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- W2068741775 abstract "Annals of the New York Academy of SciencesVolume 614, Issue 1 p. 229-239 Calcium-Dependent and Calcium-Independent Cell Adhesion Molecules in the Endothelium RONALD L. HEIMARK, RONALD L. HEIMARK Department of Pathology University of Washington Seattle, Washington 98195 Ronald Heimark, Ph.D., ICOS Corporation, 22021 20th Avenue, S.E., Bothell, Washington 98021.Search for more papers by this author RONALD L. HEIMARK, RONALD L. HEIMARK Department of Pathology University of Washington Seattle, Washington 98195 Ronald Heimark, Ph.D., ICOS Corporation, 22021 20th Avenue, S.E., Bothell, Washington 98021.Search for more papers by this author First published: February 1991 https://doi.org/10.1111/j.1749-6632.1991.tb43705.xCitations: 6 AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinkedInRedditWechat References 1 Schwartz, S. M. & E. P. Benditt. 1976. Aortic endothelial cell replication I. Effects of age and hypertension in the rat. Circ. Res. 41: 248–255. 2 Larson, D. M. & J. D. Sheridan. 1982. Intercellular junctions and transfer of small molecules in primary vascular endothelial cultures. J. Cell Biol. 92: 183–191. 3 Shwartz, S. M., M. B. Stemmerman & E. P. Benditt. 1975. The aortic intima II. Repair of the aortic lining after mechanical denudation. Am. J. Pathol. 81: 15–31. 4 Spagnoli, L. G., G. C. Pietra, S. Villaschi & L. W. Jones. 1982. Morphometric analysis of gap junctions in regenerating endothelium. Lab. Invest. 46: 139–148. 5 Coffin, J. D. & T. J. Poole. 1988. Embryonic vascular development: Identification of the origin and subsequent morphogenesis of the major vessel primordia in quail embryos. Development 102: 735–748. 6 Pardanaud, L., C. Altman, P. Kitos, F. Dieterlen-Lievre & C. A. Buck. 1987. Vasculogenesis in the early quail blastodisc as studied with a monoclonal antibody recognizing endothelial cells. Development 100: 339–349. 7 Edelman, G. M. 1988. Morphoregulatory molecules. Biochemistry 27: 3533–3543. 8 Takeichi, M. 1988. The cadherins: Cell-cell adhesion molecules controlling animal morphogenesis. Development 102: 639–655. 9 Simionescu, M., N. Simionescu & G. E. Palade. 1976. Segmental differentiation of cell junctions: Arteries and veins. J. Cell Biol. 68: 705–723. 10 Gonzalez-Mariscal, L., C. de Ramirez & M. Cereijiodo. 1985. Tight junction formation in cultured epithelial cells (MDCK). J. Membr. Biol. 86: 113–125. 11 Farquhar, M. G. & G. E. Palade. 1963. Junctional complexes in various epithelia. J. Cell. Biol. 17: 375–412. 12 Wong, M. K. K. & A. I. Gotlieb. 1986. Endothelial cell monolayer integrity. I. Characterization of dense peripheral band of microfilaments. Arteriosclerosis 6: 212–219. 13 Franke, W. W., H.-P. Kapprell & P. Cowin. 1987. Immunolocalization of plakoglobin in endothelial junctions: Identification as a special type of Zonulae adherentes. Biol. Cell 59: 205–218. 14 Stevenson, B. R., J. D. Siliciano, M. S. Mooseker & D. A. Goodenough. 1986. Identification of ZO-1: A high molecular weight polypeptide associated with the tight junction (zonula occludens) in a variety of epithelia. J. Cell Biol. 103: 755–766. 15 Gumbiner, B. & K. Simons. 1986. A functional assay for proteins involved in establishing an epithelial occluding barrier: Identification of a uvomorulin-like polypeptide. J. Cell Biol. 102: 457–468. 16 Kern, D. F. & A. B. Malik. 1985. Microvascular albumin permeability in isolated perfused lung: Effects of EDTA. J. Appl. Physiol. 58: 372–375. 17 Shasby, D. M. & S. S. Shasby. 1986. Effects of calcium on transendothelial albumin transfer and electrical resistance. J. Appl. Physiol. 60: 71–79. 18 Nicholaysen, G. 1971. Intravascular concentrations of calcium and magnesium ions and edema formation in isolated lungs. Acta Physiol. Scand. 81: 325–339. 19 Gallin, W. J., G. M. Edelman & B. A. Cunningham. 1983. Characterization of LCAM, a major cell adhesion molecule from embryonic liver cells. Proc. Natl. Acad. Sci. USA 80: 1038–1042. 20 Vestweber, D. & R. Kemler. 1985. Identification of a putative cell adhesion domain of uvomorulin. EMBO J. 16: 3393–3399. 