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Targeted Antibody Blocking by a Dual-Functional Conjugate of Antigenic Peptide and Fc-III Mimetics (DCAF)
Published on: September 17, 2019
Inhibition of CD40-CD154 costimulatory pathway by a cyclic peptide targeting CD154
Ilaria Deambrosis1, Sara Lamorte, Fulvia Giaretta
1Cattedra di Nefrologia, Dipartimento di Medicina Interna and Centro Ricerca Medicina Sperimentale (CeRMS), Università di Torino, Turin, Italy.
Insights
Researchers developed a novel cyclic hepta-peptide, 4.10, that inhibits the CD40-CD154 pathway without causing platelet activation. This peptide effectively blocks B cell activation and angiogenesis, offering a safer alternative to antibody-based therapies for immune-mediated diseases.
Area of Science:
- Immunology
- Molecular Biology
- Biotechnology
Background:
- The CD40-CD154 interaction is crucial in immune responses and targeted in treating immune-mediated diseases.
- Antibody-based inhibition of CD40-CD154 can cause thrombotic side effects due to platelet activation.
- Novel strategies are needed to safely interfere with the CD40-CD154 pathway.
Purpose of the Study:
- To identify and characterize non-antibody inhibitors of the CD40-CD154 interaction.
- To develop a peptide-based therapeutic agent that blocks CD40-CD154 signaling without inducing platelet activation.
- To evaluate the efficacy of the identified peptide in inhibiting B cell activation and angiogenesis.
Main Methods:
- Phage display biopanning was used to select peptides specific for human CD154 (hCD154).
- Cyclic hepta-peptides were synthesized and characterized for binding affinity and specificity to hCD154.
- The peptide's ability to inhibit CD40-CD154 interaction, B cell activation, and angiogenesis was assessed in vitro and in vivo.
- Platelet activation assays were performed to compare the peptide with anti-CD154 monoclonal antibodies.
Main Results:
- A cyclic hepta-peptide, 4.10 (CLPTRHMAC), was identified that specifically binds to the active site of hCD154.
- Peptide 4.10 effectively inhibited CD40-dependent B lymphocyte activation, including co-stimulatory molecule expression and Ig isotype switching.
- The peptide demonstrated anti-angiogenic properties by inhibiting endothelial cell motility and in vivo angiogenesis.
- Unlike anti-CD154 monoclonal antibodies, peptide 4.10 did not induce human platelet activation or aggregation.
Conclusions:
- A cyclic hepta-peptide, 4.10, has been identified as a potent inhibitor of the CD40-CD154 pathway.
- Peptide 4.10 effectively blocks key biological effects of CD40 stimulation, including B cell activation and angiogenesis.
- This peptide represents a promising, safer alternative to antibody-based therapies for immune-mediated diseases due to its lack of platelet-activating properties.
Abstract:
Disruption of the CD40-CD154 interaction was found to be effective in the prevention and treatment of several immune-mediated diseases. The antibody-based strategy of inhibition was in humans limited by platelet activation leading to thrombotic effects. Other strategies different from antibody technology may be useful to create tools to interfere with CD40-CD154 pathway. In the present study, we selected and characterized from a phage display library, cyclic hepta-peptides specific for human CD154 through biopanning against plate-immobilized recombinant hCD154-muCD8. Nine phage clones were selected for the ability to bind CD154 expressed on the surface of J558L cells transfected with human CD154. From the nine selected phage clones, we obtained seven different amino acidic sequences, and the corresponding hepta-peptides rendered cyclic by two cysteines were synthesized. All the peptides specifically bound CD154 expressed on J558L. However, only the peptide 4.10 (CLPTRHMAC) was found to recognize the active binding site of CD154, as it competed with the blocking anti-CD154 antibody. When changes in the amino acid composition were introduced in the sequence of 4.10 peptide, the binding to CD154 was abrogated, suggesting that the amino acid sequence was critical for its specificity. This peptide was found to inhibit the CD40-CD154 interaction, preventing CD40-dependent activation of B lymphocytes in vitro as it was able, as the blocking anti-human CD154 mAb, to prevent the expression of CD80 and CD86 costimulatory molecules and switching of Ig isotype induced by CD154. Moreover, the peptide 4.10 inhibited the in vitro endothelial cell motility and organization into capillary-like structures, and the in vivo angiogenesis of human umbilical cord-derived endothelial cells implanted in Matrigel in severe combined immunodeficiency mice. In vitro studies on platelet activation demonstrated that the 4.10 peptide, at variance of the anti-CD154 mAb, was unable to prime human platelet activation and aggregation. In conclusion, we identify a cyclic hepta-peptide able to displace the binding of human CD154 to CD40 expressed on cell surface and to abrogate some biological effects related to the CD40 stimulation, such as B cell activation and endothelial triggered angiogenesis.
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