首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Cyclotides Insert into Lipid Bilayers to Form Membrane Pores and Destabilize the Membrane through Hydrophobic and Phosphoethanolamine-specific Interactions
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Cyclotides Insert into Lipid Bilayers to Form Membrane Pores and Destabilize the Membrane through Hydrophobic and Phosphoethanolamine-specific Interactions

机译:环氧化物插入脂质双层中以形成膜孔并通过疏水和磷酸乙醇胺特定的相互作用破坏膜的稳定性

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摘要

Cyclotides are a family of plant-derived circular proteins with potential therapeutic applications arising from their remarkable stability, broad sequence diversity, and range of bioactivities. Their membrane-binding activity is believed to be a critical component of their mechanism of action. Using isothermal titration calorimetry, we studied the binding of the prototypical cyclotides kalata B1 and kalata B2 (and various mutants) to dodecylphosphocholine micelles and phosphoethanolamine-containing lipid bilayers. Although binding is predominantly an entropy-driven process, suggesting that hydrophobic forces contribute significantly to cyclotide-lipid complex formation, specific binding to the phosphoethanolamine-lipid headgroup is also required, which is evident from the enthalpic changes in the free energy of binding. In addition, using a combination of dissipative quartz crystal microbalance measurements and neutron reflectometry, we elucidated the process by which cyclotides interact with bilayer membranes. Initially, a small number of cyclotides bind to the membrane surface and then insert first into the outer membrane leaflet followed by penetration through the membrane and pore formation. At higher concentrations of cyclotides, destabilization of membranes occurs. Our results provide significant mechanistic insight into how cyclotides exert their bioactivities.
机译:环肽是植物来源的环状蛋白家族,由于其卓越的稳定性,广泛的序列多样性和生物活性范围而具有潜在的治疗应用。据信它们的膜结合活性是其作用机理的关键组成部分。使用等温滴定量热法,我们研究了典型的环肽kalata B1和kalata B2(以及各种突变体)与十二烷基磷酸胆碱胶束和含磷乙醇胺的脂质双层的结合。尽管结合主要是由熵驱动的过程,这表明疏水力显着促进了环氧化物-脂质复合物的形成,但是还需要与磷酸乙醇胺-脂质头基的特异性结合,这从结合自由能的焓变中可以明显看出。此外,结合使用耗散石英晶体微天平测量和中子反射法,我们阐明了环氧化物与双层膜相互作用的过程。最初,少量的环氧化物与膜表面结合,然后首先插入外部膜小叶,然后穿透膜并形成孔。在高浓度的环糊精中,发生膜的不稳定。我们的研究结果提供了重要的机械见解,关于环素如何发挥其生物活性。

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