Thromb Haemost 1991; 65(03): 223-228 DOI: 10.1055/s-0038-1647488
Schattauer GmbH Stuttgart
Selectins: Novel Receptors that Mediate Leukocyte Adhesion During Inflammation
Rodger P McEver
The Department of Medicine, St. Francis Medical Research Institute, University of Oklahoma Health Sciences Center; and Cardiovascular Biology Research Program, Oklahoma Medical Research Foundation, Oklahoma City, OK, USA
› Author Affiliations
REFERENCES
1
Jamieson GA.
Platelet Membrane Receptors: Molecular Biology, Immunology, Biochemstry, and Pathology. Alan R. Liss, Inc.,; New York: 1988
2
Springer TA.
Adhesion receptors of the immune system. Nature 1990; 346: 425-434
3
Osborn L.
Leukocyte adhesion to endothelium in inflammation. Cell 1990; 62: 3-6
4
Lasky LA,
Singer MS,
Yednock TA,
Dowbenko D,
Fennie C,
Rodriguez H,
Nguyen T,
Stachel S,
Rosen SD.
Cloning of a lymphocyte homing receptor reveals a lectin domain. Cell 1989; 56: 1045-1055
5
Siegelman MH,
van de Rijn M,
Weissman IL.
Mouse lymph node homing receptor cDNA clone encodes a glycoprotein revealing tandem interaction domains. Science 1989; 243: 1165-1172
6
Bevilacqua MP,
Stengelin S,
Gimbrone Jr MA,
Seed B.
Endothelial leukocyte adhesion molecule 1: an inducible receptor for neutrophils related to complement regulatory proteins and lectins. Science 1989; 243: 1160-1165
7
Johnston GI,
Cook RG,
McEver RP.
Cloning of GMP-140, a granule membrane protein of platelets and endothelium: sequence similarity to proteins involved in cell adhesion and inflammation. Cell 1989; 56: 1033-1044
88
Tedder TF,
Isaacs CM,
Ernst TJ,
Demetri GD,
Adler DA,
Disteche CM.
Isolation and chromosomal localization of cDNAs encoding a novel human lymphocyte cell surface molecule, LAM-1. Homology with the mouse lymphocyte homing receptor and other human adhesion proteins. J Exp Med 1989 170. 123-133
9
Stoolman LM.
Adhesion molecules controlling lymphocyte migration. Cell 1989; 56: 907-910
10
Drickamer K.
Two distinct classes of carbohydrate-recognition domains in animal lectins. J Biol Chem 1988; 263: 9557-9560
11
Hourcade D,
Holers VM,
Atkinson JP.
The regulators of complement activation (RCA) gene cluster. In: Advances in Immunology, Volume 45
Dixon FJ.
(ed). Academic Press; New York: 1989: 381-416
12
Bevilacqua MP,
Pober JS,
Mendrick DL,
Cotran RS,
Gimbrone Jr. MA.
Identification of an inducible endothelial-leukocyte adhesion molecule. Proc Natl Acad Sci USA 1987; 84: 9238-9242
13
Johnston GI,
Kurosky A,
McEver RP.
Structural and biosynthetic studies of the granule membrane protein, GMP-140, from human platelets and endothelial cells. J Biol Chem 1989; 264: 1816-1823
14
Siegelman M,
Bond MW,
Gallatin WM,
St John T,
Smith HT,
Fried VA,
Weissman IL.
Cell surface molecule associated with lymphocyte homing is a ubiquitinated branched-chain glycoprotein. Science 1986; 231: 823-829
15
Ord DC,
Ernst TJ,
Zhou L-J,
Rambaldi A,
Spertini O,
Griffin J,
Tedder TF.
Structure of the gene encoding the human leukocyte adhesion molecule-1 (TQ1, Leu-8) of lymphocytes and neutrophils. J Biol Chem 1990; 265: 7760-7767
16
Johnston GI,
Bliss GA,
Newman PJ,
McEver RP.
Structure of the human gene encoding GMP-140, a member of the selectin family of adhesion receptors for leukocytes. J Biol Chem 1990; 265: 21381-21385
17
Collins T,
Williams A,
Johnston GI,
Kin J,
Eddy R,
Gimbrone Jr MA,
Bevilacqua MP.
Structure and chromosomal location of the gene for endothelial-leukocyte adhesion molecule. J Biol Chem 1991 (in press).
18
Patthy L.
Intron-dependent evolution: preferred types of exons and introns. FEBS Lett 1987; 214: 1-7
19
Watson ML,
Kingsmore SF,
Johnston GI,
Siegelman MH,
Le Beau MM,
Lemons RS,
Bora NS,
Howard TA,
Weissman IL,
McEver RP,
Seldin MF.
