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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Non-covalent complexes of the peptide fragment Gly-Asn-Asn-Gln-Gln-Asn-Tyr in the gas-phase. Photodissociative cross-linking, Born-Oppenheimer molecular dynamics, and ab initio computational binding study
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Non-covalent complexes of the peptide fragment Gly-Asn-Asn-Gln-Gln-Asn-Tyr in the gas-phase. Photodissociative cross-linking, Born-Oppenheimer molecular dynamics, and ab initio computational binding study

机译:肽片段甘氨酸甘氨酸甘氨酸甘氨酰基-Asn-gln-asn-tyr的非共价复合物。 PhotoDissOowiveIve交联,出生的oppenHeimer分子动力学和AB Initio计算结合研究

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摘要

Non-covalent complexes of the short amyloid peptide motif Gly-Asn-Asn-Gln-Gln-Asn-Tyr (GNNQQNY) with peptide counterparts that were tagged with a diazirine ring at the N-termini (*GNNQQNY) were generated as singly charged ions in the gas phase. Specific laser photodissociation (UVPD) of the diazirine tag in the gas-phase complexes at 355 nm generated transient carbene intermediates that underwent covalent cross-linking with the target GNNQQNY peptide. The crosslinking yields ranged between 0.8 and 4.5%, depending on the combinations of peptide C-terminal amides and carboxylates. The covalent complexes were analyzed by collision-induced dissociation tandem mass spectrometry (CID-MS3), providing distributions of cross-links at the target peptide amino acid residues. A general preference for cross-linking at the target peptide Gln-4-Gln-5-Asn-6-Tyr-7 segment was observed. Born-Oppenheimer molecular dynamics calculations were used to obtain 100 ps trajectories for nine lowest free-energy conformers identified by B97X-D/6-31+G(d,p) gradient geometry optimizations. The trajectories were analyzed for close contacts between the incipient carbene atom and the X-H bonds in the target peptide. The close-contact analysis pointed to the Gln-5 and Tyr-7 residues as the most likely sites of cross-linking, consistent with the experimental CID-MS3 results. Non-covalent binding in the amide complexes was evaluated by DFT calculations of structures and energies. Although antiparallel arrangements of the GNNQQNY and *GNNQQNY peptides were favored in low-energy gas-phase and solvated complexes, the conformations and peptide-peptide interface surfaces were found to differ from the secondary structure of the dry interface in GNNQQNY motifs of amyloid aggregates.
机译:用在N-末端(* GNNQQNY)的肽对应物中,用肽对应物(* GNNQQNY)标记用二氮杂线环标记的肽对应物的非共价复合物用肽对应物标记在气相中的离子。在355nm产生的气相复合物中的二氮杂胺标签的特定激光光散(UVPD)在355nm产生的瞬态卡内中间体与靶GNNQNγ肽进行共价交联。取决于肽C-末端酰胺和羧酸盐的组合,交联产率范围为0.8和4.5%。通过碰撞诱导的解离串联质谱(CID-MS3)分析共价复合物,提供靶肽氨基酸残基的交联的分布。观察到在靶肽GLN-4-GLN-5-ASN-6-TYR-7区段交联的一般偏好。出生的oppenHeimer分子动力学计算用于获得由B97X-D / 6-31 + G(D,P)梯度几何优化鉴定的九个最低自由能整形剂的100ps轨迹。分析轨迹以在初始的卡宾原子和靶肽中的X-H键之间密切接触。紧密接触分析指向GLN-5和Tyr-7残留物,作为最可能的交联位点,与实验CID-MS3结果一致。通过结构和能量的DFT计算评估酰胺配合物中的非共价结合。尽管在低能量气相和溶剂化络合物中赞同GNNQQγ和*Gnnqnγ肽的反平行布置,但发现锥形和肽肽界面表面与淀粉样蛋白聚集体的GNNQNNY基序中的干燥界面的二次结构不同。

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