Laboratoire Léon Brillouin, CEA/CNRS UMR 12, CEA-Saclay, 91191 Gif-sur-Yvette, France.
Phys Rev Lett. 2013 Jul 12;111(2):028102. doi: 10.1103/PhysRevLett.111.028102. Epub 2013 Jul 10.
We address the problem of antimicrobial peptides that create pores in lipid bilayers, focusing on voltage-temperature dependence of pore opening. Two novel experiments (voltage clamp with alamethicin as an emblematic representative of these peptides and neutron reflectivity of lipid monolayer at solid-water interface under electric field) serve to revise the only current theoretical model. We introduce a general contribution of peptide adsorption and electric field as being responsible for an unbalanced tension of the two bilayer leaflets and we claim that the main entropy cost of one pore opening is due to the corresponding excluded area for lipid translation.
我们解决了在脂质双层中形成孔的抗菌肽的问题,重点研究了孔开启的电压-温度依赖性。两项新的实验(电压钳制实验中使用短杆菌肽 A 作为这类肽的典型代表,以及电场下固-水界面单层脂质的中子反射实验)用于修正当前唯一的理论模型。我们引入了肽吸附和电场的一般贡献,认为这是造成双层叶两侧不平衡张力的原因,并声称一个孔开启的主要熵成本是由于脂质平移对应的排除面积。