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1.
Cytokine ; 12(11): 1620-9, 2000 Nov.
Article in English | MEDLINE | ID: mdl-11052812

ABSTRACT

We have generated two mAbs, 6G4.2.5 and A5.12.14, that are similarly capable of neutralizing the biologic activity of wild-type IL-8. To characterize these antibodies further, their reactivity against a series of engineered IL-8 monomer and dimer variants was examined using a neutrophil degranulation assay. While 6G4.2.5 was found to block effectively the biologic activity of all variants regardless of their dimerization status, the results for A5.12.14 differed dramatically. A5.12.14 fully inhibited the agonist activity of one of the monomer variants, partially blocked the activity of another, and had no effect on the activity of two other variants. These results suggested that the binding epitope of A5.12.14 was being affected by the particular amino acid substitutions introduced into the dimer interface region of the variants to disfavor dimerization. If A5.12.14 indeed binds to the dimer interface region of IL-8, it could be predicted that this mAb would be unable to inhibit the activity of dimeric IL-8. This was confirmed in studies which showed that A5.12.14 had no demonstrable effect on the activity of a constitutively dimeric IL-8 variant. These studies represent the first example of a mAb specific for the dimerization status of IL-8.


Subject(s)
Antibodies, Monoclonal , Dimerization , Interleukin-8/metabolism , Amino Acids/chemistry , Animals , Calcium/metabolism , Dose-Response Relationship, Drug , Enzyme-Linked Immunosorbent Assay , Epitopes , Glucuronidase/metabolism , Humans , Immunoglobulin G/metabolism , Mice , Neutrophils/enzymology , Protein Binding
2.
J Immunol ; 163(2): 766-73, 1999 Jul 15.
Article in English | MEDLINE | ID: mdl-10395669

ABSTRACT

The human IFN-alpha receptor (hIFNAR) is a complex composed of at least two chains, hIFNAR1 and hIFNAR2. We have performed a structure-function analysis of hIFNAR2 extracellular domain regions using anti-hIFNAR2 mAbs (1D3, 1F3, and 3B7) and several type I human IFNs. These mAbs block receptor activation, as determined by IFN-stimulated gene factor 3 formation, and block the antiviral cytopathic effects induced by type I IFNs. We generated alanine substitution mutants of hIFNAR2-IgG and determined that regions of hIFNAR2 are important for the binding of these blocking mAbs and hIFN-alpha2/alpha1. We further demonstrated that residues E78, W101, I104, and D105 are crucial for the binding of hIFN-alpha2/alpha1 and form a defined protrusion when these residues are mapped upon a structural model of hIFNAR2. To confirm that residues important for ligand binding are indeed important for IFN signal transduction, we determined the ability of mouse L929 cells expressing hIFNAR2 extracellular domain mutants to mediate hIFN signal. hIFN-alpha8, previously shown to signal a response in L929 cells expressing hIFNAR1, was unable to signal in L929 cells expressing hIFNAR2. Transfected cells expressing hIFNAR2 containing mutations at residues E78, W101, I104, or D105 were unresponsive to hIFN-alpha2, but remained responsive to hIFN-beta. In summary, we have identified specific residues of hIFNAR2 important for the binding to hIFN-alpha2/1 and demonstrate that specific regions of the IFNAR interact with the subspecies of type I IFN in different manners.


Subject(s)
Amino Acids/metabolism , Interferon Type I/metabolism , Receptors, Interferon/metabolism , Signal Transduction/immunology , Amino Acid Substitution/genetics , Amino Acids/genetics , Amino Acids/immunology , Animals , Antibodies, Monoclonal/chemistry , Antibodies, Monoclonal/pharmacology , Binding Sites, Antibody/genetics , Binding, Competitive/genetics , Binding, Competitive/immunology , Cell Line , HeLa Cells , Humans , L Cells , Ligands , Membrane Proteins , Mice , Mice, Inbred BALB C , Models, Molecular , Protein Binding/genetics , Protein Binding/immunology , Receptor, Interferon alpha-beta , Receptors, Interferon/immunology , Receptors, Interferon/physiology , Signal Transduction/genetics , Transfection
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