21 Yoshida-Noro, C., N. Suzuki & M. Takeichi. 1984. Molecular nature of the calciumdependent cell-cell adhesion system in mouse teratocarcinoma and embryonic cells studied with a monoclonal antibody. Dev. Biol. 101: 19–27. 22 Hatta, K., T. S. Okada & M. Takeichi. 1985. A monoclonal antibody disrupting calciumdependent cell-cell adhesion of brain tissues: Possible role of its target antigen in animal pattern formation. Proc. Natl. Acad. Sci. USA 82: 2789–2793. 23 Volk, T. & B. Geiger. 1986. A-CAM: A 135-kD receptor for intercellular adherens junctions. I. Immunoelectron microscopic localization and biochemical studies. J. Cell Biol. 103: 1441–1450. 24 Damsky, C. H., J. Richa, D. Solter, K. Knudsen & C. A. Buck. 1984. Identification and purification of a cell surface glycoprotein mediating intercellular adhesion in embryonic and adult tissue. Cell 34: 455–466. 25 Nose, A. & M. Takeichi. 1986. A novel cadherin cell adhesion molecule: Its expression patterns associated with implantation and organogenesis of mouse embryos. J. Cell Biol. 103: 2649–2658. 26 Chuong, C. M., D. a. McClain, P. Streit & G. M. Edelman. 1982. Neural cell adhesion molecules in rodent brains isolated by monoclonal antibodies with cross-reactivity. Proc. Natl. Acad. Sci. USA 79: 4234–4238. 27 Grument, M. S. Hoffman, C-M. Chuong & G. M. Edelman. 1984. Polypeptide components and binding functions of neuron-glia adhesion molecules. Proc. Natl. Acad. Sci. USA 81: 267–271. 28 Moos, M., R. Tacke, H. Scherer, D. Teplow, K. Früh & M. Schachner. 1988. Neural adhesion molecule L1 as a member of the immunoglobulin superfamily with binding domains similar to fibronectin. Nature 334: 701–703. 29 Boller, K., D. Vestweber & R. Kemler. 1985. Cell adhesion molecule uvomorulin is localized in the intermediate junctions of adult intestinal epithelial cells. J. Cell Biol. 100: 327–332. 30 Heimark, R. L., M. Degner & S. M. Schwartz. 1990. Identification of a Ca2+ dependent cell-cell adhesion molecule in endothelial cells. J. Cell. Biol. 110: 1745–1756. 31 Brackenbury, R., U. Rutishauser & G. M. Edelman. 1981. Distinct calcium-independent and calcium-dependent adhesion systems of chicken embryo cells. Proc. Natl. Acad. Sci. USA 78: 387–391. 32 Magnani, J. L., W. A. Thomas & M. S. Steinberg. 1981. Two distinct adhesion mechanisms in embryonic neural retina cells. 1. A kinetic analysis. Dev. Biol. 81: 96–105. 33 Urushihara, H., H. S. Ozaki & M. Takeichi. 1979. Immunologic detection of cell surface components related with aggregation of chinese hamster and chick embryonic cells. Dev. Biol. 70: 206–216. 34 Heimark, R. L., M. Almedia & B. McMullen. 1990. Sequence homology of V-cadherin with members of the family of Ca2+ dependent cell adhesion molecules. Biochemistry. In Press. 35 Hirano, S., A. Nose, K. Hatta, A. Kawakami & M. Takeichi. 1987. Calcium-dependent cell-cell adhesion molecules (Cadherins): Subclass specificities and possible involvement of actin bundles. J. Cell. Biol. 105: 2501–2510. 36 Fey, E. G., K. M. Wan, & S. Penman. 1984. Epithelial cytoskeletal framework and nuclear matrix-intermediate filament scaffold: Three-dimensional organization and protein composition. J. Cell. Biol. 98: 1973–1984. 37 Heimark, R. L. & S. M. Schwartz. 1985. The role of membrane-membrane interactions in the regulation of endothelial growth. J. Cell Biol. 100: 1934–1940. 38 Le Lievre, C. S. & N. M. Le Douarin. 1975. Mesenchymal derivatives of the neural crest: Analysis of chimeric quail and chick embryos. J. Embryol. Exp. Morphol. 34: 125–154. 39 Davies, P. F., P. Ganz & P. S. Diehl. 1985. Reversible microcarrier-mediated junctional communication between endothelial and smooth muscle cell monolayers: An in vitro model of vascular cell interactions. Lab. Invest. 85: 710–719. 40 Ausprunk, D. H. & J. Folkman. 1977. Migration and proliferation of endothelial cells in preformed and newly formed blood vessels during tumor angiogenesis. Microvasc. Res. 14: 53–65. 41 Sariola, H., P. Ekblom, E. Lehtonen & L. Saxen. 1983. Differentiation and vascularization of the metanephric kidney grafted on the chorioallantoic membrane. Dev. Biol. 96: 427–435. 