To gain insight into region of the platelet GPIIb-IIIa complex involved in receptor biogenesis and function, we examined the biochemical properties of a defective GPIIb-IIIa complex from patient suffering from type II Glanzmann thrombasthenia. Flow cytometric as well as immunoblot analysis of patient platelets showed significantly reduced levels of GPIIb and GPIIIa compared with a normal control. Patient platelets, however, retained the ability to retract a fibrin clot. Sequence analysis of PCR-amplified platelet GPIIb mRNA revealed an Arg327-->His amino acid substitution between the second and third calcium-binding domains of the GPIIb heavy chain, a residue that is highly conserved among integrin alpha-subunits. The recombinant His327 form of GPIIb was found to be fully capable of associating with GPIIIa, therefore the role of the calcium-binding domains in intersubunit association was further examined by constructing amino-terminal segments of GPIIb that ended before the first, second, and third calcium-binding domains. All three fragments were found to associate with GPIIIa, demonstrating that the calcium-binding domains of GPIIb are not necessary for initial complex formation. Regions amino-terminal to the calcium-binding domains of GPIIb may play a heretofore unappreciated role in integrin subunit association.
D A Wilcox, C M Paddock, S Lyman, J C Gill, P J Newman
Title and authors | Publication | Year |
---|---|---|
Profiling the Genetic and Molecular Characteristics of Glanzmann Thrombasthenia: Can It Guide Current and Future Therapies?
A Nurden |
Journal of blood medicine | 2021 |
Glanzmann thrombasthenia: state of the art and future directions
AT Nurden, X Pillois, DA Wilcox |
Seminars in thrombosis and hemostasis | 2013 |
The regulation of integrin function by divalent cations
K Zhang, JF Chen |
Cell adhesion & migration | 2012 |
Platelet gene therapy improves hemostatic function for integrin IIb 3-deficient dogs
J Fang, ES Jensen, MK Boudreaux, LM Du, TB Hawkins, SB Koukouritaki, K Cornetta, DA Wilcox |
Proceedings of the National Academy of Sciences | 2011 |
Do Cell Junction Protein Mutations Cause an Airway Phenotype in Mice or Humans?
EH Chang, AA Pezzulo, J Zabner |
American journal of respiratory cell and molecular biology | 2011 |
An αIIb mutation in patients with Glanzmann thrombasthenia located in the N-terminus of blade 1 of the β-propeller (Asn2Asp) disrupts a calcium binding site in blade 6
W Mansour, Y Einav, H Hauschner, A Koren, U Seligsohn, N Rosenberg |
Journal of Thrombosis and Haemostasis | 2011 |
Are bone defects in rare patients with Glanzmann's thrombasthenia associated withITGB3orITGA2Bmutations?
AT Nurden, M Fiore, P Nurden, R Heilig, X Pillois |
Platelets | 2011 |
Novel mutations in GP IIb gene in Glanzmann's thrombasthenia from India
M Vijapurkar, K Ghosh, S Shetty |
Platelets | 2009 |
Diversity of Glanzmann thrombasthenia in southern India: 10 novel mutations identified among 15 unrelated patients
EJ Nelson, SC Nair, H Peretz, BS Coller, U Seligsohn, M Chandy, A Srivastava |
Journal of Thrombosis and Haemostasis | 2006 |
Three novel beta-propeller mutations causing Glanzmann thrombasthenia result in production of normally stable pro-alphaIIb, but variably impaired progression of pro-alphaIIbbeta3 from endoplasmic reticulum to Golgi
EJ Nelson, J Li, WB Mitchell, M Chandy, A Srivastava, BS Coller |
Journal of Thrombosis and Haemostasis | 2005 |
A naturally occurring mutation near the C terminus of the β-propeller of αIIb impair the transport of αIIbβ3 complexes from the endoplasmic reticulum to the Golgi apparatus
B Fu, X Yuan, F Chen, K Xia, G Fu |
Journal of Thrombosis and Haemostasis | 2005 |
Platelet Function Defect in a Thoroughbred Filly
