首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Micelle-bound structures and dynamics of the hinge deleted analog of melittin and its diastereomer: implications in cell selective lysis by D-amino acid containing antimicrobial peptides.
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Micelle-bound structures and dynamics of the hinge deleted analog of melittin and its diastereomer: implications in cell selective lysis by D-amino acid containing antimicrobial peptides.

机译:胶束结合的结构和蜂毒肽及其非对映异构体的铰链缺失类似物的动力学:在含D-氨基酸的抗菌肽对细胞的选择性裂解中的意义。

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摘要

Melittin, the major component of the honey bee venom, is a 26-residue hemolytic and membrane active peptide. Structures of melittin determined either in lipid environments by NMR or by use of X-ray demonstrated two helical regions at the N- and C-termini connected by a hinge or a bend at the middle. Here, we show that deletion of the hinge residues along with two C-terminal terminal Gln residues (Q25 and Q26), yielding a peptide analog of 19-residue or Mel-H, did not affect antibacterial activity but resulted in a somewhat reduced hemolytic activity. A diastereomer of Mel-H or Mel-(d)H containing d-amino acids [(d)V5, (d)V8, (d)L11 and (d)K16] showed further reduction in hemolytic activity without lowering antibacterial activity. We have carried out NMR structures, dynamics (H-D exchange and proton relaxation), membrane localization by spin labeled lipids, pulse-field-gradient (PFG) NMR and isothermal titration calorimetry (ITC) in dodecylphosphocholine (DPC) micelles, as a mimic to eukaryotic membrane, to gain insights into cell selectivity of these melittin analogs. PFG-NMR showed Mel-H and Mel-(d)H both were similarly partitioned into DPC micelles. ITC demonstrated that Mel-H and Mel-(d)H interact with DPC with similar affinity. The micelle-bound structure of Mel-H delineated a straight helical conformation, whereas Mel-(d)H showed multiple beta-turns at the N-terminus and a short helix at the C-terminus. The backbone amide-proton exchange with solvent D(2)O demonstrated a large difference in dynamics between Mel-H and Mel-(d)H, whereby almost all backbone protons of Mel-(d)H showed a much faster rate of exchange as compared to Mel-H. Proton T(1) relaxation had suggested a mobile backbone of Mel-(d)H peptide in DPC micelles. Resonance perturbation by paramagnetic lipids indicated that Mel-H inserted deeper into DPC micelles, whereas Mel-(d)H is largely located at the surface of the micelle. Taken together, results presented in this study demonstrated that the poor hemolytic activity of the d-amino acid containing analogs of antimicrobial peptides may be correlated with their flexible dynamics at the membrane surface.
机译:蜂毒的主要成分蜂毒肽是具有26个残基的溶血和膜活性肽。蜂毒肽的结构在脂质环境中通过NMR或使用X射线确定,在N和C末端有两个螺旋区域,中间通过铰链或弯曲连接。在这里,我们显示铰链残基以及两个C末端Gln残基(Q25和Q26)的缺失,产生19个残基或Mel-H的肽类似物,不会影响抗菌活性,但会导致溶血性降低活动。含有d-氨基酸[(d)V5,(d)V8,(d)L11和(d)K16]的Mel-H或Mel-(d)H的非对映异构体显示溶血活性进一步降低,而没有降低抗菌活性。我们在十二烷基磷酸胆碱(DPC)胶束中进行了NMR结构,动力学(HD交换和质子弛豫),通过自旋标记脂质的膜定位,脉冲场梯度(PFG)NMR和等温滴定量热(ITC),以模拟真核膜,以了解这些蜂毒肽类似物的细胞选择性。 PFG-NMR表明,Mel-H和Mel-(d)H都相似地分配到DPC胶束中。 ITC证明Mel-H和Mel-(d)H与DPC的亲和力相似。 Mel-H的胶束结合结构勾勒出笔直的螺旋构象,而Mel-(d)H在N端显示多个β-转角,在C端显示一个短螺旋。用溶剂D(2)O交换主链酰胺-质子表明Mel-H和Mel-(d)H之间的动力学差异很大,因此几乎所有Mel-(d)H的主链质子都显示出更快的交换速率与Mel-H相比。质子T(1)弛豫表明DPC胶束中Mel-(d)H肽的移动主链。顺磁性脂质的共振扰动表明Mel-H插入DPC胶束的深度更深,而Mel-(d)H主要位于胶束的表面。两者合计,这项研究中提出的结果表明,含d-氨基酸的抗菌肽类似物的不良溶血活性可能与其在膜表面的动态动力学有关。

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