H., and Springer, T. A. (2004) The relative influence of metal ion binding web-sites within the I-like domain and also the interface with the hybrid domain on rolling and firm adhesion by integrin four 7. J. Biol. Chem. 279, 55556 ?5561 12. Takagi, J., Petre, B. M., Walz, T., and Springer, T. A. (2002) International conformational rearrangements in integrin extracellular domains in outside-in and inside-out signaling. Cell 110, 599 ?611 13. Takagi, J., Strokovich, K., Springer, T. A., and Walz, T. (2003) Structure of integrin 5 1 in complicated with fibronectin. EMBO J. 22, 4607?4615 14. Xiao, T., Takagi, J., Coller, B. S., Wang, J. H., and Springer, T. A. (2004) Structural basis for allostery in integrins and binding to fibrinogen-mimetic therapeutics. Nature 432, 59 ?67 15. Ye, F., Hu, G., Taylor, D., Ratnikov, B., Bobkov, A. A., McLean, M. A., Sligar, S. G., Taylor, K. A., and Ginsberg, M. H. (2010) Recreation in the terminal events in physiological integrin activation. J. Cell Biol. 188, 157?73 16. Larjava, H., Plow, E. F., and Wu, C. (2008) Kindlins. Necessary regulators of integrin signalling and cell-matrix adhesion.Formula of 3-Chloro-2-naphthoic acid EMBO Rep. 9, 1203?208 17. Moser, M., Legate, K. R., Zent, R., and F sler, R. (2009) The tail of integrins, talin, and kindlins. Science 324, 895?899 18. Kim, C., Ye, F., and Ginsberg, M. H. (2011) Regulation of integrin activation. Annu. Rev. Cell Dev. Biol. 27, 321?45 19. Zhang, K., and Chen, J. (2012) The regulation of integrin function by divalent cations. Cell Adh. Migr. 6, 20 ?9 20. Mould, A. P., Akiyama, S. K., and Humphries, M. J. (1995) Regulation of integrin 5 1-fibronectin interactions by divalent cations. Evidence for distinct classes of binding internet sites for Mn2 , Mg2 , and Ca2 . J. Biol. Chem. 270, 26270 ?6277 21. Leitinger, B., McDowall, A., Stanley, P., and Hogg, N. (2000) The regulation of integrin function by Ca(2 ). Biochim. Biophys. Acta 1498, 91?8 22. de Ch eau, M., Chen, S., Salas, A., and Springer, T. A. (2001) Kinetic and mechanical basis of rolling via an integrin and novel Ca2 -dependent rolling and Mg2 -dependent firm adhesion modalities for the four 7MAdCAM-1 interaction. Biochemistry 40, 13972?3979 23. Xiong, J. P., Stehle, T., Zhang, R., Joachimiak, A., Frech, M., Goodman, S. L., and Arnaout, M. A. (2002) Crystal structure of your extracellular segment of integrin V three in complex with an Arg-Gly-Asp ligand. Science 296, 151?55 24.349552-70-1 site Xiong, J.PMID:25818744 P., Mahalingham, B., Alonso, J. L., Borrelli, L. A., Rui, X., Anand, S., Hyman, B. T., Rysiok, T., M ler-Pompalla, D., Goodman, S. L., and Arnaout, M. A. (2009) Crystal structure of the comprehensive integrin V 3 ectodomain plus an / transmembrane fragment. J. Cell Biol. 186, 589 ?600 25. Zhu, J., Luo, B. H., Xiao, T., Zhang, C., Nishida, N., and Springer, T. A. (2008) Structure of a total integrin ectodomain in a physiologic resting state and activation and deactivation by applied forces. Mol. Cell 32, 849 ?861 26. Sun, H., Wu, Y., Qi, J., Pan, Y., Ge, G., and Chen, J. (2011) The CC’ and DE loops in Ig domains 1 and 2 of MAdCAM-1 play different roles in MAdCAM-1 binding to low- and high-affinity integrin four 7. J. Biol. Chem. 286, 12086 ?2092 27. Pan, Y., Zhang, K., Qi, J., Yue, J., Springer, T. A., and Chen, J. (2010) Cation- interaction regulates ligand-binding affinity and signaling of integrin 4 7. Proc. Natl. Acad. Sci. U.S.A. 107, 21388 ?1393 28. Yu, Y., Zhu, J., Mi, L. Z., Walz, T., Sun, H., Chen, J., and Springer, T. A. (2012) Structural specializations of 4 7, an integrin that.

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