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通过紫外光解质谱法研究 Kdo-脂 A 与阳离子抗菌肽之间的静电相互作用。

Towards mapping electrostatic interactions between Kdo-lipid A and cationic antimicrobial peptides via ultraviolet photodissociation mass spectrometry.

机构信息

Department of Chemistry, University of Texas at Austin, Austin, Texas 78712, USA.

出版信息

Analyst. 2018 Jul 23;143(15):3607-3618. doi: 10.1039/c8an00652k.

Abstract

Cationic antimicrobial peptides (CAMPs) have been known to act as multi-modal weapons against Gram-negative bacteria. As a new approach to investigate the nature of the interactions between CAMPs and the surfaces of bacteria, native mass spectrometry and two MS/MS strategies (ultraviolet photodissociation (UVPD) and higher energy collisional activation (HCD)) are used to examine formation and disassembly of saccharolipid·peptide complexes. Kdo2-lipid A (KLA) is used as a model saccharolipid to evaluate complexation with a series of cationic peptides (melittin and three analogs). Collisional activation of the KLA·peptide complexes results in the disruption of electrostatic interactions, resulting in apo-sequence ions with shifts in the distribution of ions compared to the fragmentation patterns of the apo-peptides. UVPD of the KLA·peptide complexes results in both apo- and holo-sequence ions of the peptides, the latter in which the KLA remains bound to the truncated peptide fragment despite cleavage of a covalent bond of the peptide backbone. Mapping both the N- and C-terminal holo-product ions gives insight into the peptide motifs (specifically an electropositive KRKR segment and a proline residue) that are responsible for mediating the electrostatic interactions between the cationic peptides and saccharolipid.

摘要

阳离子抗菌肽(CAMPs)已被证实是对抗革兰氏阴性菌的多模态武器。作为一种研究 CAMPs 与细菌表面相互作用性质的新方法,我们使用天然质谱和两种 MS/MS 策略(紫外光解(UVPD)和更高能量的碰撞激活(HCD))来检测糖脂·肽复合物的形成和拆卸。Kdo2-脂 A(KLA)被用作模型糖脂,以评估一系列阳离子肽(蜂毒素和三种类似物)与它的络合作用。对 KLA·肽复合物进行碰撞激活会破坏静电相互作用,导致与游离肽的碎片模式相比,离子分布发生偏移的无配体序列离子。对 KLA·肽复合物进行 UVPD 会产生肽的游离和全配体序列离子,后者中 KLA 仍然与截断的肽片段结合,尽管肽主链的共价键被切断。对 N-和 C-末端全配体产物离子进行映射,可以深入了解介导阳离子肽和糖脂之间静电相互作用的肽基序(特别是正电荷 KRKR 片段和脯氨酸残基)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15dc/6056329/6e42ecd13a9a/nihms979381f1.jpg

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