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Energetic asymmetry among hydrogen bonds in MHC class II⋅peptide complexes

机译:MHC II类·肽配合物中氢键之间的能量不对称

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摘要

Comparison of crystallized MHC class II⋅peptide complexes has revealed that, in addition to pocket interactions involving the peptide side chains, peptide binding to MHC class II molecules is characterized by a series of hydrogen bonds between genetically conserved amino acid residues in the class II molecule and the main chain of the peptide. Many class II⋅peptide structures have two sets of symmetrical hydrogen bonds at the opposite ends of the class II antigen-binding groove (β-His-81, β-Asn-82 vs. α-His-68, α-Asn-69). In this study, we alter these peripheral hydrogen bonds and measure the apparent contribution of each to the kinetic stability of peptide⋅class II complexes. Single conservative amino substitutions were made in the I-Ad protein to eliminate participation as a hydrogen bonding residue, and the kinetic stability of a diverse set of peptides bound to the substituted I-Ad proteins was measured. Although each hydrogen bond does contribute to peptide binding, our results point to the striking conclusion that those hydrogen bonds localized to the amino terminus of the peptide contribute profoundly and disproportionately to the stability of peptide interactions with I-Ad. We suggest that the peripheral hydrogen bonds at the amino terminus of the bound peptide that are conserved in all class II⋅peptide crystal structures solved thus far form a cooperative network that critically regulates peptide dissociation from the class II molecule.
机译:结晶的MHC II类·肽复合物的比较表明,除涉及肽侧链的口袋相互作用外,与MHC II类分子结合的肽的特征还在于II类分子中遗传保守氨基酸残基之间的一系列氢键和肽的主链。许多II类多肽结构在II类抗原结合槽的相对末端具有两组对称的氢键(β-His-81,β-Asn-82与α-His-68,α-Asn-69 )。在这项研究中,我们改变了这些外围的氢键,并测量了它们对II类肽复合物动力学稳定性的明显贡献。在I-Ad蛋白中进行单个保守的氨基取代,以消除作为氢键残基的参与,并测量了与取代的I-Ad蛋白结合的各种肽的动力学稳定性。尽管每个氢键确实有助于肽结合,但我们的结果指出了一个惊人的结论,即那些位于肽氨基末端的氢键对肽与I-Ad相互作用的稳定性有深远的影响。我们认为,到目前为止,所有已解决的所有II类·肽晶体结构中保守的结合肽的氨基末端的外围氢键都形成了一个协作网络,该网络可严格调节肽与II类分子的解离。

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