Fundación Instituto de Inmunología de Colombia (FIDIC), Carrera 50, # 26-20, Bogotá, Colombia; Universidad del Rosario, Calle 14, # 6-25, Bogotá, Colombia.
Fundación Instituto de Inmunología de Colombia (FIDIC), Carrera 50, # 26-20, Bogotá, Colombia.
Vaccine. 2014 Apr 11;32(18):2117-26. doi: 10.1016/j.vaccine.2014.02.003. Epub 2014 Feb 28.
Topological and stereo-electron characteristics are essential in major histocompability class II-peptide-T-cell receptor (MHC-p-TCR) complex formation for inducing an appropriate immune response. Modified high activity binding peptides (mHABPs) were synthesised for complete full protection antimalarial vaccine development producing a large panel of individually fully protection-inducing protein structures (FPIPS) and very high long-lasting antibody-inducing (VHLLAI) mHABPs. Most of those which did not interfere, compete, inhibit or suppress their individual VHLLAI or FPIPS activity contained or displayed a polyproline II-like (PPIIL) structure when mixed. Here we show that amino acid side-chains located in peptide binding region (PBR) positions p3 and p7 displayed specific electron charges and side-chain gauche(+) orientation for interacting with the TCR. Based on the above, and previously described physicochemical principles, non-interfering, long-lasting, full protection-inducing, multi-epitope, multistage, minimal subunit-based chemically synthesised mHABP mixtures can be designed for developing vaccines against diseases scourging humankind, malaria being one of them.
拓扑和立体电子特性对于主要组织相容性复合体 II-肽-T 细胞受体 (MHC-p-TCR) 复合物的形成至关重要,这对于诱导适当的免疫反应至关重要。为了开发完全的全保护抗疟疾疫苗,我们合成了改良的高活性结合肽 (mHABP),产生了大量单独的全保护诱导蛋白结构 (FPIPS) 和非常高的长效抗体诱导 (VHLLAI) mHABP。大多数没有干扰、竞争、抑制或抑制其各自 VHLLAI 或 FPIPS 活性的 mHABP 含有或显示出混合时具有类似聚脯氨酸 II 结构 (PPIIL)。在这里,我们表明位于肽结合区域 (PBR) 位置 p3 和 p7 的氨基酸侧链显示出与 TCR 相互作用的特定电子电荷和侧链 gauche(+) 取向。基于上述以及先前描述的物理化学原理,可以设计非干扰、长效、全保护诱导、多表位、多阶段、基于最小亚基的化学合成 mHABP 混合物,用于开发针对人类疾病的疫苗,疟疾就是其中之一。