MM Fry, NJ Walker, GM Blevins, KG Magdesian, F Tablin |
Journal of Veterinary Internal Medicine | 2005 |
A novel Phe171Cys mutation in integrin ��IIb causes Glanzmann thrombasthenia by abrogating ��IIb��3 complex formation
N Rosenberg, M Landau, J Luboshitz, G Rechavi, U Seligsohn |
Journal of Thrombosis and Haemostasis | 2004 |
Mutations in and near the second calcium-binding domain of integrin alphaIIb affect the structure and function of integrin alphaIIbbeta3
S Gidwitz, B Temple, GC 2nd |
Biochemical Journal | 2004 |
Human Integrin αvβ5: Homology Modeling and Ligand Binding
L Marinelli, KE Gottschalk, A Meyer, E Novellino, H Kessler |
Journal of Medicinal Chemistry | 2004 |
Gene therapy for platelet disorders: studies with Glanzmann's thrombasthenia
DA Wilcox, GC White |
Journal of Thrombosis and Haemostasis | 2003 |
Integrins, cations and ligands: making the connection
JP Xiong, T Stehle, SL Goodman, MA Arnaout |
Journal of Thrombosis and Haemostasis | 2003 |
Two novel mutations in the αIIb calcium-binding domains identify hydrophobic regions essential for αIIbβ3 biogenesis
WB Mitchell, JH Li, F Singh, AD Michelson, J Bussel, BS Coller, DL French |
Blood | 2003 |
Molecular basis of Glanzmann's Thrombasthenia and current strategies in treatment
S Bellucci, J Caen |
Blood Reviews | 2002 |
Dissociation between fibrinogen and fibrin interaction with platelets in patients with different subtypes of Glanzmann's thrombasthenia: studies in an ex vivo perfusion chamber model
P Hainaud, JP Brouland, P Andre, G Simoneau, CB Sollier, L Drouet, J Caen, S Bellucci |
British Journal of Haematology | 2002 |
Insights into integrin-ligand binding and activation from the first crystal structure
MJ Humphries |
Arthritis research | 2002 |
Molecular and genetic basis for thrombasthenic thrombopathia in Otterhounds
MK Boudreaux, JL Catalfamo |
American Journal of Veterinary Research | 2001 |
Platelet Integrin αIIbβ3-Ligand Interactions: What Can We Learn From the Structure?
T Kamata, Y Takada |
International Journal of Hematology | 2001 |
Demystified...adhesion molecule deficiencies
D Inwald, EG Davies, N Klein |
Molecular pathology : MP | 2001 |
Clinical, Biochemical, and Molecular Aspects of Glanzmann's Thrombasthenia in Humans and Dogs
MK Boudreaux, DL Lipscomb |
Veterinary pathology | 2001 |
A 1063GA mutation in exon 12 of glycoprotein (GP)IIb associated with a thrombasthenic phenotype: mutation analysis of [324E]GPIIb
J Tao, EG Arias-Salgado, C Gonzalez-Manchon, G Iruin, N Butta, MS Ayuso, R Parrilla |
British Journal of Haematology | 2000 |
A 1063G→A mutation in exon 12 of glycoprotein (GP)IIb associated with a thrombasthenic phenotype: mutation analysis of [324E]GPIIb
J Tao, EG Arias-Salgado, C González-Manchón, G Iruín, N Butta, MS Ayuso, R Parrilla |
British Journal of Haematology | 2000 |
Platelets
JN George |
The Lancet | 2000 |
The Adhesion Molecule FactsBook
CM Isacke, MA Horton |
The Adhesion Molecule FactsBook | 2000 |
Platelet Glycoprotein IIb/IIIa Receptors and Glanzmann’s Thrombasthenia
DL French, U Seligsohn |
Arteriosclerosis, thrombosis, and vascular biology | 2000 |
A naturally occurring mutation near the amino terminus of αIIb defines a new region involved in ligand binding to αIIbβ3
RB Basani, DL French, G Vilaire, DL Brown, F Chen, BS Coller, JM Derrick, TK Gartner, JS Bennett, M Poncz |
Blood | 2000 |
A Leu262Pro mutation in the integrin β3 subunit results in an αIIb-β3 complex that binds fibrin but not fibrinogen
CM Ward, AS Kestin, PJ Newman |
Blood | 2000 |
Handbook of Platelet Physiology and Pharmacology
GH Rao |
1999 | |
Molecular Genetic Analysis of a Compound Heterozygote for the Glycoprotein (GP) IIb Gene Associated With Glanzmann’s Thrombasthenia: Disruption of the 674-687 Disulfide Bridge in GPIIb Prevents Surface Exposure of GPIIb-IIIa Complexes
