A site involving the "hybrid" and PSI homology domains of GPIIIa (beta 3-integrin subunit) is a common target for antibodies associated with quinine-induced immune thrombocytopenia.

نویسندگان

  • Julie A Peterson
  • Contessa E Nyree
  • Peter J Newman
  • Richard H Aster
چکیده

Drug-dependent antibodies (DDAbs) can cause the precipitous destruction of platelets if a patient is exposed to the drug for which the antibodies are specific. The molecular character of the epitopes recognized is poorly understood, and the mechanism by which drugs promote tight binding of these antibodies to platelet glycoproteins without linking covalently to protein or antibody is not yet known. We studied a group of quinine-dependent antibodies that react with human glycoprotein IIIa (GPIIIa; beta3-integrin subunit) but fail to recognize rat GPIIIa, despite close homology between the 2 proteins. By characterizing reactions of these antibodies with human/rat GPIIIa chimeras and selected GPIIIa mutants, we found that each of 3 quinine-dependent antibodies requires a 17-amino acid sequence in the newly recognized "hybrid" and PSI homology domains of GPIIIa for drug-dependent binding. Disulfide bonds are required to stabilize the target epitope. Monoclonal antibody AP3, which blocks the binding of these DDAbs to GPIIIa, was found to require a more limited stretch of the same peptide for its reaction with the glycoprotein. The findings suggest this region of GPIIIa may be a favored target for quinine-dependent antibodies and may provide a basis for further studies to elucidate the molecular basis of glycoprotein-drug-antibody interaction.

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منابع مشابه

A SITE INVOLVING THE “HYBRID” AND PSI HOMOLOGY DOMAINS OF GPIIIa (β3 INTEGRIN SUBUNIT) IS A COMMON TARGET FOR ANTIBODIES ASSOCIATED WITH QUININE-INDUCED IMMUNE THROMBOCYTOPENIA Short title: Target for quinine-induced antibodies

Drug-dependent antibodies (DDAbs) can cause precipitous destruction of platelets when a patient is exposed to the drug for which they are specific. The molecular character of the epitopes recognized is poorly understood and the mechanism by which drugs promote tight binding of these antibodies to platelet glycoproteins without linking covalently to protein or antibody is not yet known. We studi...

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A hypothesis that explains the heterogeneity of drug-induced immune thrombocytopenia.

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Fine specificity of drug-dependent antibodies reactive with a restricted domain of platelet GPIIIA.

Drug-induced immune thrombocytopenia is caused by drug-dependent antibodies (DDAbs) that bind tightly to platelet glycoproteins only when drug is present. How drugs mediate this interaction is not yet resolved. Several studies indicate that sites recognized by DDAbs tend to cluster in specific structural domains, suggesting they may recognize a limited number of distinct epitopes. To address th...

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HEMOSTASIS, THROMBOSIS, AND VASCULAR BIOLOGY Fine specificity of drug-dependent antibodies reactive with a restricted domain of platelet GPIIIA

Drug-induced immune thrombocytopenia is caused by drug-dependent antibodies (DDAbs) that bind tightly to platelet glycoproteins only when drug is present. How drugs mediate this interaction is not yet resolved. Several studies indicate that sites recognized by DDAbs tend to cluster in specific structural domains, suggesting they may recognize a limited number of distinct epitopes. To address th...

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Structural basis for quinine-dependent antibody binding to platelet integrin aIIbb3

• Quinine binds to quininedependent antibodies first and causes CDR loop reconfiguration. • A hybrid paratope consisting of quinine and reconfigured CDR recognizes its target epitope. Drug-induced immune thrombocytopenia (DITP) is caused by antibodies that react with specific platelet-membrane glycoproteinswhen the provokingdrug is present.More than 100 drugs have been implicated as triggers fo...

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عنوان ژورنال:
  • Blood

دوره 101 3  شماره 

صفحات  -

تاریخ انتشار 2003