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含(R)-3-羟基丁酸酯和β-高丙氨酸低聚物的九肽类似物:合成及其与I类主要组织相容性复合体蛋白的结合亲和力

Nonapeptide analogues containing (R)-3-hydroxybutanoate and beta-homoalanine oligomers: synthesis and binding affinity to a class I major histocompatibility complex protein.

作者信息

Poenaru S, Lamas J R, Folkers G, López de Castro J A, Seebach D, Rognan D

机构信息

Laboratory for Organic Chemistry, Swiss Federal Institute of Technology, Universitätstrasse 16, CH-8092 Zürich, Switzerland.

出版信息

J Med Chem. 1999 Jul 1;42(13):2318-31. doi: 10.1021/jm981123l.

Abstract

Crystal structures of antigenic peptides bound to class I MHC proteins suggest that chemical modifications of the central part of the bound peptide should not alter binding affinity to the MHC restriction protein but could perturb the T-cell response to the parent epitope. In our effort in designing nonpeptidic high-affinity ligands for class I MHC proteins, oligomers of (R)-3-hydroxybutanoate and(or) beta-homoalanine have been substituted for the central part of a HLA-B27-restricted T-cell epitope of viral origin. The affinity of six modified peptides to the B2705 allele was determined by an in vitro stabilization assay. Four out of the six designed analogues presented an affinity similar to that of the parent peptide. Two compounds, sharing the same stereochemistry (R,R,S,S) at the four stereogenic centers of the nonpeptidic spacer, bound to B2705 with a 5-6-fold decreased affinity. Although the chiral spacers do not strongly interact with the protein active site, there are configurations which are not accepted by the MHC binding groove, probably because of improper orientation of some lateral substituents in the bound state and different conformational behavior in the free state. However we demonstrate that beta-amino acids can be incorporated in the sequence of viral T-cell epitopes without impairing MHC binding. The presented structure-activity relationships open the door to the rational design of peptide-based vaccines and of nonnatural T-cell receptor antagonists aimed at blocking peptide-specific T-cell responses in MHC-associated autoimmune diseases.

摘要

与I类主要组织相容性复合体(MHC)蛋白结合的抗原肽的晶体结构表明,结合肽中心部分的化学修饰不应改变与MHC限制性蛋白的结合亲和力,但可能会干扰T细胞对亲本表位的反应。在我们设计I类MHC蛋白的非肽高亲和力配体的过程中,(R)-3-羟基丁酸酯和(或)β-高丙氨酸的寡聚物已被用来替代病毒来源的HLA-B27限制性T细胞表位的中心部分。通过体外稳定测定法确定了六种修饰肽对B2705等位基因的亲和力。六种设计类似物中的四种表现出与亲本肽相似的亲和力。在非肽间隔区的四个立体中心具有相同立体化学(R,R,S,S)的两种化合物与B2705结合时亲和力降低了5至6倍。尽管手性间隔区与蛋白质活性位点的相互作用不强,但存在MHC结合凹槽不接受的构型,这可能是因为结合状态下一些侧链取代基的取向不当以及游离状态下不同的构象行为。然而,我们证明β-氨基酸可以掺入病毒T细胞表位序列中而不损害MHC结合。所呈现的构效关系为基于肽的疫苗以及旨在阻断MHC相关自身免疫疾病中肽特异性T细胞反应的非天然T细胞受体拮抗剂的合理设计打开了大门。

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