Self-Associating Peptides for Modular Bifunctional Conjugation of Tetramer Macromolecules in Living Cells

Archive ouverte

Vigneron, Marc | Dietsch, Frank | Bianchetti, Laurent | Dejaegere, Annick | Nominé, Yves | Cordonnier, Agnes | Zuber, Guy | Chatton, Bruno | Donzeau, Mariel

Edité par CCSD ; American Chemical Society -

Monitoring the assembly of macromolecules to design entities with novel properties can be achieved either chemically creating covalent bonds or by noncovalent connections using appropriate structural motifs. In this report, two self-associating peptides (named K3 and E3) that originate from p53 tetramerization domain were developed as tools for highly specific and noncovalent heterotetramerization of two biomolecules. The pairing/coupling preferences of K3 and E3 were first evaluated by molecular modeling data and confirmed using circular dichroism spectroscopy, size-exclusion chromatography, and biological assays. Regardless of the moieties fused to K3 and E3, these two peptides self-assembled into dimers of dimers to form bivalent heterotetrameric complexes that proved to be extremely stable inside living cells. The benefits of the multivalency in terms of avidity, specificity, and expanded functional activity were strikingly revealed when the proliferating cell nuclear antigen (PCNA), which is essential for DNA replication, was targeted using a heterotetramer presenting both an antibody fragment against PCNA and a specific PCNA binder peptide. In vitro heterotetramerization of these two known PCNA ligands increased their binding efficiencies to PCNA up to 80-fold compared to the best homotetramer counterpart. In cellulo, the heterotetramers were able to efficiently inhibit DNA replication and to trigger cell death. Altogether, we demonstrate that these two biselective self-assembling peptidic domains offer a versatile noncovalent conjugation method that can be easily implemented for protein engineering

Suggestions

Du même auteur

A Fast Method for Analyzing Essential Protein Mutants in Human Cells

Archive ouverte | Dietsch, Frank | CCSD

International audience

Small p53 derived peptide suitable for robust nanobodies dimerization

Archive ouverte | Dietsch, Frank | CCSD

Bivalent VHHs have been shown to display better functional affinity compared with their monovalent counterparts. Bivalency can be achieved either by inserting a hinge region between both VHHs units or by using modules that lead to...

Modular Conjugation of a Potent Anti-HER2 Immunotoxin Using Coassociating Peptides

Archive ouverte | Stoessel, Audrey | CCSD

Immunotoxins are emerging candidates for cancer therapeutics. These biomolecules consist of a cell targeting protein combined to a polypeptide toxin. Associations of both entities can be achieved either chemically by covalent bond...

Chargement des enrichissements...