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本文引用的文献

1
HLA-DM recognizes the flexible conformation of major histocompatibility complex class II.HLA-DM识别主要组织相容性复合体II类分子的灵活构象。
J Exp Med. 2000 Dec 18;192(12):1697-706. doi: 10.1084/jem.192.12.1697.
2
Determination of the HLA-DM interaction site on HLA-DR molecules.HLA-DR分子上HLA-DM相互作用位点的确定。
Immunity. 2000 Oct;13(4):517-27. doi: 10.1016/s1074-7613(00)00051-0.
3
Peptide and peptide mimetic inhibitors of antigen presentation by HLA-DR class II MHC molecules. Design, structure-activity relationships, and X-ray crystal structures.
J Med Chem. 2000 Jun 1;43(11):2135-48. doi: 10.1021/jm000034h.
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Determinants of the peptide-induced conformational change in the human class II major histocompatibility complex protein HLA-DR1.人II类主要组织相容性复合体蛋白HLA - DR1中肽诱导的构象变化的决定因素。
J Biol Chem. 2000 Jan 21;275(3):2165-73. doi: 10.1074/jbc.275.3.2165.
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Deviant trafficking of I-Ad mutant molecules is reflected in their peptide binding properties.I-Ad突变分子的异常转运反映在它们的肽结合特性上。
Eur J Immunol. 1999 Sep;29(9):2729-39. doi: 10.1002/(SICI)1521-4141(199909)29:09<2729::AID-IMMU2729>3.0.CO;2-A.
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Cutting edge: a single, essential hydrogen bond controls the stability of peptide-MHC class II complexes.前沿:单个关键氢键控制肽 - 主要组织相容性复合体II类复合物的稳定性。
J Immunol. 1999 Oct 1;163(7):3567-71.
7
The structure of HLA-DM, the peptide exchange catalyst that loads antigen onto class II MHC molecules during antigen presentation.HLA-DM的结构,这是一种在抗原呈递过程中将抗原加载到II类主要组织相容性复合体分子上的肽交换催化剂。
Immunity. 1998 Sep;9(3):377-83. doi: 10.1016/s1074-7613(00)80620-2.
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Novel glycosylation of HLA-DRalpha disrupts antigen presentation without altering endosomal localization.
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9
Crystal structures of two I-Ad-peptide complexes reveal that high affinity can be achieved without large anchor residues.两种I-Ad-肽复合物的晶体结构表明,无需大的锚定残基即可实现高亲和力。
Immunity. 1998 Mar;8(3):319-29. doi: 10.1016/s1074-7613(00)80537-3.
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Crystal structure of I-Ak in complex with a dominant epitope of lysozyme.与溶菌酶显性表位结合的I-Ak晶体结构。
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MHC II类*肽复合物中氢键间的能量不对称性。

Energetic asymmetry among hydrogen bonds in MHC class II*peptide complexes.

作者信息

McFarland B J, Katz J F, Beeson C, Sant A J

机构信息

Department of Chemistry, University of Washington, Seattle, WA 98195, USA.

出版信息

Proc Natl Acad Sci U S A. 2001 Jul 31;98(16):9231-6. doi: 10.1073/pnas.151131498. Epub 2001 Jul 24.

DOI:10.1073/pnas.151131498
PMID:11470892
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC55403/
Abstract

Comparison of crystallized MHC class IIpeptide 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 IIpeptide structures have two sets of symmetrical hydrogen bonds at the opposite ends of the class II antigen-binding groove (beta-His-81, beta-Asn-82 vs. alpha-His-68, alpha-Asn-69). In this study, we alter these peripheral hydrogen bonds and measure the apparent contribution of each to the kinetic stability of peptide* II complexes. Single conservative amino substitutions were made in the I-A(d) protein to eliminate participation as a hydrogen bonding residue, and the kinetic stability of a diverse set of peptides bound to the substituted I-A(d) 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-A(d). 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.

摘要

对结晶的MHC II类肽复合物的比较表明,除了涉及肽侧链的口袋相互作用外,肽与MHC II类分子的结合还具有II类分子中基因保守的氨基酸残基与肽主链之间的一系列氢键特征。许多II类肽结构在II类抗原结合槽的相对两端有两组对称的氢键(β-组氨酸-81、β-天冬酰胺-82与α-组氨酸-68、α-天冬酰胺-69)。在本研究中,我们改变这些外围氢键,并测量每个氢键对肽II复合物动力学稳定性的表观贡献。在I-A(d)蛋白中进行单个保守氨基酸取代,以消除作为氢键残基的参与,并测量与取代的I-A(d)蛋白结合的各种肽的动力学稳定性。虽然每个氢键确实对肽结合有贡献,但我们的结果得出了一个惊人的结论,即位于肽氨基末端的那些氢键对肽与I-A(d)相互作用的稳定性有深远且不成比例的贡献。我们认为,在迄今为止解析的所有II类肽晶体结构中保守的结合肽氨基末端的外围氢键形成了一个协同网络,该网络严格调节肽从II类分子的解离。