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Published on: June 2, 2021
Monoclonal Antibody Targeting the CD154 Cleavage Site Inhibits CD40-Dependent and -Independent Cleavage of CD154 from
Suzanne Salti1, Loubna Al-Zoobi1, Youssef Darif1
1Laboratoire d'Immunologie Cellulaire et Moléculaire, Centre de Recherche du Centre Hospitalier de l'Université de Montreal, Montreal, Quebec, Canada.
Insights
Researchers developed Clone 8 mAb, an antibody that prevents the cleavage of CD154 (also known as CD40 ligand) from cell surfaces. This preserves CD154's function, potentially enhancing CD40-induced responses in inflammatory diseases.
Area of Science:
- Immunology
- Molecular Biology
- Biochemistry
Background:
- Soluble CD154 (sCD154) is found at high levels in inflammatory conditions, resulting from the cleavage of membrane-bound CD154.
- Cleavage occurs between glutamic acid 112 (E112) and methionine 113 (M113), affecting CD154's biological function.
- Previous research showed that preventing this cleavage increases CD154's biological activity.
Purpose of the Study:
- To develop therapeutic tools that inhibit CD154 cleavage from the cell surface.
- To generate and characterize monoclonal antibodies (mAbs) targeting human CD154.
Main Methods:
- Generation of a panel of anti-human CD154 mAbs.
- Testing mAb binding to wild-type and mutated CD154 (E112A/M113A).
- Assessing the effect of Clone 8 mAb on CD154 cleavage from cell surfaces.
Main Results:
- Clone 8 mAb specifically recognized cell-surface CD154 but not the mutated E112/M113 form.
- Clone 8 mAb did not interfere with sCD154 binding to CD40.
- Treatment with Clone 8 mAb completely inhibited both CD40-dependent and -independent CD154 cleavage.
Conclusions:
- Clone 8 mAb is an effective inhibitor of CD154 release from cells.
- This antibody maintains CD154 on the cell surface, potentially increasing its potency.
- This represents an innovative therapeutic strategy for enhancing CD40-induced responses.
Abstract:
In addition to the membrane-bound molecule, soluble CD154 (sCD154) is also detected at high levels in the medium of activated T cells and platelets and in the serum of patients suffering from different inflammatory diseases. This sCD154 is the result of cleavage of the full-length molecule between the glutamic acid residue at position 112 (E112) and methionine at position 113 (M113) and can be derived from the intracellular milieu and from cleavage of cell surface molecules. We have recently reported that substitution of both E112 and M113 by alanine inhibits intracellular and CD40-induced membrane cleavage of CD154 and procures to CD154 an increased biological function as compared with cleavable CD154. Thus, in this study, and in the aim of developing tools inhibiting cleavage of CD154 from the cell surface, we generated a panel of anti-human CD154 mAbs. One of the derived mAbs that did not alter the binding of sCD154 to CD40, named in this study Clone 8 mAb, totally lost its binding activity against cells expressing CD154 mutated at its E112 and M113 residues. Treatment with Clone 8 mAb was shown to completely abolish CD40-dependent and -independent cleavage of CD154 from the cell surface. Our study is highlighting the development and characterization of an innovative therapeutic tool capable of inhibiting the release/cleavage of CD154 from cells and thus maintaining its availability on the cell surface and the high probably of increasing its potency as an activator of CD40-induced responses.
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