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Walking the integrin activation road
The GTPase Rap1 mediates protein kinase C activity to induce the formation of an 'integrin activation complex' that binds to and activates integrin receptors. Many signalling molecules have been shown to regulate integrin activation, yet the molecular links that connect agonist stimulation with the final steps that lead to integrin activation are not known. Han et al. now describe a pathway from agonist stimulation to integrin activation and establish that Rap1 induces the formation of an 'integrin activation complex' that binds to and activates integrin receptors. Activation of the platelet integrin Given the above discrepancies, Han et al. used a synthetic approach to reconstruct the integrin activation pathway in CHO cells. Binding of the adaptor protein, talin, is a final step in integrin activation, and platelets express abundant talin compared with most nucleated cells. This prompted the authors to propose that increased levels of talin in CHO cells enable Although talin is a known substrate for PKC, PKC-mediated talin phosphorylation did not affect integrin activation. Instead, the authors found that Rap1 GTPase mediated the activity of PKC in agonist-induced integrin activation. So, is Rap1 the missing link between PKC and talin in integrin activation? Mutation analysis showed that talin binding to the
The authors proposed that "agonist receptors promote ... the activation and/or translocation of active GTP bound Rap1 to the plasma membrane through activation of PKC or a Rap GEF. At the plasma membrane, activated Rap1 interacts with RIAM, leading to the recruitment of talin to form the integrin activation complex, thus unmasking the integrin binding site in talin leading to integrin activation." This pathway can now be used as a template to integrate different agonists and signalling pathways that control integrin activation. Ekat Kritikou References
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