Genomic organization of the selectin family of leukocyte adhesion molecules on human and mouse chromosome 1. J Exp Med 1990; 172: 263-272
20
Yednock TA,
Rosen SD.
Lymphocyte homing. In: Advances in Immunology, Vol. 44
Dixon FJ.
(ed). Academic Press; New York: 1989: 313-378
21
Gallatin WM,
Weissman IL,
Butcher EC.
A cell surface molecule involved in organ-specific homing of lymphocytes. Nature 1983; 304: 30-34
22
Tedder TF,
Penta AC,
Levine HB,
Freedman AS.
Expression of the human leukocyte adhesion molecule, LAM 1. Identy with the TQ1 and Leu-8 differentiation antigens. J Immunol 1990 144. 532-540
23
Watson SR,
Imai Y,
Fennie C,
Geoffroy JS,
Rosen SD,
Lasky LA.
A homing receptor-IgG chimera as a probe for adhesive ligands of lymph node high endothelial venules. J Cell Biol 1990; 110: 2221-2229
24
Lweinsohn DM,
Bargatze RF,
Butcher EC.
Leukocyte-endothelial cell recognition: evidence of a common molecular mechanism shared by neutrophils, lymphocytes, and other leukocytes. J Immunol 1987; 138: 4313-4321
25
Jutila MA,
Rott L,
Berg EL,
Butcher EC.
Function and regulation of the neutrophil Mel-14 antigen in vivo: comparison , with LFA-1 and Mac-1. J Immunol 1989; 143: 3318-3324
26
Smith CW,
Kishimoto TK,
Abbassi O,
Mclntire LV,
Anderson DC.
Human Mel-14 antigen contributes to the CD11/CD 18-independent adhesion of neutrophils to endothelial cells. FASEB J 1990; 4 (07) A2186 (abstr).
27
Bevilacqua MP,
Pober JS,
Wheeler ME,
Cotran RS,
Gimbrone Jr. MA.
Interleukin 1 acts on cultured human vascular endothelium to increase the adhesion of polymorphonuclear leukocytes, monocytes, and related leukocyte cell lines. J Clin Invest 1985; 76: 2003-2011
28
Cotran RS,
Gimbrone Jr MA,
Bevilacqua MP.
Mendrick DL, Pober JS. Induction and detection of a human endothelial activation antigen in vivo. J Exp Med 1986; 164: 661-666
29
Hession C,
Osborn L,
Goff D,
Chi-Rosso G,
Vassallo C,
Pasek M,
Pittack C,
Tizard R,
Goelz S,
McCarthy K,
Hopple S,
Lobb R.
Endothelial leukocyte adhesion molecule 1: direct expression cloning and functional interactions. Proc Natl Acad Sci USA 1990; 87: 1673-1677
30
Stenberg PE,
McEver RP,
Shuman MA,
Jacques YV,
Bainton DF.
A platelet alpha-granule membrane protein (GMP-140) is expressed on the plasma membrane after activation. J Cell Biol 1985; 101: 880-886
31
Berman CL,
Yeo EL,
Wencel-Drake JD,
Furie BC,
Ginsberg MH,
Furie B.
A platelet alpha granule membrane protein that is associated with the plasma membrane after activation. J Clin Invest 1986; 78: 130-137
32
Hattori R,
Hamilton KK,
Fugate RD,
McEver RP,
Sims PJ.
Stimulated secretion of endothelial von Willebrand factor is accompanied by rapid redistribution to the cell surface of the intracellular granule membrane protein GMP-140. J Biol Chem 1989; 264: 7768-7771
33
Bonfanti R,
Furie BC,
Furie B,
Wagner DD.
PADGEM (GMP 140) is a component of Weibel-Palade bodies of human endothelial cells. Blood 1989; 73: 1109-1112
34
McEver RP,
Beckstead JH,
Moore KL,
Marshall-Carlson L,
Bainton DF.
GMP-140, a platelet alpha-granule membrane protein, is also synthesized by vascular endothelial cells and is localized in Weibel-Palade bodies. J Clin Invest 1989; 84: 92-99
35
Knapp W,
Dorken B,
Rieber P,
Schmidt RE,
Stein H,
von dem Borne AEKr.
CD Antigens, 1989. Blood 1989; 74: 1148-1150
36
McEver RP,
Martin MN.
A monoclonal antibody to a membrane glycoprotein binds only to activated platelets. J Biol Chem 1984; 259: 9799-9804
37
Hsu-Lin S-C,
Berman CL,
Furie BC,
August D,
Furie B.
A platelet membrane protein expressed during platelet activation and secretion. Studies using a monoclonal antibody specific for thrombin-activated platelets. J Biol Chem 1984 259. 9121-9126
38
George JN,
Pickett EB,
Saucerman S,
McEver RP,
Kunicki TJ,
Kieffer N,
Newman PJ.
