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Sphingolipids with Very Long-chain Fatty Acids Regulate Vacuole Fusion During Tethering and Docking

Hurst, L. R.; Zhang, C.; Kazmirchuk, T. D. D.; Rivera-Kohr, D. A.; Brett, C. L.; Fratti, R. A.

2020-02-18 cell biology
10.1101/2020.02.17.953331 bioRxiv
Show abstract

Sphingolipids are essential in membrane trafficking and cellular homeostasis. Here, we show that sphingolipids containing very long-chain fatty acids (VLCFAs) promote robust homotypic vacuolar fusion in Saccharomyces cerevisiae. The elongase Elo3 adds two carbons to 24-carbon (C24) acyl chains to make C26 VLCFAs that are incorporated into sphingolipids. Vacuoles isolated from elo3{Delta} cells had increased fluidity relative to the wild-type and were attenuated for fusion. Upon further testing we found that vesicle the tethering stage was affected as elo3{Delta} vacuole clusters contained fewer vesicles versus the WT. Vacuole tethering requires the interactions of late endosomal Rab GTPase Ypt7 and the HOPS tethering complex. Pulldown assays using GST-Ypt7 showed that HOPS from elo3{Delta} vacuole extracts failed to bind Ypt7 while HOPS from WT extracts interacted with GST-Ypt7. Furthermore GFP-Ypt7 failed to localize at vertex microdomains of elo3{Delta} vacuoles relative to the WT, whereas HOPS and regulatory lipids did accumulate at vertices. Finally, we found that elo3{Delta} vacuoles had reduced V-ATPase. Together these data show that C26-VLCFA containing sphingolipids are important for Ytp7 function and vacuole homeostasis.

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