TY - JOUR
T1 - Adaptor protein GRB2 promotes Src tyrosine kinase activation and podosomal organization by protein-tyrosine phosphatase ∈ in osteoclasts
AU - Levy-Apter, Einat
AU - Finkelshtein, Eynat
AU - Vemulapalli, Vidyasiri
AU - Li, Shawn S. -C.
AU - Bedford, Mark T.
AU - Elson, Ari
N1 - Israel Science Foundation; Kekst Family Institute for Medical Genetics, Weizmann Institute; David and Fella Shapell Family Center for Genetic Disorders Research, Weizmann Institute; Cancer Prevention Research Institute of Texas Grant [RP130432]; Centre for Environmental and Molecular Carcinogenesis at M. D. AndersonThis work was supported by the Israel Science Foundation and by the Kekst Family Institute for Medical Genetics and the David and Fella Shapell Family Center for Genetic Disorders Research, both of the Weizmann Institute (to A. E.).Directs the Protein Array Core, which is supported by Cancer Prevention Research Institute of Texas Grant RP130432 and by the Centre for Environmental and Molecular Carcinogenesis at M. D. Anderson.
PY - 2014
Y1 - 2014
N2 - The non-receptor isoform of protein-tyrosine phosphatase epsilon (cyt-PTPe) supports adhesion of bone-resorbing osteoclasts by activating Src downstream of integrins. Loss of cyt-PTPe reduces Src activity in osteoclasts, reduces resorption of mineralized matrix both in vivo and in cell culture, and induces mild osteopetrosis in young female PTPe KO mice. Activation of Src by cyt-PTPe is dependent upon this phosphatase undergoing phosphorylation at its C-terminal Tyr-638 by partially active Src. To understand how cyt-PTPe activates Src, we screened 73 Src homology 2 (SH2) domains for binding to Tyr(P)-638 of cyt-PTPe. The SH2 domain of GRB2 bound Tyr(P)-638 of cyt-PTPe most prominently, whereas the Src SH2 domain did not bind at all, suggesting that GRB2 may link PTPe with downstream molecules. Further studies indicated that GRB2 is required for activation of Src by cyt-PTPe in osteoclast-like cells (OCLs) in culture. Overexpression of GRB2 in OCLs increased activating phosphorylation of Src at Tyr-416 and of cyt-PTPe at Tyr-638; opposite results were obtained when GRB2 expression was reduced by shRNA or by gene inactivation. Phosphorylation of cyt-PTPe at Tyr-683 and its association with GRB2 are integrin-driven processes in OCLs, and cyt-PTPe undergoes autodephosphorylation at Tyr-683, thus limiting Src activation by integrins. Reduced GRB2 expression also reduced the ability of bone marrow precursors to differentiate into OCLs and reduced the fraction of OCLs in which podosomal adhesion structures assume organization typical of active, resorbing cells. We conclude that GRB2 physically links cyt-PTPe with Src and enables cyt-PTPe to activate Src downstream of activated integrins in OCLs.[Alternate title: Adaptor Protein GRB2 Promotes Src Tyrosine Kinase Activation and Podosomal Organization by Protein-tyrosine Phosphatase ϵ in Osteoclasts]
AB - The non-receptor isoform of protein-tyrosine phosphatase epsilon (cyt-PTPe) supports adhesion of bone-resorbing osteoclasts by activating Src downstream of integrins. Loss of cyt-PTPe reduces Src activity in osteoclasts, reduces resorption of mineralized matrix both in vivo and in cell culture, and induces mild osteopetrosis in young female PTPe KO mice. Activation of Src by cyt-PTPe is dependent upon this phosphatase undergoing phosphorylation at its C-terminal Tyr-638 by partially active Src. To understand how cyt-PTPe activates Src, we screened 73 Src homology 2 (SH2) domains for binding to Tyr(P)-638 of cyt-PTPe. The SH2 domain of GRB2 bound Tyr(P)-638 of cyt-PTPe most prominently, whereas the Src SH2 domain did not bind at all, suggesting that GRB2 may link PTPe with downstream molecules. Further studies indicated that GRB2 is required for activation of Src by cyt-PTPe in osteoclast-like cells (OCLs) in culture. Overexpression of GRB2 in OCLs increased activating phosphorylation of Src at Tyr-416 and of cyt-PTPe at Tyr-638; opposite results were obtained when GRB2 expression was reduced by shRNA or by gene inactivation. Phosphorylation of cyt-PTPe at Tyr-683 and its association with GRB2 are integrin-driven processes in OCLs, and cyt-PTPe undergoes autodephosphorylation at Tyr-683, thus limiting Src activation by integrins. Reduced GRB2 expression also reduced the ability of bone marrow precursors to differentiate into OCLs and reduced the fraction of OCLs in which podosomal adhesion structures assume organization typical of active, resorbing cells. We conclude that GRB2 physically links cyt-PTPe with Src and enables cyt-PTPe to activate Src downstream of activated integrins in OCLs.[Alternate title: Adaptor Protein GRB2 Promotes Src Tyrosine Kinase Activation and Podosomal Organization by Protein-tyrosine Phosphatase ϵ in Osteoclasts]
UR - http://www.scopus.com/inward/record.url?scp=84984788461&partnerID=8YFLogxK
U2 - https://doi.org/10.1074/jbc.M114.603548
DO - https://doi.org/10.1074/jbc.M114.603548
M3 - مقالة
SN - 0021-9258
VL - 289
SP - 36048
EP - 36058
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 52
ER -