c-Src Links a RANK/ α vβ3 Integrin Complex to the Osteoclast Cytoskeleton

  • Izawa T
  • Zou W
  • Chappel J
  • et al.
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Abstract

RANK ligand (RANKL), by mechanisms unknown, directly activates osteoclasts to resorb bone. Because c-Src is key to organizing the cell's cytoskeleton, we asked if the tyrosine kinase also mediates RANKL-stimulated osteoclast activity. RANKL induces c-Src to associate with RANK(369-373) in an αvβ3-dependent manner. Furthermore, RANK(369-373) is the only one of six putative TRAF binding motifs sufficient to generate actin rings and activate the same cytoskeleton-organizing proteins as the integrin. While c-Src organizes the cell's cytoskeleton in response to the cytokine, it does not participate in RANKL-stimulated osteoclast formation. Attesting to their collaboration, αvβ3 and activated RANK coprecipitate, but only in the presence of c-Src. c-Src binds activated RANK via its Src homology 2 (SH2) domain and αvβ3 via its SH3 domain, suggesting the kinase links the two receptors. Supporting this hypothesis, deletion or inactivating point mutation of either the c-Src SH2 or SH3 domain obviates the RANK/αvβ3 association. Thus, activated RANK prompts two distinct signaling pathways; one promotes osteoclast formation, and the other, in collaboration with c-Src-mediated linkage to αvβ3, organizes the cell's cytoskeleton.

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Izawa, T., Zou, W., Chappel, J. C., Ashley, J. W., Feng, X., & Teitelbaum, S. L. (2012). c-Src Links a RANK/ α vβ3 Integrin Complex to the Osteoclast Cytoskeleton. Molecular and Cellular Biology, 32(14), 2943–2953. https://doi.org/10.1128/mcb.00077-12

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