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Single-molecule investigation of the interactions between reconstituted planar lipid membranes and an analogue of the HP(2-20) antimicrobial peptide
Authors:Mereuta Loredana  Luchian Tudor  Park Yoonkyung  Hahm Kyung-Soo
Institution:a ‘Alexandru I. Cuza’ University, Faculty of Physics, Laboratory of Biophysics &; Medical Physics, Blvd. King Carol I, No. 11, Iasi R-700506, Romania
b Research Center for Proteineous Materials (RCPM), Chosun University, Gwangju, South Korea
c Department of Biotechnology and BK21 Research Team for Protein Activity Control, Chosun University, Gwangju, South Korea
d Department of Cellular·Molecular Medicine, College of Medicine, Chosun University, Gwangju, South Korea
Abstract:In this study, we employed electrophysiology experiments carried out at the single-molecule level to study the mechanism of action of the HPA3 peptide, an analogue of the linear antimicrobial peptide, HP(2–20), isolated from the N-terminal region of the Helicobacter pylori ribosomal protein. Amplitude analysis of currents fluctuations induced by HPA3 peptide at various potentials in zwitterionic lipid membranes reveal the existence of reproducible conductive states in the stochastic behavior of such events, which directly supports the existence of transmembrane pores induced the peptide. From our data recorded both at the single-pore and macroscopic levels, we propose that the HPA3 pore formation is electrophoretically facilitated by trans-negative transmembrane potentials, and HPA3 peptides translocate into the trans monolayers after forming the pores. We present evidence according to which the decrease in the membrane dipole potential of a reconstituted lipid membranes leads to an augmentation of the membrane activity of HPA3 peptides, and propose that a lower electric dipole field of the interfacial region of the membrane caused by phloretin facilitates the surface-bound HPA3 peptides to break free from one leaflet of the membrane, insert into the membrane and contribute to pore formation spanning the entire thickness of the membrane.
Keywords:Electrophysiology  Dipole potential  Lipid bilayers  Antimicrobial peptide  H  pylori
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