Riesco-Llach Gerard, Oliveras Àngel, Gil-Caballero Sergio, Badosa Esther, Bonaterra Anna, Montesinos Emilio, Feixas Ferran, Planas Marta, Feliu Lidia
LIPPSO, Department of Chemistry, Campus Montilivi, Universitat de Girona, Girona, Spain.
Serveis Tècnics de Recerca (NMR), Universitat de Girona, Parc Científic i Tecnològic de la UdG, Girona, Spain.
J Biomol Struct Dyn. 2025 Jan 31:1-18. doi: 10.1080/07391102.2025.2458328.
Antimicrobial and plant defence elicitor peptides have received attention on last decades as novel tools to combat bacterial plant diseases. We previously reported a library of peptide conjugates resulting from the combination of an antimicrobial peptide (, , or ) and a plant defence elicitor sequence (, , or ). From this library, we selected a set of 14 peptide conjugates including both highly and poorly active sequences and we performed a structure-activity relationship study by NMR and MD simulations. Analysis of their structure by NMR in 30% TFE-d and in zwitterionic DPC-d and anionic SDS-d micelles showed that the presence of an α-helix fragment together with a flexible random coil can be related to a high antibacterial activity and a low hemolysis. In contrast, the sequences with a rigid α-helix structure were low active and highly hemolytic. PRE-NMR experiments in presence of MnCl and 16-DSA revealed that the highly active peptides and interacted stronger with DPC-d micelles than the low active peptide . In the two former sequences this interaction took place through the α-helix region. From GaMD simulations of conducted in membranes composed of anionic DPPG lipids, after its electrostatic interaction, the peptide flipped and the hydrophobic residues were faced to the membrane triggering its insertion and also causing membrane thinning. Thus, the flexibility and moderate cationicity of seem to be crucial for its biological activity. These findings can help to establish the guidelines for future rational design of derivatives.
在过去几十年中,抗菌肽和植物防御激发子肽作为对抗细菌性植物病害的新型工具受到了关注。我们之前报道了一个由抗菌肽(、、或)与植物防御激发子序列(、、或)组合而成的肽缀合物文库。从这个文库中,我们选择了一组14种肽缀合物,包括高活性和低活性序列,并通过核磁共振(NMR)和分子动力学(MD)模拟进行了构效关系研究。在30% TFE-d以及两性离子DPC-d和阴离子SDS-d胶束中通过NMR对其结构进行分析表明,α-螺旋片段与柔性无规卷曲的存在可能与高抗菌活性和低溶血活性相关。相比之下,具有刚性α-螺旋结构的序列活性较低且溶血活性较高。在存在MnCl和16-DSA的情况下进行的PRE-NMR实验表明,高活性肽和与DPC-d胶束的相互作用比低活性肽更强。在前两个序列中,这种相互作用通过α-螺旋区域发生。在由阴离子DPPG脂质组成的膜中对进行的GaMD模拟表明,在其静电相互作用后,肽发生翻转,疏水残基面向膜,触发其插入并导致膜变薄。因此,的灵活性和适度的阳离子性似乎对其生物活性至关重要。这些发现有助于为未来衍生物的合理设计建立指导原则。