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Abraham, L. A., Chinni, C., Jenkins, A. L., Lourbakos, A., Ally, N., Pike, R. N. and Mackie, E. J (2000). Expression of protease-activated receptor-2 by osteoblasts. Bone 26, 7-14.[Medline]

Abraham, L. A., Jenkins, A. L., Stone, S. R. and Mackie, E. J (1998). Expression of the thrombin receptor in developing bone and associated tissues. J. Bone Min. Res 13, 818-827.[Medline]

Al-Ani, B., Saifeddine, M. and Hollenberg, M. D (1995). Detection of functional receptors for the proteinase-activated-receptor-2-activating polypeptide, SLIGRL-NH2, in rat vascular smooth muscle. Can. J. Physiol. Pharmacol 73, 1203-1207.[Medline]

Blackhart, B. D., Emilsson, K., Nguyen, D., Teng, W., Martelli, A. J., Nystedt, S., Sundelin, J. and Scarborough, R. M (1996). Ligand cross-reactivity within the protease-activated receptor family. J. Biol. Chem 271, 16466-16471.[Abstract/Free Full Text]

Bohm, S. K., Kong, W., Bromme, D., Smeekens, S. P., Anderson, D. C., Connolly, A., Kahn, M., Nelken, N. A., Coughlin, S. R., Payan, D. G. and Bunnett, N. W (1996). Molecular cloning, expression and potential functions of the human proteinase-activated receptor-2. Biochem. J 314, 1009-1016.

Bono, F., Lamarche, I. and Herbert, J. M (1997). Induction of vascular smooth muscle cell growth by selective activation of the proteinase activated receptor-2 (PAR-2). Biochem. Biophys. Res. Commun 241, 762-764.[Medline]

Chinni, C., de Niese, M. R., Tew, D. J., Jenkins, A. L., Bottomley, S. P. and Mackie, E. J (1999). Thrombin: A survival factor for myoblasts. J. Biol. Chem 274, 9169-9174.[Abstract/Free Full Text]

Corvera, C. U., Dery, O., McConalogue, K., Bohm, S. K., Khitin, L. M., Caughey, G. H., Payan, D. G. and Bunnett, N. W (1997). Mast cell tryptase regulates rat colonic myocytes through proteinase-activated receptor 2. J. Clin. Invest 100, 1383-1393.[Medline]

D'Andrea, M. R., Derian, C. K., Leturcq, D., Baker, S. M., Brunmark, A., Ling. P., Darrow, A. L., Santulli, R. J., Brass, L. F. and Andrade-Gordon, P (1998). Characterisation of protease-activated receptor-2immunoreactivity in normal human tissues. J. Histochem. Cytochem 46, 157-164.[Abstract/Free Full Text]

Gorospe, J. R. M., Tharp, M. D., Demitsu, T. and Hoffman, E. P (1994). Dystrophin-deficient myofibers are vulnerable to mast cell granule-induced necrosis. Neuromusc. Disord 4, 325-333.[Medline]

Guttridge, D. C., Lau, A., Tran, L. and Cunningham, D. D (1997). Thrombin causes a marked delay in skeletal myogenesis that correlates with the delayed expression of myogenin and p21CIP1/WAF1. J. Biol. Chem 272, 24117-24120.[Abstract/Free Full Text]

Howells, G. L., Macey, M. G., Chinni, C., Hou, L., Fox, M. T., Harriott, P. and Stone, S. R (1997). Proteinase-activated receptor-2: expression by human neutrophils. J. Cell Sci 110, 881-887.[Abstract]

Helliwell, T. R., Gunhan, O. and Edwards, R. H. T (1990). Mast cells in neuromuscular diseases. J. Neur. Sci 98, 267-276.

Hwa, J. J., Ghibaudi, L., Williams, P., Chintala, M., Zhang, R., Chatterjee, M. and Sybertz, E (1996). Evidence for the presence of a proteinase-activated receptor distinct from the thrombin receptor in vascular endothelial cells. Circ. Res 78, 581-588.[Abstract/Free Full Text]

Jenkins, A. L., Bootman, M. D., Taylor, C. W., Mackie, E. J. and Stone, S. R (1993). Characterization of the receptor responsible for thrombin-induced intracellular calcium responses in osteoblast-like cells. J. Biol. Chem 268, 21433-21437.

Kong, W., McConalogue, K., Khitin, L. M., Hollenberg, M. D., Payan, D. G., Bohm, S. K. and Bunnett, N. W (1997). Luminal trypsin may regulate enterocytes through proteinase-activated receptor-2. Proc. Natl. Acad. Sci. USA 94, 8884-8889.[Abstract/Free Full Text]

Lefaucheur, J. P., Gjata, B. and Sebille, A (1996). Factors inducing mast cell accumulation in skeletal muscle. Neuropath. Appl. Neurobiol 22, 248-255.[Medline]

Mirza, H., Yatsula, V. and Bahou, W. F (1996). The proteinase activated receptor-2 (PAR-2) mediates mitogenic responses in human vascular endothelial cells. J. Clin. Invest 97, 1705-1714.[Medline]

Nahirney, P. C., Dow, P. R. and Ovalle, W. K (1997). Quantitative morphology of mast cells in skeletal muscle of normal and genetically dystrophic mice. Anat. Rec 247, 341-349.[Medline]

Nguyen, T. D., Moody, M. W., Steinhoff, M., Okolo, C., Koh, D. S. and Bunnett, N. W (1999). Trypsin activates pancreatic duct epithelial cell ion channels through proteinase-activated receptor-2. J. Clin. Invest 103, 261-269.[Medline]

Nystedt, S., Emilsson, K., Wahlestedt, C. and Sundelin, J (1994). Molecular cloning of a potential proteinase activated receptor. Proc. Natl. Acad. Sci. USA 91, 9208-9212.[Abstract/Free Full Text]

Santulli, R. J., Derian, C. K., Darrow, A. L., Tomko, K. A., Eckardt, A. J., Seiberg, M., Scarborough, R. M. and Andrade-Gordon, P (1995). Evidence for the presence of a protease-activated receptor distinct from the thrombin receptor in human keratinocytes. Proc. Natl Acad. Sci. USA 92, 9151-9155.[Abstract/Free Full Text]

Stone, S. R. and Hofsteenge, J (1986). Kinetics of the inhibition of thrombin by hirudin. Biochemistry 25, 4622-4628.[Medline]

Suidan, H. S., Niclou, S. P., Dreessen, J., Beltraminelli, N. and Monard, D (1996). The thrombin receptor is present in myoblasts and its expression is repressed upon fusion. J. Biol. Chem 271, 29162-29169.[Abstract/Free Full Text]




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[Abstract] [Full Text] [PDF]


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