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利用光亮氨酸订书钉在气相肽-肽离子复合物中高效形成共价键。

Efficient Covalent Bond Formation in Gas-Phase Peptide-Peptide Ion Complexes with the Photoleucine Stapler.

作者信息

Shaffer Christopher J, Andrikopoulos Prokopis C, Řezáč Jan, Rulíšek Lubomír, Tureček František

机构信息

Department of Chemistry, University of Washington, Bagley Hall, Box 351700, Seattle, WA, 98195-1700, USA.

Institute of Organic Chemistry and Biochemistry, Academy of Sciences of the Czech Republic, Flemingovo nám 2, 16610, Prague, Czech Republic.

出版信息

J Am Soc Mass Spectrom. 2016 Apr;27(4):633-45. doi: 10.1007/s13361-016-1338-8. Epub 2016 Jan 27.

DOI:10.1007/s13361-016-1338-8
PMID:26817657
Abstract

Noncovalent complexes of hydrophobic peptides GLLLG and GLLLK with photoleucine (L*) tagged peptides G(L* n L m )K (n = 1,3, m = 2,0) were generated as singly charged ions in the gas phase and probed by photodissociation at 355 nm. Carbene intermediates produced by photodissociative loss of N2 from the L* diazirine rings underwent insertion into X-H bonds of the target peptide moiety, forming covalent adducts with yields reaching 30%. Gas-phase sequencing of the covalent adducts revealed preferred bond formation at the C-terminal residue of the target peptide. Site-selective carbene insertion was achieved by placing the L* residue in different positions along the photopeptide chain, and the residues in the target peptide undergoing carbene insertion were identified by gas-phase ion sequencing that was aided by specific (13)C labeling. Density functional theory calculations indicated that noncovalent binding to GLLL*K resulted in substantial changes of the (GLLLK + H)(+) ground state conformation. The peptide moieties in GLLLK + GLLLK + H ion complexes were held together by hydrogen bonds, whereas dispersion interactions of the nonpolar groups were only secondary in ground-state 0 K structures. Born-Oppenheimer molecular dynamics for 100 ps trajectories of several different conformers at the 310 K laboratory temperature showed that noncovalent complexes developed multiple, residue-specific contacts between the diazirine carbons and GLLLK residues. The calculations pointed to the substantial fluidity of the nonpolar side chains in the complexes. Diazirine photochemistry in combination with Born-Oppenheimer molecular dynamics is a promising tool for investigations of peptide-peptide ion interactions in the gas phase. Graphical Abstract ᅟ.

摘要

疏水性肽GLLLG和GLLLK与带有光亮氨酸(L*)标记的肽G(Ln Lm)K(n = 1,3,m = 2,0)的非共价复合物在气相中生成单电荷离子,并在355 nm处通过光解离进行探测。L重氮环光解离失去N2产生的卡宾中间体插入目标肽部分的X-H键中,形成共价加合物,产率达到30%。共价加合物的气相测序显示在目标肽的C端残基处优先形成键。通过将L残基沿光肽链放置在不同位置实现了位点选择性卡宾插入,并且通过气相离子测序结合特定的(13)C标记鉴定了目标肽中发生卡宾插入的残基。密度泛函理论计算表明,与GLLLK的非共价结合导致(GLLLK + H)(+)基态构象发生显著变化。GLLLK + GLLLK + H离子复合物中的肽部分通过氢键结合在一起,而非极性基团的色散相互作用在0 K基态结构中仅起次要作用。在310 K实验室温度下对几种不同构象进行100 ps轨迹的玻恩-奥本海默分子动力学研究表明,非共价复合物在重氮环碳与GLLLK残基之间形成了多个特定残基的接触。计算结果表明复合物中非极性侧链具有很大的流动性。重氮环光化学与玻恩-奥本海默分子动力学相结合是研究气相中肽-肽离子相互作用的一种有前途的工具。图形摘要ᅟ

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