Platelet surface glycoproteins. Studies on resting and activated platelets and platelet membrane microparticles in normal subjects, and observations in patients during adult respiratory distress syndrome and cardiac surgery. J Clin Invest 1986; 78: 340-348
39
Geng J-G,
Bevilacqua MP,
Moore KL,
McIntyre TM,
Prescott SM,
Kim JM,
Bliss GA,
Zimmerman GA,
McEvere RP.
Rapid neutrophil adhesion to activated endothelium mediated by GMP-140. Nature 1990; 343: 757-760
40
Larsen E,
Celi A,
Gilbert GE,
Furie BC,
Erban JK,
Bonfanti R,
Wagner DD,
Furie B.
PADGEM protein: a receptor that mediates the interaction of activated platelets with neutrophils and monocytes. Cell 1989; 59: 305-312
41
Hamburger SA,
McEver RP.
GMP-140 mediates adhesion of stimulated platelets to neutrophils. Blood 1990; 75: 550-554
42
Moore KL,
Varki A,
McEver RP.
GMP-140 binds to a glycoprotein receptor on human neutrophils: evidence for a lectin-like interaction. J Cell Biol 1991; 112: 491-499
43
Henry RL.
Leukocytes and thrombosis. Thromb Diath Haemorrh 1961; 13: 35-46
44
Issekutz AC,
Ripley M,
Jackson JR.
Role of neutrophils in the deposition of platelets during acute inflammation. Lab Invest 1983; 49: 716-724
45
Gamble JR,
Skinner MP,
Bemdt MC,
Vadas MA.
Prevention of activated neutrophil adhesion to endothelium by soluble adhesion protein GMP 140. Science 1990; 249: 414-417
46
Yednock TA,
Stoolman LM,
Rosen SD.
Phosphomannosyl-derivitized beads detect a receptor involved in lymphocyte homing. J Cell Biol 1987; 104: 713-723
47
Bowen BR,
Fennie C,
Lasky LA.
The Mel 14 antibody binds to the lectin domain of the murine peripheral lymph node homing receptor. J Cell Biol 1990; 110: 147-153
48
Stoolman LM,
Tenforde TS,
Rosen SD.
Phosphomannosyl receptors may participate in the adhesive interaction between lymphocytes and high endothelial venules. J Cell Biol 1984; 99: 1535-1540
49
Rosen SD,
Singer MS,
Yednock TA,
Stoolman LM.
Involvement of sialic acid on endothelial cells in organ-specific lymphocyte recirculation. Science 1985; 228: 1005-1007
50
Siegelman MH,
Cheng IC,
Weissman IL,
Wakeland EK.
The mouse lymph node homing receptor is identical with the lymphocyte cell surface marker Ly-22: Role of the EGF domain in endothelial binding. Cell 1990; 61: 611-622
51
Kurosawa S,
Stearns DJ,
Jackson KW,
Esmon CT.
A 10-kDa cyanogen bromide fragment from the epidermal growth factor homology domain of rabbit thrombomodulin contains the primary thrombin binding site. J Biol Chem 1988; 263: 5993-5996
52
Appella E,
Robinson EA,
Ullrich SJ,
Stoppelli MP,
Corti A,
Cassani G,
Blasi F.
The receptor-binding sequence of urokinase. J Biol Chem 1987; 262: 4437-4440
53
Ichinose A,
McMullen BA,
Fujikawa K,
Davie EW.
Amino acid sequence of the b subunit of human factor XIII, a protein composed of ten repetitive segments. Biochemistry 1986; 25: 4633-4638
54
Kishimoto TK,
Larson RS,
Corbi AL,
Dustin ML,
Staunton DE,
Springer TA.
The leukocyte integrins. In: Advances in Immunology, Vol. 46
Dixon FJ.
(ed). Academic Press; New York: 1989: 149-182
55
Shattil SJ,
Hoxie JA,
Cunningham M,
Brass LF.
Changes in the platelet membrane glycoprotein Ilb-IIIa complex during platelet activation. J Biol Chem 1985; 260: 11107-11114
56
Lo SK,
Van Seventer GA,
Levin SM,
Wright SD.
Two leukocyte receptors (CDlla/CD18 and CDllb/CD18) mediate transient adhesion to endothelium by binding to different ligands. J Immunol 1989; 143: 3325-3329
57
Springer TA.
The LFA-1, Mac-1 glycoprotein family and its deficiency in an inherited disease. Fed Proc 1985; 44: 2660-2663
58
Zimmerman GA,
McIntyre TM,
Mehra M,
Prescott SM.
