Effects of Surface Charge Density of Lipid Membranes on the Pore Formation Induced by Magainin 2

Y. Tamba, S. Masum, M. Yamazaki
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Abstract

Interactions of antimicrobial peptides with lipid membranes have been investigated using a suspension of small liposomes, and their details remain unclear. Using the single GUV method, we have succeeded in revealing elementary processes of the pore formation in lipid membranes induced by magainin 2 in our previous paper (Biochemistry, 44, 15823, 2005). In this report, to elucidate the mechanism of the magainin 2-induced pore formation, we investigated the effect of surface charge density of membranes on the pore formation. To change the surface charge density, we controlled negatively charged DOPG concentration in DOPG/DOPC membrane from 30 to 60 mol%. We found that, in all kinds of GUVs, magainin 2 induced a rapid leakage of calcein from single GUVs, showing that magainin 2 formed pores in the membrane. For GUVs with the same charge density, the fraction of leaked GUV, PLS, increased with time, and PLS at a fixed time increased with magainin 2 concentration. The magainin 2 concentration at PLS = 0.5 at a fixed time increased with a decrease in the surface charge density, indicating that higher concentrations of magainin 2 in a buffer were required to induce the pore formation in GUVs with lower surface charge density. Using the Gouy-Chapman theory, we obtained magainin 2 concentration in the membrane interface, assuming the intrinsic binding constant of magainin 2 with DOPG/DOPC membranes. On the basis of these results, we discuss the role of magainin 2 concentration in the membrane interface in the magainin 2-induced pore formation.
脂质膜表面电荷密度对magainin2诱导的孔形成的影响
抗菌肽与脂质膜的相互作用已经使用小脂质体悬浮液进行了研究,但其细节尚不清楚。在之前的论文(Biochemistry, 44, 15823,2005)中,我们使用单一GUV方法成功地揭示了magainin2诱导的脂质膜孔形成的基本过程。在本报告中,我们研究了膜表面电荷密度对孔形成的影响,以阐明锰锰2诱导孔形成的机制。为了改变表面电荷密度,我们将DOPG/DOPC膜中带负电荷的DOPG浓度控制在30 ~ 60 mol%之间。我们发现,在所有类型的guv中,magainin 2诱导单个guv的钙黄蛋白快速泄漏,表明magainin 2在膜上形成孔。对于相同电荷密度的GUV,泄漏的GUV比例PLS随时间增加,固定时间的PLS随浓度增加。在固定时间内,当PLS = 0.5时,magainin 2浓度随着表面电荷密度的降低而增加,这表明在表面电荷密度较低的guv中,需要更高浓度的magainin 2才能诱导成孔。利用Gouy-Chapman理论,假设magainin 2与DOPG/DOPC膜的固有结合常数,我们得到了膜界面上magainin 2的浓度。在这些结果的基础上,我们讨论了膜界面中锰离子浓度在锰离子诱导的孔形成中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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