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  5. Phase Diagram of Purified CNS Myelin Reveals Continuous Transformation between Expanded and Compacted Lamellar States
 
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2020
Zweitveröffentlichung
Artikel
Verlagsversion

Phase Diagram of Purified CNS Myelin Reveals Continuous Transformation between Expanded and Compacted Lamellar States

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Hauptpublikation
cells-09-00670.pdf
CC BY 4.0 International
Format: Adobe PDF
Size: 1.54 MB
TUDa URI
tuda/6561
URN
urn:nbn:de:tuda-tuprints-162937
DOI
10.26083/tuprints-00016293
Autor:innen
Pusterla, Julio M.
Schneck, Emanuel ORCID 0000-0001-9769-2194
Oliveira, Rafael G. ORCID 0000-0001-5948-5338
Kurzbeschreibung (Abstract)

Purified myelin membranes (PMMs) are the starting material for biochemical studies, from individual components up to the isolation of detergent-resistant membrane (DRM) fractions or detergent-insoluble glycosphingolipid (DIG) fractions, which are commonly believed to resemble physiological lipid rafts. The normal DIG isolation protocol involves the extraction of lipids under moderate cooling. The isolation of PMMs also involves the cooling of myelin as well as exposure to low ionic strength (IS). Here, we addressed the combined influence of cooling and IS on the structure of PMMs. The phase behaviour was investigated by small angle X-ray diffraction. Analysis of the diffraction peaks revealed the lamellar periodicity (d), the number of periodically correlated bilayers (N), and the relatives fractions of each phase. Departure from physiological conditions induced a phase separation in myelin. The effect of monovalent and divalent ions was also compared at equivalent IS, showing a differential effect, and phase diagrams for both ion types were established — Ca²⁺ induced the well-known over-compacted phase, but additionally we also found an expanded phase at low IS. Na⁺ promoted phase separation, and also induced over-compaction at sufficiently high IS. Finally, exploring the whole phase diagram, we found evidence for the direct isothermal transformation from the expanded to the compacted phase, suggesting that both phases could in fact originate from the identical primary lateral phase separation, whereas the apparent difference lies in the inter-bilayer interaction that is modulated by the ionic milieu.

Freie Schlagworte

detergent-insoluble g...

lipid–protein domains...

domain phase segregat...

membrane heterogeneit...

small-angle X-ray dif...

Sprache
Englisch
Fachbereich/-gebiet
05 Fachbereich Physik > Institut für Physik Kondensierter Materie (IPKM) > Physik biologischer weicher Materie
DDC
500 Naturwissenschaften und Mathematik > 530 Physik
500 Naturwissenschaften und Mathematik > 570 Biowissenschaften, Biologie
Institution
Universitäts- und Landesbibliothek Darmstadt
Ort
Darmstadt
Titel der Zeitschrift / Schriftenreihe
Cells
Jahrgang der Zeitschrift
9
Heftnummer der Zeitschrift
3
ISSN
2073-4409
Verlag
MDPI
Ort der Erstveröffentlichung
Basel
Publikationsjahr der Erstveröffentlichung
2020
Verlags-DOI
10.3390/cells9030670
PPN
513395709
Zusätzliche Infomationen
This article belongs to the Special Issue Structure and Function of Healthy and Diseased Myelin

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