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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Binding of longer peptides to the H-2Kb heterodimer is restricted to peptides extended at their C terminus: refinement of the inherent MHC class I peptide binding criteria.
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Binding of longer peptides to the H-2Kb heterodimer is restricted to peptides extended at their C terminus: refinement of the inherent MHC class I peptide binding criteria.

机译:更长的肽与H-2Kb异二聚体的结合仅限于在其C末端延伸的肽:完善固有的MHC I类肽结合标准。

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摘要

MHC class I molecules usually bind short peptides of 8-10 amino acids, and binding is dependent on allele-specific anchor residues. However, in a number of cellular systems, class I molecules have been found containing peptides longer than the canonical size. To understand the structural requirements for MHC binding of longer peptides, we used an in vitro class I MHC folding assay to examine peptide variants of the antigenic VSV 8 mer core peptide containing length extensions at either their N or C terminus. This approach allowed us to determine the ability of each peptide to productively form Kb/beta2-microglobulin/peptide complexes. We found that H-2Kb molecules can accommodate extended peptides, but only if the extension occurs at the C-terminal peptide end, and that hydrophobic flanking regions are preferred. Peptides extended at their N terminus did not promote productive formation of the trimolecular complex. A structural basis for such findings comes from molecular modeling of a H-2Kb/12 mer complex and comparative analysis of MHC class I structures. These analyses revealed that structural constraints in the A pocket of the class I peptide binding groove hinder the binding of N-terminal-extended peptides, whereas structural features at the C-terminal peptide residue pocket allow C-terminal peptide extensions to reach out of the cleft. These findings broaden our understanding of the inherent peptide binding and epitope selection criteria of the MHC class I molecule. Core peptides extended at their N terminus cannot bind, but peptide extensions at the C terminus are tolerated.
机译:MHC I类分子通常结合8-10个氨基酸的短肽,并且结合取决于等位基因特异性锚残基。然而,在许多细胞系统中,已经发现I类分子含有比规范大小更长的肽。为了了解更长的肽与MHC结合的结构要求,我们使用了体外I类MHC折叠测定法来检查抗原性VSV 8 mer核心肽在N或C端含有长度延伸的肽变体。这种方法使我们能够确定每种肽有效形成Kb /β2-微球蛋白/肽复合物的能力。我们发现,H-2Kb分子可以容纳延伸的肽,但前提是延伸发生在C端肽末端,并且疏水性侧翼区域是优选的。在其N端延伸的肽不会促进三分子复合物的有效形成。这种发现的结构基础来自H-2Kb / 12 mer复合物的分子建模和MHC I类结构的比较分析。这些分析表明,I类肽结合槽A口袋中的结构限制阻碍了N末端延伸的肽的结合,而C末端肽残基口袋的结构特征使C末端肽延伸超出了。裂。这些发现拓宽了我们对MHC I类分子的固有肽结合和表位选择标准的理解。在其N末端延伸的核心肽不能结合,但在C末端的肽延伸是可容忍的。

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