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疏水锚定相互作用的协同性:MHC II类分子作为折叠过程进行表位选择的证据

Cooperativity of hydrophobic anchor interactions: evidence for epitope selection by MHC class II as a folding process.

作者信息

Ferrante Andrea, Gorski Jack

机构信息

Blood Research Institute, Blood Center of Wisconsin, Milwaukee, Wisconsin 53201, USA.

出版信息

J Immunol. 2007 Jun 1;178(11):7181-9. doi: 10.4049/jimmunol.178.11.7181.

DOI:10.4049/jimmunol.178.11.7181
PMID:17513767
Abstract

Peptide binding to MHC class II (MHCII) molecules is stabilized by hydrophobic anchoring and hydrogen bond formation. We view peptide binding as a process in which the peptide folds into the binding groove and to some extent the groove folds around the peptide. Our previous observation of cooperativity when analyzing binding properties of peptides modified at side chains with medium to high solvent accessibility is compatible with such a view. However, a large component of peptide binding is mediated by residues with strong hydrophobic interactions that bind to their respective pockets. If these reflect initial nucleation events they may be upstream of the folding process and not show cooperativity. To test whether the folding hypothesis extends to these anchor interactions, we measured dissociation and affinity to HLA-DR1 of an influenza hemagglutinin-derived peptide with multiple substitutions at major anchor residues. Our results show both negative and positive cooperative effects between hydrophobic pocket interactions. Cooperativity was also observed between hydrophobic pockets and positions with intermediate solvent accessibility, indicating that hydrophobic interactions participate in the overall folding process. These findings point out that predicting the binding potential of epitopes cannot assume additive and independent contributions of the interactions between major MHCII pockets and corresponding peptide side chains.

摘要

肽与II类主要组织相容性复合体(MHCII)分子的结合通过疏水锚定和氢键形成得以稳定。我们将肽的结合视为一个过程,在此过程中肽折叠进入结合凹槽,并且在一定程度上凹槽围绕肽折叠。我们之前在分析具有中等至高溶剂可及性的侧链修饰肽的结合特性时观察到的协同性与这种观点相符。然而,肽结合的很大一部分是由与各自口袋具有强疏水相互作用的残基介导的。如果这些反映了初始成核事件,它们可能处于折叠过程的上游,并且不会表现出协同性。为了测试折叠假说是否扩展到这些锚定相互作用,我们测量了在主要锚定残基处有多个取代的流感血凝素衍生肽与HLA - DR1的解离和亲和力。我们的结果显示疏水口袋相互作用之间存在负协同效应和正协同效应。在疏水口袋与具有中等溶剂可及性的位置之间也观察到了协同性,这表明疏水相互作用参与了整体折叠过程。这些发现指出,预测表位的结合潜力不能假定主要MHCII口袋与相应肽侧链之间的相互作用是加和性的且相互独立的。

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