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Our work studied the effect of selected organometallic chloride compounds on electrical properties of membrane, in the form of hydrophilic filters impregnated with lauric acid. The presence of the compounds in the membrane surroundings induced a quick increase of the membrane voltage that decreased more slowly after reaching the maximum value, and stabilized after a lapse of a specified period of time. In the case of triphenyltin, the voltage changed direction during measurement and stabilized in negative values. Based on the results obtained, it was found that the effectiveness of the interaction of the compounds studied with the membrane is highest in the case of triphenyltin chloride. The change of voltage polarization in the case of triphenyltin may denote that chlorine ions released in the dissociation process penetrated the other side the membrane.
Cholesterol, an integral component of membranes in Eucaryota, is a modifier of mem­brane properties. In vivo studies have demonstrated that cholesterol can also modulate ac­tivities of some G protein-coupled receptors (GPCRs), which are integral membrane pro­teins. This can result either from an effect of cholesterol on the membrane fluidity or from specific interactions of the membrane cholesterol with the receptor, as recently demon­strated for the cholecystokinin type β (CCKRβ ) or the oxytocin receptor (OTR). Using mo­lecular modelling, we studied conformational preferences of cholesterol and several of its analogues. Subsequently, we simulated the distributions of their preferred conformations around the surface of OTR, CCKR β and a chimeric oxytocin/cholecystokinin receptor. Consequently, we suggest residues on the surface of OTR which are potentially significant in the OTR/cholesterol interaction.
The paper presents a discussion of the basic assumptions of the Pink's model, which is often used for interpreting phenomena connected with biological membranes. For over ten years now the model has been constantly developed, but its basic assumptions have not ever been evaluated, such as: constant value of surface pressure, independent of composition of the system studied; approximate value (120°) of the angle between -C-C- bonds in alkyl chains of the membrane molecules; or treating both lipid chains as identical and independent.
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