The myelin proteolipid plasmolipin forms oligomers and induces liquid-ordered membranes in the Golgi complex

Author:

Yaffe Yakey1,Hugger Ilan1,Yassaf Inbar Nevo1,Shepshelovitch Jeanne1,Sklan Ella H.2,Elkabetz Yechiel3,Yeheskel Adva4,Pasmanik-Chor Metsada4,Benzing Carola5,Macmillan Alexander6,Gaus Katharina5,Eshed-Eisenbach Yael7,Peles Elior7,Hirschberg Koret1

Affiliation:

1. Department of Pathology, Sackler School of Medicine, Tel-Aviv 69978, Israel

2. Department of Clinical Microbiology and Immunology, Sackler School of Medicine, Tel-Aviv 69978, Israel

3. Department of Cell and Developmental Biology, Sackler School of Medicine, Tel-Aviv 69978, Israel

4. Bioinformatics Unit, G.S.W. Faculty of Life Sciences, Tel-Aviv University, Tel-Aviv 69978, Israel

5. EMBL Australia Node in Single Molecule Science, School of Medical Sciences and ARC Centre of Excellence in Advanced Molecular Imaging, Centre for Vascular Research University of New South Wales, Sydney, Australia 2033

6. Biomedical Imaging Facility, University of New South Wales, Sydney, Australia 2033

7. Department of Molecular Cell Biology, Weizmann Institute of Science, Rehovot, Israel 76100

Abstract

ABSTRACT Myelin comprises a compactly stacked massive surface area of protein-poor thick membrane that insulates axons to allow fast signal propagation. Increasing levels of the myelin protein plasmolipin (PLLP) were correlated with post-natal myelination; however, its function is unknown. Here, the intracellular localization and dynamics of PLLP were characterized in primary glial and cultured cells using fluorescently labeled PLLP and antibodies against PLLP. PLLP localized to and recycled between the plasma membrane and the Golgi complex. In the Golgi complex, PLLP forms oligomers based on fluorescence resonance energy transfer (FRET) analyses. PLLP oligomers blocked Golgi to plasma membrane transport of the secretory protein vesicular stomatitis virus G protein (VSVG), but not of a VSVG mutant with an elongated transmembrane domain. Laurdan staining analysis showed that this block is associated with PLLP-induced proliferation of liquid-ordered membranes. These findings show the capacity of PLLP to assemble potential myelin membrane precursor domains at the Golgi complex through its oligomerization and ability to attract liquid-ordered lipids. These data support a model in which PLLP functions in myelin biogenesis through organization of myelin liquid-ordered membranes in the Golgi complex.

Publisher

The Company of Biologists

Subject

Cell Biology

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