Sphingolipids inhibit vimentin-dependent cell migration

Author:

Hyder Claire L.12,Kemppainen Kati2,Isoniemi Kimmo O.12,Imanishi Susumu Y.13,Goto Hidemasa45,Inagaki Masaki45,Fazeli Elnaz2,Eriksson John E.12,Törnquist Kid26

Affiliation:

1. Turku Centre for Biotechnology, University of Turku and Åbo Akademi University, POB 123, FIN-20521, Turku, Finland

2. Department of Biosciences, Åbo Akademi University, Tykistökatu 6A, FI-20520, Turku, Finland

3. Environmental Science Lab, Faculty of Pharmacy, Meijo University, Yagotoyama 150, Tempaku. Nagoya 468-8503, Japan

4. Division of Biochemistry, Aichi Cancer Center Research Institute, Kanokoden, Chikusa-Ku, Nagoya 464-8681, Japan

5. Department of Cellular Oncology, Graduate School of Medicine, Nagoya University, Showa-Ku, Nagoya 466-8550, Japan

6. Minerva Foundation Institute for Medical Research, Biomedicum Helsinki, Tukholmankatu 8, 00290 Helsinki, Finland

Abstract

ABSTRACT The sphingolipids, sphingosine 1-phosphate (S1P) and sphingosylphosphorylcholine (SPC), can induce or inhibit cellular migration. The intermediate filament protein vimentin is an inducer of migration and a marker for epithelial–mesenchymal transition. Given that keratin intermediate filaments are regulated by SPC, with consequences for cell motility, we wanted to determine whether vimentin is also regulated by sphingolipid signalling and whether it is a determinant for sphingolipid-mediated functions. In cancer cells where S1P and SPC inhibited migration, we observed that S1P and SPC induced phosphorylation of vimentin on S71, leading to a corresponding reorganization of vimentin filaments. These effects were sphingolipid-signalling-dependent, because inhibition of either the S1P2 receptor (also known as S1PR2) or its downstream effector Rho-associated kinase (ROCK, for which there are two isoforms ROCK1 and ROCK2) nullified the sphingolipid-induced effects on vimentin organization and S71 phosphorylation. Furthermore, the anti-migratory effect of S1P and SPC could be prevented by expressing S71-phosphorylation-deficient vimentin. In addition, we demonstrated, by using wild-type and vimentin-knockout mouse embryonic fibroblasts, that the sphingolipid-mediated inhibition of migration is dependent on vimentin. These results imply that this newly discovered sphingolipid–vimentin signalling axis exerts brake-and-throttle functions in the regulation of cell migration.

Publisher

The Company of Biologists

Subject

Cell Biology

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