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  1. 1.   Biased antagonism of CXCR4 avoids antagonist tolerance
  2. Hitchinson, Ben; Eby, Jonathan M.; Gao, Xianlong; Guite-Vinet, Francois; Ziarek, Joshua J.; Abdelkarim, Hazem; Lee, Youngshim; Okamoto, Yukari; Shikano, Sojin; Majetschak, Matthias; Heveker, Nikolaus; Volkman, Brian F.; Tarasova,Nadya; Gaponenko, Vadim
  3. Science signaling. 2018, Oct 16; 11(552):
  1. 2.   Toll-Like Receptor 9 Is Required for Opioid-Induced Microglia Apoptosis
  2. He, L.; Li, H.; Chen, L.; Miao, J. Y.; Jiang, Y. L.; Zhang, Y.; Xiao, Z. X.; Hanley, G.; Li, Y.; Zhang, X. M.; LeSage, G.; Peng, Y.; Yin, D. L.
  3. Plos One. 2011, Apr; 6(4): 10.
  1. 3.   Nedd4 mediates agonist-dependent ubiquitination, lysosomal targeting, and degradation of the beta(2)-adrenergic receptor
  2. Shenoy, S. K.; Xiao, K. H.; Venkataramanan, V.; Snyder, P. M.; Freedman, N. J.; Weissman, A. M.
  3. Journal of Biological Chemistry. 2008 283(32): 22166-22176.
  1. 4.   Ligand-induced partitioning of human CXCR1 chemokine receptors with lipid raft microenvironments facilitates G-protein-dependent signaling
  2. Jiao, X. M.; Zhang, N.; Xu, X. H.; Oppenheim, J. J.; Jin, T.
  3. Molecular and Cellular Biology. 2005, JUL; 25(13): 5752-5762.
  1. 5.   Regulation of map kinase signaling modules by scaffold proteins in mammals
  2. Morrison, D. K.; Davis, R. J.
  3. Annual Review of Cell and Developmental Biology. 2003 19: 91-118.
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