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Updated: Jul 7, 2026

Measuring Composition of CD95 Death-Inducing Signaling Complex and Processing of Procaspase-8 in this Complex
Published on: August 2, 2021
Construction of optimized bispecific antibodies for selective activation of the death receptor CD95
Tanja Herrmann1, Ludger Grosse-Hovest, Tina Otz
1Department of Immunology, University of Tübingen, Tübingen, Germany.
Abstract:
We have previously reported that bispecific antibodies directed to different target antigens on lymphoma cells and to the death receptor CD95/Fas/Apo-1 selectively kill these cells, thus providing an attractive strategy for the selective stimulation of CD95 on the surface of tumor cells. Here, we further explore the general applicability of this approach under more stringent conditions using various bispecific antibodies directed to different target antigens on glioblastoma cells which express relatively low levels of CD95. We found that bispecific CD95 antibodies targeting the neuronal glial antigen-2 induce CD95-mediated apoptosis selectively in glioblastoma cells expressing this target antigen. A recombinant bispecific single-chain antibody was as effective as a chemically hybridized F(ab')(2) fragment with identical specificities. In contrast, a bispecific F(ab')(2) fragment binding to the epidermal growth factor receptor on the glioblastoma cells failed to induce apoptosis. This is most likely due to the exclusively unicellular binding of this particular fragment to target cells expressing both the epidermal growth factor receptor and CD95. If this type of binding in a cis configuration is favored by a particular bispecific antibody, rather than a bicellular binding in trans, effective cross-linking of CD95 does not occur and apoptosis is not induced. To facilitate bicellular binding in a trans configuration, we constructed a bispecific antibody directed to the extracellular matrix protein tenascin. As expected, this reagent was the most effective of all the antibodies tested. The presence of sensitizing reagents such as cycloheximide and various cytostatic drugs further enhanced antibody-mediated killing of the tumor cells. We believe that these results may point the way to a successful application of bispecific CD95 antibodies in experimental tumor therapy.
Insights
Bispecific CD95 antibodies targeting glioblastoma cells induce apoptosis. Antibodies targeting neuronal glial antigen-2 were effective, while those targeting epidermal growth factor receptor were not, highlighting the importance of binding configuration for tumor cell killing.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Bispecific antibodies targeting CD95 (Fas/Apo-1) can selectively kill lymphoma cells.
- Glioblastoma cells express low levels of CD95, posing a challenge for bispecific antibody therapy.
Purpose of the Study:
- To evaluate the efficacy of bispecific CD95 antibodies against glioblastoma cells under stringent conditions.
- To investigate the impact of antibody binding configuration (cis vs. trans) on CD95-mediated apoptosis induction.
Main Methods:
- Utilized various bispecific antibodies targeting different glioblastoma cell antigens and CD95.
- Assessed apoptosis induction in glioblastoma cells expressing target antigens.
- Compared efficacy of recombinant single-chain antibodies and chemically hybridized F(ab')(2) fragments.
- Investigated the role of sensitizing reagents like cycloheximide and cytostatic drugs.
Main Results:
- Bispecific CD95 antibodies targeting neuronal glial antigen-2 induced selective glioblastoma cell apoptosis.
- A recombinant bispecific single-chain antibody showed efficacy comparable to a hybridized F(ab')(2) fragment.
- Bispecific antibodies targeting epidermal growth factor receptor failed to induce apoptosis due to unicellular (cis) binding.
- Bispecific antibodies targeting tenascin facilitated bicellular (trans) binding and demonstrated superior efficacy.
- Sensitizing reagents enhanced antibody-mediated tumor cell killing.
Conclusions:
- Bispecific CD95 antibodies targeting specific antigens can effectively induce glioblastoma cell apoptosis.
- Bicellular (trans) binding is crucial for effective CD95 cross-linking and apoptosis induction.
- The design of bispecific antibodies, considering antigen targeting and binding mode, is critical for therapeutic success.
- Combination therapy with sensitizing agents may improve outcomes in experimental glioblastoma treatment.
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