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鸡卵溶菌酶HEL[52-61]肽与I-Ak MHC II类分子结合的分子模拟

Molecular modeling of hen egg lysozyme HEL[52-61] peptide binding to I-Ak MHC class II molecule.

作者信息

Weber P, Raynaud I, Ettouati L, Trescol-Biémont M C, Carrupt P A, Paris J, Rabourdin-Combe C, Gerlier D, Testa B

机构信息

Institut de Chimie Thérapeutique, Ecole de Pharmacie, Université de Lausanne, Switzerland.

出版信息

Int Immunol. 1998 Dec;10(12):1753-64. doi: 10.1093/intimm/10.12.1753.

Abstract

A bound conformation of the antigenic decapeptide hen egg lysozyme HEL[52-61] associated to the mouse MHC class II (MHC II) I-Ak was modeled by homology with the three-dimensional structure of hemagglutinin HA[306-318]-HLA-DR1 complex. HEL peptide Tyr53 could not be aligned with the HA peptide Tyr308 because this resulted in a buried Tyr53 side chain within the I-Ak peptide-binding groove and this conflicted with this side chain being recognized by T cells. Therefore, Asp52 of HEL was fixed as the P1 anchor and aligned on Tyr308 of HA. After molecular dynamics, the modeled complex was stable even in the absence of any constraint. The peptide backbone adopted a polyproline II-like conformation with canonical hydrogen bonding between the peptide backbone and MHC II molecule. Asp52, IIe55, Gin57 and Ser60 were predicted to be deeply buried into P1, P4, P6 and P9 MHC II pockets, and Tyr53, Leu56, Asn59 and Arg61 as TCR contacting residues. The modeling of 15 complexes associating I-Ak with peptides derived from HEL[52-61] by single amino acid substitution proved stable with conserved hydrogen bonds and side chain orientation compatible with their recognition by two T cell hybridomas. Moreover, comparison with the recently solved crystal structure of the related HEL[50-62]-I-Ak complex revealed striking similarities.

摘要

通过与血凝素HA[306 - 318]-HLA - DR1复合物的三维结构进行同源性建模,构建了与小鼠MHC II类(MHC II)I - Ak相关的抗原性十肽鸡卵溶菌酶HEL[52 - 61]的结合构象。HEL肽的Tyr53无法与HA肽的Tyr308对齐,因为这会导致Tyr53侧链埋入I - Ak肽结合槽内,这与该侧链被T细胞识别相冲突。因此,将HEL的Asp52固定为P1锚定残基,并与HA的Tyr308对齐。经过分子动力学模拟后,即使在没有任何约束的情况下,建模得到的复合物也是稳定的。肽主链呈现出类似多聚脯氨酸II的构象,肽主链与MHC II分子之间存在典型的氢键。预测Asp52、Ile55、Gln57和Ser60深埋于MHC II的P1、P4、P6和P9口袋中,而Tyr53、Leu56、Asn59和Arg61为TCR接触残基。对15个通过单氨基酸取代将I - Ak与源自HEL[52 - 61]的肽结合的复合物进行建模,结果表明其具有保守的氢键和与两个T细胞杂交瘤识别相兼容的侧链取向,因而具有稳定性。此外,与最近解析的相关HEL[50 - 62]-I - Ak复合物的晶体结构进行比较,发现了惊人的相似性。

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