Department of Chemistry, Life Sciences and Environmental Sustainability, University of Parma, 43124 Parma, Italy.
Department of Food and Drug, University of Parma, 43124 Parma, Italy.
Biomolecules. 2024 Aug 13;14(8):994. doi: 10.3390/biom14080994.
Herein, we investigated the toxicity and membrane-permeabilizing capabilities of Lpt and Lpt-like peptides, belonging to type I toxin-antitoxin systems carried by plasmid DNA of strains. These 29 amino acid peptides are predicted to form α-helical structures with a conserved central hydrophobic sequence and differently charged hydrophilic termini. Like Lpt, the expression of Lpt-like in induced growth arrest, nucleoid condensation, and cell membrane damage, suggesting membrane interaction as the mode of action. The membrane permeabilization activity of both peptides was evaluated by using liposome leakage assays, dynamic light scattering, and CD spectroscopy. Lpt and Lpt-like showed liposome leakage activity, which did not lead to liposome disruption but depended on peptide concentration. Lpt was generally more effective than Lpt-like, probably due to different physical chemical properties. Leakage was significantly reduced in larger liposomes and increased with negatively charged PCPS liposomes, indicating that electrostatic interactions and membrane curvature influence peptide activity. Contrary to most membrane-active peptides, Lpt an Lpt-like progressively lost their α-helical structure upon interaction with liposomes. Our data are inconsistent with the formation of membrane-spanning peptide pores but support a mechanism relying on the transient failure of the membrane permeability barrier possibly through the formation of "lipid pores".
在此,我们研究了属于质粒 DNA 携带的 I 型毒素-抗毒素系统的 Lpt 和 Lpt 样肽的毒性和膜透性能力。这些 29 个氨基酸的肽预计会形成具有保守的中心疏水性序列和不同带电亲水性末端的α-螺旋结构。与 Lpt 一样,在 中表达 Lpt 样会诱导生长停滞、核凝聚和细胞膜损伤,表明膜相互作用是其作用模式。通过脂质体泄漏实验、动态光散射和 CD 光谱评估了这两种肽的膜透化活性。Lpt 和 Lpt 样都表现出脂质体泄漏活性,但不会导致脂质体破裂,而是取决于肽浓度。Lpt 通常比 Lpt 样更有效,可能是由于不同的物理化学性质。在较大的脂质体中,泄漏明显减少,带负电荷的 PCPS 脂质体中泄漏增加,表明静电相互作用和膜曲率影响肽的活性。与大多数膜活性肽相反,Lpt 和 Lpt 样在与脂质体相互作用时逐渐失去其α-螺旋结构。我们的数据与形成跨膜肽孔不一致,但支持一种依赖于膜通透性屏障暂时失效的机制,可能是通过形成“脂质孔”。