH2 binding compounds inhibit Src activity in all three of these mechanism-based assays. The compounds described were synthesized to contain nonhydrolyzable phosphotyrosine mimics that bind to bone. These compounds were further tested and found to inhibit rabbit osteoclast-mediated resorption of dentine. These results indicate that compounds that bind to the Src SH2 domain can inhibit Src activity in cells and inhibit osteoclast-mediated resorption.
Keywords :
src , Resorption , Osteoporosis. , Osteoclast , Bisphosphonate , SH2 domain
Journal title :
Bone
Serial Year :
2001
Journal title :
Bone
Record number :
491273
Link To Document :
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