首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The membrane insertion of helical antimicrobial peptides from the N-terminus of Helicobacter pylori ribosomal protein L1.
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The membrane insertion of helical antimicrobial peptides from the N-terminus of Helicobacter pylori ribosomal protein L1.

机译:幽门螺杆菌核糖体蛋白L1 N端螺旋抗菌肽的膜插入。

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摘要

The interaction of two helical antimicrobial peptides, HPA3 and HPA3P with planar supported lipid membranes was quantitatively analysed using two complementary optical biosensors. The peptides are analogues of Hp(2-20) derived from the N-terminus of Helicobacter pylori ribosomal protein L1 (RpL1). The binding of these two peptide analogues to zwitterionic dimyristoyl-phosphatidylcholine (DMPC) and negatively charged membranes composed of DMPC/dimyristoylphosphatidylglycerol (DMPG) (4:1) was determined using surface plasmon resonance (SPR) and dual polarisation interferometry (DPI). Using SPR analysis, it was shown that the proline substitution in HPA3P resulted in much lower binding for both zwitterionic and anionic membranes than HPA3. Structural changes in the planar DMPC and DMPC/DMPG (4:1) bilayers induced by the binding of both Hp(2-20) analogues were then resolved in real-time with DPI. The overall process of peptide-induced changes in membrane structure was analysed by the real-time changes in bound peptide mass as a function of bilayer birefringence. The insertion of both HPA3 and HPA3P into the supported lipid bilayers resulted in a decrease in birefringence with increasing amounts of bound peptide which reflects a decrease in the order of the bilayer. The binding of HPA3 to each membrane was associated with a higher level of bound peptide and greater membrane lipid disordering and a faster and higher degree of insertion into the membrane than HPA3P. Furthermore, the binding of both HPA3 and HPA3P to negatively charged DMPC/DMPG bilayers also leads to a greater disruption of the lipid ordering. These results demonstrate the geometrical changes in the membrane upon peptide insertion and the extent of membrane structural changes can be obtained quantitatively. Moreover, monitoring the effect of peptides on a structurally characterised bilayer has provided further insight into the role of membrane structure changes in the molecular basis of peptide selectivity and activity and may assist in defining the mode of antimicrobial action.
机译:使用两个互补的光学生物传感器,定量分析了两种螺旋抗菌肽HPA3和HPA3P与平面支撑脂质膜的相互作用。肽是源自幽门螺杆菌核糖体蛋白L1(RpL1)N端的Hp(2-20)的类似物。使用表面等离振子共振(SPR)和双极化干涉法(DPI)确定了这两种肽类似物与两性离子二豆蔻酰磷脂酰胆碱(DMPC)和由DMPC /二豆蔻酰磷脂酰甘油(DMPG)(4:1)组成的带负电荷的膜的结合。使用SPR分析,表明HPA3P中的脯氨酸取代导致两性离子和阴离子膜的结合均比HPA3低得多。平面DMPC和DMPC / DMPG(4:1)双层中由两个Hp(2-20)类似物的结合引起的结构变化,然后用DPI实时解决。通过结合肽质量随双层双折射的实时变化来分析肽诱导的膜结构变化的总体过程。 HPA3和HPA3P均插入支持的脂质双层中会导致双折射降低,这是因为结合肽的量增加,这反映了双层顺序的降低。与HPA3P相比,HPA3与每个膜的结合与更高水平的结合肽和更大的膜脂质紊乱以及更快和更高程度的插入膜有关。此外,HPA3和HPA3P与带负电的DMPC / DMPG双层的结合也导致脂质有序性的更大破坏。这些结果表明,在插入肽后膜中的几何变化以及可以定量获得膜结构变化的程度。而且,监测肽对结构表征的双层的作用已经提供了对膜结构变化在肽选择性和活性的分子基础上的作用的进一步了解,并且可以帮助定义抗微生物作用的模式。

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