Ion channels in mixed tethered bilayer lipid membranes

dc.contributor.authorLi-Fries, Jing
dc.date.accessioned2007-11-05T16:32:58Z
dc.date.available2007-11-05T17:32:58Z
dc.date.issued2007
dc.description.abstractMixed tethered bilayer lipid membranes (tBLMs) are described based on the self-assembly of a monolayer on template stripped gold, of an archea analogue thiolipid, 2,3-di-o-phytanyl-sn-glycerol-1-tetraethylene glycol-D,L--lipoic acid ester lipid (DPTL), and a newly designed dilution molecule, tetraethylene glycol-D,L--lipoic acid ester (TEGL). The usage of spacer and addition of extra dilution molecules between the substrate and the bilayer is that this architecture provides an ionic reservoir underneath the membrane, avoiding direct contact of the embedded membrane proteins with the gold electrodes and increasing the lateral diffusion of the bilayer, thus allowing for the incorporation of complex channels proteins which are failed in non-diluted systems. The tBLM is completed by fusion of liposomes made from a mixture of 1,2-diphythanolyl-sn-glycero-3-phosphocholine (DPhyPC), cholesterol, and 1,2-diphytanoyl-sn-Glycero-3-phosphate (DPhyPG) in a molar ratio of 6:3:1. Varying the mixing ratio, the optimum mixing ratio was obtained at a dilution factor of DPTL and TEGL at 90%:10%. Only under these conditions, the mixed tBLM showed electrical properties, as shown by EIS, which are comparable to a BLM. With higher dilution factors, a defect-free lipid bilayer was not formed. Formation of bilayers have been characterized by different techniques, such as surface plasmon resonance (SPR), electrochemical impedance spectroscopy (EIS), atomic force microscopy (AFM), and quartz crystal microbalance (QCM). Different proteins such as hemolysin, melittin, gramicidin, M2, Maxi-K, nAChR and bacteriohodopsin are incorporated into these tBLMs as shown by SPR and EIS studies. Ionic conductivity at 0 V vs. Ag|AgCl, 3M KCl were measured by EIS measurements. Our results indicate that these proteins have been successfully incorporated into a very stable tBLM environment in a functionally active form. Therefore, we conclude that the mixed tBLMs have been successfully designed as a general platform for biosensing and screening purposes of membrane proteins.en_GB
dc.identifier.doihttp://doi.org/10.25358/openscience-1679
dc.identifier.urihttps://openscience.ub.uni-mainz.de/handle/20.500.12030/1681
dc.identifier.urnurn:nbn:de:hebis:77-14375
dc.language.isoeng
dc.rightsInC-1.0de_DE
dc.rights.urihttps://rightsstatements.org/vocab/InC/1.0/
dc.subject.ddc000 Allgemeinesde_DE
dc.subject.ddc000 Generalitiesen_GB
dc.titleIon channels in mixed tethered bilayer lipid membranesen_GB
dc.typeDissertationde_DE
jgu.organisation.departmentFB 10 Biologie
jgu.organisation.nameJohannes Gutenberg-Universität Mainz
jgu.organisation.number7970
jgu.organisation.placeMainz
jgu.organisation.rorhttps://ror.org/023b0x485
jgu.organisation.year2007
jgu.rights.accessrightsopenAccess
jgu.subject.ddccode000
jgu.type.dinitypePhDThesis
jgu.type.resourceText
jgu.type.versionOriginal worken_GB
opus.date.accessioned2007-11-05T16:32:58Z
opus.date.available2007-11-05T17:32:58
opus.date.modified2007-11-05T16:32:58Z
opus.identifier.opusid1437
opus.institute.number1000
opus.metadataonlyfalse
opus.organisation.stringFB 10: Biologie: FB 10: Biologiede_DE
opus.type.contenttypeDissertationde_DE
opus.type.contenttypeDissertationen_GB

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