Related Experiment Video
Updated: Aug 8, 2026

A High Throughput MHC II Binding Assay for Quantitative Analysis of Peptide Epitopes
Published on: March 25, 2014
Human CD30: structural implications from epitope mapping and modeling studies
Liying Dong1, Martin Hülsmeyer, Horst Dürkop
1Institut für Medizinische Immunologie, Universitätsklinikum Charité, Humboldt-Universität zu Berlin, Berlin, Germany.
Insights
CD30, a molecule upregulated on tumor cells like Hodgkin and Reed-Sternberg cells, was studied to map its epitopes. Understanding these CD30 epitopes aids in developing targeted immunotherapies and diagnostic tools.
Area of Science:
- Immunology
- Molecular Biology
- Structural Biology
Background:
- The CD30 molecule is a diagnostic marker and potential immunotherapy target due to its specific upregulation on tumor cells, such as Hodgkin and Reed-Sternberg (H-RS) cells.
- Mapping CD30 epitopes is crucial for designing effective anti-CD30 reagents for cancer therapy and diagnostics.
Purpose of the Study:
- To map the specific epitopes recognized by various monoclonal antibodies (mAbs) and a single-chain Fv fragment against the human CD30 molecule.
- To elucidate the structural organization of CD30 and its extracellular domain.
Main Methods:
- Utilized a peptide array approach with overlapping CD30-derived peptides to identify antibody binding sites.
- Employed molecular modeling to visualize epitope locations on the CD30 structure.
Main Results:
- Identified linear epitopes for mAbs Ber-H2, Ki-2, and the R4-4 fragment.
- Discovered a discontinuous epitope for mAb Ki-1, spanning two distinct regions of the CD30 molecule.
- Molecular modeling localized epitopes to exposed loop regions within the N-terminal domain of CD30.
Conclusions:
- The epitope mapping provides critical information for the development of novel anti-CD30 immunotherapies and diagnostic agents.
- The findings suggest a flower-like structure for the homotrimeric CD30 molecule, with its N- and C-terminal extracellular regions in close proximity.
Abstract:
The human CD30 molecule is expressed transiently at very low levels on intrafollicular and perifollicular T and B cell blasts in lymphoid tissues, but is specifically upregulated on certain tumor cells, e.g. Hodgkin and Reed-Sternberg (H-RS) cells. With its specific expression pattern and easy accessibility on the surface of H-RS cells CD30 is a valuable diagnostic marker and holds considerable promise as a target for in vivo immunotherapy. Knowledge of epitopes on the CD30 molecule is expected to facilitate the design of novel non-immunogenic anti-CD30 reagents. Therefore, we have mapped the epitopes of several monoclonal antibodies (mAb) applying a peptide array of overlapping CD30-derived peptides. For the mAb Ber-H2, two linear epitopes with identical sequence were found, while the mAb Ki-2 and the single chain Fv fragment R4-4 each recognized a single linear antigenic determinant, respectively. On the other hand, the mAb Ki-1 bound to a discontinuous epitope composed of two regions, one located near the N-terminus and the other near the membrane-spanning region of CD30. Using molecular modeling, it was possible to visualize the location of the epitopes on exposed loop regions of the molecule within the N-terminal domain. Finally, the results obtained with the mAb Ki-1 imply that the ends of the N- and C-terminal parts of the extracellular portion of CD30 are in close vicinity of each other, suggesting a flower-like structure for the membrane-bound homotrimeric CD30 molecule.
More Related Videos
09:53Using X-ray Crystallography, Biophysics, and Functional Assays to Determine the Mechanisms Governing T-cell Receptor Recognition of Cancer Antigens
Published on: February 6, 2017
12:09Use of Single Chain MHC Technology to Investigate Co-agonism in Human CD8+ T Cell Activation
Published on: February 28, 2019