Bowie, JU, et al. 1990, Deciphering the message in protein sequences: tolerance to amino acid substitutions, Science, vol. 247, pp. 306-1310.* |
Burgess, WH, et al, 1990, Possible dissociation of the heparin-binding and mitogenic activities of heparin-binding (acidic fibroblast) growth factor-1, J Cell Biology, vol. 111, pages 2129-2138.* |
Lazar, E, et al., 1988, Transforming growth factor alpha: mutation of aspartic acid 47 and leucine 48 results in different biological activities, Molecular and Cellular Biology, vol. 8, pp. 1247-1252.* |
Briehl, M.M. and R.L. Miesfeld, “Isolation and Characterization of Transcripts Induced by Androgen Withdrawal and Apoptotic Cell Death in the Rat Ventral Prostate”, Mol. Endocrinol., 5:1381-1388 (1991). |
Katahira, J. et al., “Clostridium perfringens Enterotoxin Utilizes Two Structurally Related Membrane Proteins as Functional Receptors in Vivo”, J. Biol. Chem., 272:26652-26658 (1997). |
Morita, K. et al., “Claudin multigene family encoding four-transmembrane domain protein components of tight junction strands”, Proc. Natl. Acad, Sci. USA, 96:511-516 (Jan. 1999). |
Logsiger, C.S. et al., “Identification and Characterization of cDNA and the Structural Gene Encoding the Mouse Epithelial Membrane Protein-1”, Genomics 36:379-387 (1996). |
Ben-Porath, I. and Benvenisty, N., “Characterization of a tumor-associated gene, a member of a novel family of genes encoding membrane glycoproteins”, Gene 183:69-75 (1996). |
Katahira, J. et al., “Clostridium prfringens enterotoxin utilizes two structurally related Membrane proteins as functional receptors in vivo”, GenBank Sequence Database (Accession BAA22986), National Center for Biotechnology Information, National Library of Medicine, Bethesda, Maryland, 20894 (GI 2570129). |
Stanger, B.Z. et al., “RIP: A Novel Protein Containing a Death Domain That Interacts with Fas/APO-1 (CD95) in Yeast and Causes Cell Death”, Cell 81:513-523 (May 19, 1995). |