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首页> 外文期刊>Molecular Immunology >On the immunogenic properties of retro-inverso peptides. Total retro-inversion of T-cell epitopes causes a loss of binding to MHC II molecules.
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On the immunogenic properties of retro-inverso peptides. Total retro-inversion of T-cell epitopes causes a loss of binding to MHC II molecules.

机译:反逆肽的免疫原性。 T细胞表位的完全逆转会导致与MHC II分子的结合丧失。

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Retro-inversion is considered an attractive approach for drug and vaccine design since it provides the modified peptides with higher resistance to proteolytic degradation. We therefore investigated in detail the effect of retro-inversion on the immunological properties of synthetic peptides. We have synthesized retro-inverso analogues of MHC II restricted peptides that thus contained the correct orientation of the side chains but an inverse main chain. Retro-inversion made the peptides unable to compete in I E(d) or I A(d) binding tests, demonstrating a very low, if any, capacity to bind to MHC II molecules. These results confirm previous structural data that hydrogen bonds between residues of MHC II molecules and the main chain of antigenic peptides play a major interacting role. In vito experiments further showed that retro-inversion of a T-cell epitope causes its inability to either sustain in vitro T-cell stimulation or to prime specific T cells. Moreover, the retro-inverso peptide was not recognized by antibodies raised against the native peptide and did not elicit antibodies when injected into BALB/c mice. Retro-inverso peptides appear to be poor immunogens as a result of their weak capacity to bind to MHC II molecules. As an advantage, they are not expected to trigger undesirable humoral responses such as hypersensitivity or allergic disease. These results also provide a molecular explanation regarding the weak immunogenicity of D-amino acids containing polypeptides.
机译:逆转被认为是药物和疫苗设计的一种有吸引力的方法,因为它为修饰的肽提供了更高的对蛋白水解降解的抵抗力。因此,我们详细研究了反向转化对合成肽免疫学特性的影响。我们已经合成了MHC II限制性肽的逆反类似物,因此含有正确的侧链方向但反向的主链。逆转使这些肽不能在I E(d)或I A(d)结合试验中竞争,表明其结合MHC II分子的能力非常低(如果有的话)。这些结果证实了先前的结构数据,即MHC II分子的残基与抗原性肽的主链之间的氢键起主要的相互作用作用。体外实验进一步表明,T细胞表位的逆转导致其无法维持体外T细胞刺激或无法启动特异性T细胞。此外,逆向逆转录肽不能被针对天然肽的抗体所识别,并且在注射入BALB / c小鼠时也不会引发抗体。逆反肽由于结合MHC II分子的能力较弱而显得免疫原性差。作为优点,预计它们不会引发不良的体液反应,例如超敏反应或过敏性疾病。这些结果也提供了关于含D-氨基酸的多肽的弱免疫原性的分子解释。

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