C González-Manchón, M Fernández-Pinel, EG Arias-Salgado, M Ferrer, MV Alvarez, S Garcı́a-Muñoz, MS Ayuso, R Parrilla |
Blood | 1999 |
Novel point mutations in the alphaIIb subunit (Phe289 Ser, Glu324 Lys and Gln747 Pro) causing thrombasthenic phenotypes in four Japanese patients
H Ambo, T Kamata, M Handa, Y Kawai, A Oda, M Murata, Y Takada, Y Ikeda |
British Journal of Haematology | 1998 |
Double heterozygosity of the GPIIb gene in a Swiss patient with Glanzmann's thrombasthenia
J Ruan, O Peyruchaud, L Alberio, GE Valles, K Clemetson, FC Bourre, AT Nurden |
British Journal of Haematology | 1998 |
Role of the α-subunit 326 GRV sequence in the surface expression of fibrinogen and vitronectin receptors
M Ferrer, MS Ayuso, N Butta, R Parrilla, C González-Manchón |
American journal of physiology. Cell physiology | 1998 |
Glycoprotein IIb Leu214Pro Mutation Produces Glanzmann Thrombasthenia With Both Quantitative and Qualitative Abnormalities in GPIIb/IIIa
CM Grimaldi, F Chen, C Wu, HJ Weiss, BS Coller, DL French |
Blood | 1998 |
A Gln747→Pro Substitution in the IIb Subunit Is Responsible for a Moderate IIbβ3Deficiency in Glanzmann Thrombasthenia
S Tadokoro, Y Tomiyama, S Honda, M Arai, N Yamamoto, M Shiraga, S Kosugi, Y Kanakura, Y Kurata, Y Matsuzawa |
Blood | 1998 |
R to Q Amino Acid Substitution in the GFFKR Sequence of the Cytoplasmic Domain of the Integrin IIb Subunit in a Patient With a Glanzmann’s Thrombasthenia-Like Syndrome
O Peyruchaud, AT Nurden, S Milet, L Macchi, A Pannochia, PF Bray, N Kieffer, F Bourre |
Blood | 1998 |
Truncation of the cytoplasmic domain of beta3 in a variant form of Glanzmann thrombasthenia abrogates signaling through the integrin alpha(IIb)beta3 complex
R Wang, SJ Shattil, DR Ambruso, PJ Newman |
Journal of Clinical Investigation | 1997 |
The biologic and clinical spectrum of Glanzmann's Thrombasthenia: implications of integrin αIIbβ3 for its pathogenesis
A Kato |
Critical Reviews in Oncology/Hematology | 1997 |
Hematologically Important Mutations: Glanzmann Thrombasthenia
DL French, BS Coller |
Blood Cells, Molecules, and Diseases | 1997 |
Defining Extracellular Integrin α-Chain Sites That Affect Cell Adhesion and Adhesion Strengthening without Altering Soluble Ligand Binding
C Pujades, R Alon, RL Yauch, A Masumoto, LC Burkly, C Chen, TA Springer, RR Lobb, ME Hemler |
Molecular biology of the cell | 1997 |
A Leu117 → Trp Mutation Within the RGD-Peptide Cross-Linking Region of β3 Results in Glanzmann Thrombasthenia by Preventing αIIbβ3 Export to the Platelet Surface
RB Basani, DL Brown, G Vilaire, JS Bennett, M Poncz |
Blood | 1997 |
The Human Integrin β3 Gene Is 63 kb and Contains a 5′-UTR Sequence Regulating Expression
CC Wilhide, Y Jin, Q Guo, L Li, SX Li, E Rubin, PF Bray |
Blood | 1997 |
Glanzmann thrombasthenia. Cooperation between sequence variants in cis during splice site selection
Y Jin, HC Dietz, RA Montgomery, WR Bell, I McIntosh, B Coller, PF Bray |
Journal of Clinical Investigation | 1996 |
Ligand binding and affinity modulation of integrins
EC Tozer, PE Hughes, JC Loftus |
Biochemistry and Cell Biology | 1996 |
Inherited Mutations within the Calcium-Binding Sites of the Integrin αIIbSubunit (Platelet Glycoprotein IIb)
DE Jackson, M Poncz, MT Holyst, PJ Newman |
European Journal of Biochemistry | 1996 |
Structural biology of glycoprotein IIb-IIIa
JS Bennett |
Trends in Cardiovascular Medicine | 1996 |
Effect of Mutagenesis of GPIIb Amino Acid 273 on the Expression and Conformation of the Platelet Integrin GPIIb-IIIa
MJ Kahn, T Kieber-Emmons, G Vilaire, R Murali, M Poncz, JS Bennett |
Biochemistry | 1996 |
Granulocyte adhesion molecules — structure/functionrelationships
I Dransfield |
Seminars in Cell Biology | 1995 |