42 Stewart, P. A. & M. J. Wiley. 1981. Developing nervous tissue induces formation of blood-brain barrier characteristics in invading endothelial cells: A study using quail chick transplantation chimeras. Dev. Biol. 84: 183–192. 43 Risau, W. & P. Ekblom. 1986. Production of a heparin-binding angiogenesis factor by the embryonic kidney. J. Cell. Biol. 103: 1101–1107. 44 Risau, W., P. Gautschi-Sova & P. Böhlen. 1988. Endothelial cell growth factors in embryonic and adult chick brain are related to human acidic fibroblast growth factor. EMBO J. 7: 959–962. 45 Montesano, R., J-D. Vassalli, R. Guilleman & L. Orci. 1986. Basic fibroblast growth factor induces angiogenesis in vitro. Proc. Natl. Acad. Sci. USA 83: 7297–7301. 46 Kimelman, D. & M. Kirschner. 1987. Synergistic induction of mesoderm by FGF and TGF-β and the induction of an mRNA coding for FGF in the early Xenopus embryo. Cell 51: 867–877. 47 Bavisotto, L. M., S. M. Schwartz & R. L. Heimark. 1990. Modulation of intercellular adhesion in bovine aortic and human umbilical vein endothelial cells by heparin binding growth factors. J. Cell. Physiol. 143: 39–51. 48 Schwartz, S. M., C. M. Gajdusek & S. C. Seldin. 1981. Vascular wall growth control: The role of the endothelium. Arteriosclerosis 1: 107–161. 49 Moscatelli, D., M. Presta & D. B. Rifkin. 1986. Purification of a factor from human placenta that stimulates capillary endothelial cell protease production, DNA synthesis, and migration. Proc. Natl. Acad. Sci. USA 83: 2091–2095. 50 Odin, P. & B. Obrink. 1986. Dynamic expression of the cell adhesion molecule cell-CAM 105 in fetal and regenerating rat liver. Exp. Cell Res. 164: 103–114. 51 Newman, P. J., M. C. Berndt, J. Gorski, G. C. White, II, S. Lyman, C. Paddock & W. A. Muller. 1990. PECAM-1 (CD 31) cloning and relation to adhesion molecules of the immunoglobulin gene superfamily. Science 247: 1219–1221. Citing Literature Volume614, Issue1Progress in Vascular Biology, Hemostasis, and Thrombosis: Theodore S. Zimmerman Memorial ConferenceFebruary 1991Pages 229-239 ReferencesRelatedInformation" @default.
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- W2068741775 cites W1571364237 @default.
- W2068741775 cites W1605235578 @default.
- W2068741775 cites W1844495809 @default.
- W2068741775 cites W1878437090 @default.
- W2068741775 cites W1965094170 @default.
- W2068741775 cites W1972775606 @default.
- W2068741775 cites W1988068536 @default.
- W2068741775 cites W1991165396 @default.
- W2068741775 cites W1996510215 @default.
- W2068741775 cites W2005447528 @default.
- W2068741775 cites W2016050897 @default.
- W2068741775 cites W2028224423 @default.
- W2068741775 cites W2030149741 @default.
- W2068741775 cites W2034713686 @default.
- W2068741775 cites W2037150903 @default.
- W2068741775 cites W2041783728 @default.
- W2068741775 cites W2045233723 @default.
- W2068741775 cites W2049042095 @default.
- W2068741775 cites W2053340213 @default.
- W2068741775 cites W2058651524 @default.
- W2068741775 cites W2069274271 @default.
- W2068741775 cites W2075037940 @default.
- W2068741775 cites W2075534547 @default.
- W2068741775 cites W2076601321 @default.
- W2068741775 cites W2079200533 @default.
- W2068741775 cites W2084425307 @default.
- W2068741775 cites W2092498617 @default.
- W2068741775 cites W2095912670 @default.
- W2068741775 cites W2097933389 @default.
- W2068741775 cites W2105356309 @default.
- W2068741775 cites W2108765213 @default.
- W2068741775 cites W2109004108 @default.
- W2068741775 cites W2110292299 @default.
- W2068741775 cites W2111072594 @default.
- W2068741775 cites W2118579871 @default.
- W2068741775 cites W2131705020 @default.
- W2068741775 cites W2137261534 @default.
- W2068741775 cites W2137794229 @default.
- W2068741775 cites W2138312252 @default.
- W2068741775 cites W2152790702 @default.
- W2068741775 cites W2153387848 @default.
- W2068741775 cites W2155579605 @default.
- W2068741775 cites W221104407 @default.
- W2068741775 cites W2341009340 @default.
- W2068741775 cites W4254179074 @default.
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