A NOVEL HLA-A DETERMINANT RECOGNIZED BY A CYTOTOXIC HUMAN HYBRIDOMA IGG1 MONOCLONAL-ANTIBODY (TRJ14)
TISSUE ANTIGENS
Authors: GE, J; BRATLIE, A; HANNESTAD, K
Abstract
TrJ14 is a cytotoxic human IgG1 lambda hybridoma mAb that recognized a novel HLA-A epitope expressed by lymphoblastoid B cells that are homo- or heterozygous for A2, A3, A11, A30, A31, A33, A68 and A69. Based on these results, the HLA type of cell line TEM (10w9057) was retyped as A66. When peripheral blood T cells isolated freshly from 265 HLA-typed normal individuals served as targets, TrJ14 killed cells expressing two TrJ14-positive HLA-A alleles, as well as the majority of cells having one TrJ14-positive and one TrJ14-negative HLA-A antigen. However, TrJ14 failed to recognize or reacted weakly with most HLA-A2 and A3 heterozygous normal T cells when A2 or A3 was coexpressed together with a TrJ14-negative antigen. The serological reactivity of TrJ14 correlated with the amino acid valine and aspartic acid at positions 76 and 77 of the alpha 1-domain helix. These amino acids were shared exclusively by all the identified TrJ14(+) alleles.
Molecular structure of human GM-CSF in complex with a disease-associated anti-human GM-CSF autoantibody and its potential biological implications
BIOCHEMICAL JOURNAL
Authors: Blech, Michaela; Seeliger, Daniel; Kistler, Barbara; Bauer, Margit M. T.; Hafner, Mathias; Hoerer, Stefan; Zeeb, Markus; Nar, Herbert; Park, John E.
Abstract
Polyclonal autoantibodies against human GM-CSF (granulocyte/macrophage colony-stimulating factor) are a hallmark of PAP (pulmonary alveolar proteinosis) and several other reported autoimmune diseases. MB007 is a high-affinity anti-(human GMCSF) autoantibody isolated from a patient suffering from PAP which shows only modest neutralization of GM-CSF bioactivity. We describe the first crystal structure of a cytokine-directed human IgG1 lambda autoantibody-binding fragment (Fab) at 1.9 angstrom (1 angstrom = 0.1 nm) resolution. Its CDR3-H substantially differs from all VH7 germline IgG1 structures reported previously. We derive a reliable model of the antigen-autoantibody complex by using NMR chemical shift perturbation data in combination with computational methods. Superposition of the modelled complex structure with the human GM-CSF-GM-CSF ternary receptor complex reveals only little overlap between receptor and Fab when bound to GM-CSF. Our model provides a structural basis for understanding the mode of action of the MB007 autoantibocly.