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Phi (Φ) and psi (Ψ) angles involved in malarial peptide bonds determine sterile protective immunity
Manuel E Patarroyo1, Armando Moreno-Vranich, Adriana Bermúdez
1Fundación Instituto de Inmunología de Colombia (FIDIC), Bogotá, Colombia. mepatarr@gmail.com
Abstract:
Modified HABP (mHABP) regions interacting with HLA-DRβ1(∗) molecules have a more restricted conformation and/or sequence than other mHABPs which do not fit perfectly into their peptide binding regions (PBR) and do not induce an acceptable immune response due to the critical role of their Φ and Ψ torsion angles. These angle's critical role was determined in such highly immunogenic, protection-inducing response against experimental malaria using the conformers (mHABPs) obtained by (1)H-NMR and superimposed into HLA-DRβ1(∗)-like Aotus monkey molecules; their phi (Φ) and psi (Ψ) angles were measured and the H-bond formation between these molecules was evaluated. The aforementioned mHABP propensity to assume a regular conformation similar to a left-handed polyproline type II helix (PPII(L)) led to suggesting that favouring these conformations according to their amino acid sequence would lead to high antibody titre production and sterile protective immunity induction against malaria, thereby adding new principles or rules for vaccine development, malaria being one of them.
Insights
Modified human antigen-binding peptide (mHABP) conformations are crucial for inducing malaria immunity. Favoring specific helical structures can enhance antibody production and protective immunity, guiding new vaccine development strategies.
Area of Science:
- Immunology
- Structural Biology
- Vaccine Development
Background:
- Modified human antigen-binding peptide (mHABP) interactions with HLA-DRβ1(*) molecules are key to immune responses.
- Conformation and sequence of mHABPs influence their binding to peptide binding regions (PBR) and subsequent immune response.
- Torsion angles (Φ and Ψ) play a critical role in the immunogenicity of mHABPs.
Purpose of the Study:
- To investigate the structural basis of highly immunogenic mHABPs interacting with HLA-DRβ1(*).
- To determine the role of Φ and Ψ torsion angles in inducing protective immunity against experimental malaria.
- To establish new principles for vaccine development based on mHABP conformational preferences.
Main Methods:
- Conformational analysis of mHABPs using (1)H-NMR.
- Superimposition of mHABP conformers onto HLA-DRβ1(*)-like Aotus monkey molecules.
- Measurement of Φ and Ψ angles and evaluation of H-bond formation.
Main Results:
- mHABPs interacting with HLA-DRβ1(*) exhibit restricted conformations compared to non-immunogenic ones.
- A specific propensity for a left-handed polyproline type II helix (PPII(L)) conformation was observed in immunogenic mHABPs.
- The measured Φ and Ψ angles and H-bond formations correlated with immune response induction.
Conclusions:
- Favorable mHABP conformations, particularly PPII(L)-like structures, are critical for high antibody titre production and sterile immunity against malaria.
- Amino acid sequence can be manipulated to favor these protective conformations.
- This study provides new rules for designing effective malaria vaccines.
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