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Please use this identifier to cite or link to this item: http://hdl.handle.net/2262/61171

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Title: Packing behaviour of two predominant anionic phospholipids of bacterial cytoplasmic membranes
Keywords: DPGdiphosphatidylglycerol (cardiolipin)
TMCLtetramyristoyl-cardiolipin
(DP)PG(dipalmitoyl-)phosphatidylglycerol
PEphosphatidylethanolamine
Lcsubgel phase
SGIIsubsubgel phase with tilted hydrocarbons
LR1subsubgel phase with untilted hydrocarbons
Lβlamellar-gel phase with untilted hydrocarbon chains
Lβlamellar-gel phase with tilted hydrocarbon chains
Pβripple-gel phase
Lαfluid phase with melted hydrocarbon chains
DSCdifferential scanning calorimetry
T (m) (main) transition temperature
T pre pre-transition temperature
ΔH (m) (main) transition enthalpy
ΔH pre pre-transition enthalpy
SWAXSsmall and wide angle x-ray scattering
z H distance between head group and center of the bilayer
d B thickness of the bilayer
OLVoligolamellar vesicles
X DPPG mol fraction of DPPG
Phase diagram
liposomes
membrane mimics
S. aureus
X-ray diffraction
differential scanning calorimetry
Issue Date: 11-Jun-2010
Publisher: Elsevier
Abstract: Abstract Phosphatidylglycerol and cardiolipin represent the most abundant anionic phospholipid components of cytoplasmic bacterial membranes and thus are used as constituents for membrane mimetic systems. In this study, we have characterized the temperature dependent phase behaviour of the binary system dipalmitoyl-phosphatidylglycerol (DPPG) and tetramyristoyl-cardiolipin (TMCL) using microcalorimetry and x-ray scattering techniques. Both lipids exhibited a very similar main transition temperature (∼41°C), showing a minimum (39.4°C) for the binary mixtures at XDPPG=0.8, and exhibited low temperature phase transitions, which were abolished by incorporation of small amounts (≤10mol%) of the other lipid component. Therefore, over a wide temperature and composition range a lamellar Lβ gel phase is the predominant structure below the chain melting transition, characterized by a relatively broad wide-angle peak for XDPPG≤0.8. This observation suggests the existence of packing inconsistencies of the TMCL/DPPG hydrocarbon lattices in the gel phase, supported by the small average size of lipid clusters (∼50 lipids) within this composition range. The bilayer thickness for the lamellar gel phase showed a monotonic increase (56Å for TMCL to about 58Å for XDPPG=0.8 at 30°C), which may be explained by different degrees of partial interdigitation of the acyl chains to compensate for the differences in the hydrocarbon lengths of DPPG and TMCL in the Lβ phase.
URI: http://hdl.handle.net/2262/61171
ISSN: 03014622 (ISSN)
DOI: 10.1016/j.bpc.2010.04.004
Rights: 2010
Affiliation: Institute of Biophysics and Nanosystems Research, Austrian Academy of Sciences - Schmiedlstrasse 6--> , A-8042 Graz--> - AUSTRIA (Prossnigg, Florian)
Institute of Biophysics and Nanosystems Research, Austrian Academy of Sciences - Schmiedlstrasse 6--> , A-8042 Graz--> - AUSTRIA (Hickel, Andrea)
Institute of Biophysics and Nanosystems Research, Austrian Academy of Sciences - Schmiedlstrasse 6--> , A-8042 Graz--> - AUSTRIA (Pabst, Georg)
Institute of Biophysics and Nanosystems Research, Austrian Academy of Sciences - Schmiedlstrasse 6--> , A-8042 Graz--> - AUSTRIA (Lohner, Karl)
AUSTRIA (Lohner, Karl)
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