Endothelial cell-associated platelet-activating factor: a novel mechanism for signaling intercellular adhesion. J Cell Biol 1990; 110: 529-540
59
Carveth HJ,
Bohnsack JF,
McIntyre TM,
Baggiolini M,
Prescott SM,
Zimmerman GA.
Neutrophil activating factor (NAF) induces polymorphonuclear leukocyte adherence to endothelial cells and to subendothelial matrix proteins. Biochem Biophys Res Commun 1989; 162: 387-393
60
Osborn L,
Hession C,
Tizard R,
Vassallo C,
Luhowskyi S,
Chi-Rosso G,
Lobb R.
Direct expression cloning of vascular cell adhesion molecule 1, a cytokine-induced endothelial protein that binds to lymphocytes. Cell 1989; 59: 1203-1211
61
Rice GE,
Munro JM,
Bevilacqua MP.
Inducible cell adhesion molecule 110 (INCAM-110) is an endothelial receptor for lymphocytes: a CD ll/CD 18-independent adhesion mechanism. J Exp Med 1990; 171: 1369-1374
62
Elices MJ,
Osborn L,
Takada Y,
Crouse C,
Luhowskyi S,
Hemler ME,
Lobb RR.
VCAM-1 on activated endothelium interacts with the leukocyte integrin VLA-4 at a site distinct from the VLA-4/fibronec-tin binding site. Cell 1990; 60: 577-584
63
Holzmann B,
McIntyre BW,
Weissman IL.
Identification of a murine Peyer’s patch-specific lymphocyte homing receptor as an integrin molecule with an alpha chain homologous to human VLA-4 alpha. Cell 1989; 56: 37-46
64
Mullane KM,
Westlin W,
Kraemer R.
Activated neutrophils release mediators that may contribute to myocardial injury and dysfunction associated with ischemia and reperfusion. Ann N Y Acad Sci 1988; 524: 103-121
65
Harris Jr. ED.
Rheumatoid arthritis: pathophysiology and implications for therapy. N Engl J Med 1990; 322: 1277-89
66
Simon RH,
Ward PA.
Adult respiratory distress syndrome. In: Inflammation: Basic Principles and Clinical Correlates
Gallin JI,
Goldstein IM,
Synderman R.
(eds). Raven Press, Ltd; New York: 1988: 815-827
67
Vedder NB,
Winn RK,
Rice CL,
Chi EY,
Arfors K-E,
Harlan JM.
A monoclonal antibody to the adherence-promoting leukocyte glycoprotein, CD 18, reduces organ injury and improves survival from hemorrhagic shock and resuscitation in rabbits. J Clin Invest 1988; 81: 939-944
68
Simpson PJ,
Todd III RF,
Fantone JC,
Mickelson JK,
Griffin JD,
Lucchesi BR.
Reduction of experimental canine myocardial reperfusion injury by a monoclonal antibody (anti-Mol, anti-CDllb) that inhibits leukocyte adhesion. J Clin Invest 1988; 81: 624-629
69
Hattori R,
Hamilton KK,
McEver RP,
Sims PJ.
Complement proteins C5b-9 induce secretion of high molecular weight multimers of endothelial von Willebrand factor and translocation of granule membrane protein GMP-140 to the cell surface. J Biol Chem 1989; 264: 9053-9060
70
Wiedmer T,
Ando B,
Sims PJ.
Complement C5b-9-stimulated platelet secretion is associated with a Ca2+ -initiated activation of cellular protein kinases. J Biol Chem 1987; 262: 13674-13681
71
Patel KD,
Zimmerman GA,
Prescott SM,
McEver RP,
McIntyre TM.
Oxygen radicals induce human endothelial cells to express GMP-140 and bind neutrophils. J Cell Biol 1991 (in press).
72
Esmon CT.
The roles of protein C and thrombomodulin in the regulation of blood coagulation. J Biol Chem 1989; 264: 4743-4746
73
Henson PM.
Interactions between neutrophils and platelets. Lab Invest 1990; 62: 391-393
74
Silverstein RL,
Nachman RL.
Thrombospondin binds to monocytes-macrophages and mediates platelet-monocyte adhesion. J Clin Invest 1987; 79: 867-874
75
Hakomori S.
Tumor-associated carbohydrate antigens. Annu Rev Immunol 1990; 2: 103-126
76
Rice GE,
Bevilacqua MP.
An inducible endothelial cell surface glycoprotein mediates melanoma adhesion. Science 1989; 246: 1303-1306
77
Bargatze RF,
Wu NW,
Weissman IL,
Butcher EC.
High endothelial venule binding as a predictor of the dissemination of passaged murine lymphomas. J Exp Med 1987; 166: 1125-1131