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1. Changes in membrane biophysical properties induced by sphingomyelinase depend on the sphingolipid N-acyl chain.

2. Ceramide synthases expression and role of ceramide synthase-2 in the lung: insight from human lung cells and mouse models.

3. Identification of N-acyl-fumonisin B1 as new cytotoxic metabolites of fumonisin mycotoxins.

4. Limonoid compounds inhibit sphingomyelin biosynthesis by preventing CERT protein-dependent extraction of ceramides from the endoplasmic reticulum.

5. Modulation of ceramide synthase activity via dimerization.

6. Ablation of ceramide synthase 2 strongly affects biophysical properties of membranes.

7. Encephalopathy caused by ablation of very long acyl chain ceramide synthesis may be largely due to reduced galactosylceramide levels.

8. A critical role for ceramide synthase 2 in liver homeostasis: II. insights into molecular changes leading to hepatopathy.

9. A critical role for ceramide synthase 2 in liver homeostasis: I. alterations in lipid metabolic pathways.

10. Stress-induced ER to Golgi translocation of ceramide synthase 1 is dependent on proteasomal processing.

11. Ceramide synthase 1 is regulated by proteasomal mediated turnover.

12. Ceramide synthesis is modulated by the sphingosine analog FTY720 via a mixture of uncompetitive and noncompetitive inhibition in an Acyl-CoA chain length-dependent manner.

13. De novo ceramide synthesis is required for N-linked glycosylation in plasma cells.

14. Characterization of ceramide synthase 2: tissue distribution, substrate specificity, and inhibition by sphingosine 1-phosphate.

15. A new functional motif in Hox domain-containing ceramide synthases: identification of a novel region flanking the Hox and TLC domains essential for activity.

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