Temperature-Dependent In-Plane Structure Formation of an X‑Shaped Bolapolyphile within Lipid Bilayers

Polyphilic compound B12 is an X-shaped molecule with a stiff aromatic core, flexible aliphatic side chains, and hydrophilic end groups. Forming a thermotropic triangular honeycomb phase in the bulk between 177 and 182 °C but no lyotropic phases, it is designed to fit into DPPC or DMPC lipid bilayers...

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Published in:Langmuir Vol. 31; no. 9; pp. 2839 - 2850
Main Authors: Lechner, Bob-Dan, Ebert, Helgard, Prehm, Marko, Werner, Stefan, Meister, Annette, Hause, Gerd, Beerlink, André, Saalwächter, Kay, Bacia, Kirsten, Tschierske, Carsten, Blume, Alfred
Format: Journal Article
Language:English
Published: United States American Chemical Society 10-03-2015
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Abstract Polyphilic compound B12 is an X-shaped molecule with a stiff aromatic core, flexible aliphatic side chains, and hydrophilic end groups. Forming a thermotropic triangular honeycomb phase in the bulk between 177 and 182 °C but no lyotropic phases, it is designed to fit into DPPC or DMPC lipid bilayers, in which it phase separates at room temperature, as observed in giant unilamellar vesicles (GUVs) by fluorescence microscopy. TEM investigations of bilayer aggregates support the incorporation of B12 into intact membranes. The temperature-dependent behavior of the mixed samples was followed by differential scanning calorimetry (DSC), FT-IR spectroscopy, fluorescence spectroscopy, and X-ray scattering. DSC results support in-membrane phase separation, where a reduced main transition and new B12-related transitions indicate the incorporation of lipids into the B12-rich phase. The phase separation was confirmed by X-ray scattering, where two different lamellar repeat distances are visible over a wide temperature range. Polarized ATR-FTIR and fluorescence anisotropy experiments support the transmembrane orientation of B12, and FT-IR spectra further prove a stepwise “melting” of the lipid chains. The data suggest that in the B12-rich domains the DPPC chains are still rigid and the B12 molecules interact with each other via π–π interactions. All results obtained at temperatures above 75 °C confirm the formation of a single, homogeneously mixed phase with freely mobile B12 molecules.
AbstractList Polyphilic compound B12 is an X-shaped molecule with a stiff aromatic core, flexible aliphatic side chains, and hydrophilic end groups. Forming a thermotropic triangular honeycomb phase in the bulk between 177 and 182 °C but no lyotropic phases, it is designed to fit into DPPC or DMPC lipid bilayers, in which it phase separates at room temperature, as observed in giant unilamellar vesicles (GUVs) by fluorescence microscopy. TEM investigations of bilayer aggregates support the incorporation of B12 into intact membranes. The temperature-dependent behavior of the mixed samples was followed by differential scanning calorimetry (DSC), FT-IR spectroscopy, fluorescence spectroscopy, and X-ray scattering. DSC results support in-membrane phase separation, where a reduced main transition and new B12-related transitions indicate the incorporation of lipids into the B12-rich phase. The phase separation was confirmed by X-ray scattering, where two different lamellar repeat distances are visible over a wide temperature range. Polarized ATR-FTIR and fluorescence anisotropy experiments support the transmembrane orientation of B12, and FT-IR spectra further prove a stepwise "melting" of the lipid chains. The data suggest that in the B12-rich domains the DPPC chains are still rigid and the B12 molecules interact with each other via π-π interactions. All results obtained at temperatures above 75 °C confirm the formation of a single, homogeneously mixed phase with freely mobile B12 molecules.
Author Hause, Gerd
Blume, Alfred
Lechner, Bob-Dan
Bacia, Kirsten
Ebert, Helgard
Beerlink, André
Tschierske, Carsten
Prehm, Marko
Meister, Annette
Werner, Stefan
Saalwächter, Kay
AuthorAffiliation Institut für Physik - NMR
Martin-Luther-Universität Halle-Wittenberg
Zentrum für Struktur und Dynamik der Proteine (MZP)
Institut für Chemie - Physikalische Chemie
Institut für Chemie - Organische Chemie
Biozentrum Martin-Luther-Universität Halle-Wittenberg
Abteilung Elektronenmikroskopie
ZIK HALOmem
AuthorAffiliation_xml – name: ZIK HALOmem
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– name: Institut für Chemie - Organische Chemie
– name: Martin-Luther-Universität Halle-Wittenberg
– name: Institut für Physik - NMR
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– name: Biozentrum Martin-Luther-Universität Halle-Wittenberg
– name: Institut für Chemie - Physikalische Chemie
– name: Zentrum für Struktur und Dynamik der Proteine (MZP)
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SSID ssj0009349
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Snippet Polyphilic compound B12 is an X-shaped molecule with a stiff aromatic core, flexible aliphatic side chains, and hydrophilic end groups. Forming a thermotropic...
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SubjectTerms 1,2-Dipalmitoylphosphatidylcholine - chemistry
Cell Membrane - chemistry
Dimyristoylphosphatidylcholine - chemistry
Hydrophobic and Hydrophilic Interactions
Lipid Bilayers - chemistry
Models, Molecular
Molecular Conformation
Polymers - chemistry
Temperature
Title Temperature-Dependent In-Plane Structure Formation of an X‑Shaped Bolapolyphile within Lipid Bilayers
URI http://dx.doi.org/10.1021/la504903d
https://www.ncbi.nlm.nih.gov/pubmed/25695502
https://search.proquest.com/docview/1662432666
Volume 31
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