169 results on '"Siniossoglou, Symeon"'
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2. Membranes that make fat: roles of membrane lipids as acyl donors for triglyceride synthesis and organelle function.
3. Oiling the wheels of nuclear division: SUMOylation regulates the expansion of the mitotic nuclear membrane
4. Structure and Assembly of the Nup84p Complex
5. Nuclear Shape-Shifters: Lipid and Protein Dynamics at the Nuclear Envelope
6. Loss of Snd1 reduces cell fitness in the absence of Pah1 or inositol in Saccharomyces cerevisiae
7. Redundant roles of the phosphatidate phosphatase family in triacylglycerol synthesis in human adipocytes
8. A phosphorylation-regulated amphipathic helix controls the membrane translocation and function of the yeast phosphatidate phosphatase
9. Correction: Conserved amphipathic helices mediate lipid droplet targeting of perilipins 1–3
10. The yeast lipin Smp2 couples phospholipid biosynthesis to nuclear membrane growth
11. Control of Phospholipid Synthesis by Phosphorylation of the Yeast Lipin Pah1p/Smp2p Mg2+-dependent Phosphatidate Phosphatase
12. An effector of Ypt6p binds the SNARE Tlg1p and mediates selective fusion of vesicles with late Golgi membranes
13. Ric1p and Rgp1p form a complex that catalyses nucleotide exchange on Ypt6p
14. An Erg11 lanosterol 14-α-demethylase-Arv1 complex is required for Candida albicans virulence
15. New kid on the block: lipid droplets in the nucleus
16. Rewiring Neuronal Glycerolipid Metabolism Determines the Extent of Axon Regeneration
17. A generic Strategy to Analyze the Spatial Organization of Multi-Protein complexes by Cross-Linking and Mass Spectrometry
18. A novel complex of membrane proteins required for formation of a spherical nucleus
19. Nup116p and Nup100p are interchangeable through a conserved motif which constitutes a docking site for the mRNA transport factor Gle2p
20. Lipins, Lipids and Nuclear Envelope Structure
21. Affinity Purification of Ypt6 Effectors and Identification of TMF/ARA160 as a Rab6 Interactor
22. Two functionally distinct domains generated by in vivo cleavage of Nup145p: a novel biogenesis pathway for nucleoporins
23. Evaluating the Role of LPIN1 Variation in Insulin Resistance, Body Weight, and Human Lipodystrophy in U.K. Populations
24. A novel complex of nucleoporins, which includes Sec13p and a Sec13p homolog, is essential for normal nuclear pores
25. PCYT1A Regulates Phosphatidylcholine Homeostasis from the Inner Nuclear Membrane in Response to Membrane Stored Curvature Elastic Stress
26. Compartmentalized Synthesis of Triacylglycerol at the Inner Nuclear Membrane Regulates Nuclear Organization
27. CK1δ restrains lipin-1 induction, lipid droplet formation and cell proliferation under hypoxia by reducing HIF-1α/ARNT complex formation
28. TMF is a golgin that binds Rab6 and influences Golgi morphology
29. PCYT1A Regulates Phosphatidylcholine Homeostasis from the Inner Nuclear Membrane in Response to Membrane Stored Curvature Elastic Stress
30. Conserved Amphipathic Helices Mediate Lipid Droplet Targeting of Perilipins 1–3
31. Function of lipid droplet-organelle interactions in lipid homeostasis
32. Lipid droplet-organelle interactions: emerging roles in lipid metabolism
33. CK1 delta restrains lipin-1 induction, lipid droplet formation and cell proliferation under hypoxia by reducing HIF-1 alpha/ARNT complex formation
34. The human lipodystrophy protein seipin is an ER membrane adaptor for the adipogenic PA phosphatase lipin 1
35. Spatial distribution of lipid droplets during starvation: Implications for lipophagy
36. Phosphorylation of Phosphatidate Phosphatase Regulates Its Membrane Association and Physiological Functions in Saccharomyces cerevisiae: IDENTIFICATION OF SER602, THR723, AND SER744 AS THE SITES PHOSPHORYLATED BY CDC28 (CDK1)-ENCODED CYCLIN-DEPENDENT KINASE*
37. Lipid partitioning at the nuclear envelope controls membrane biogenesis
38. Lipid droplet–organelle interactions: emerging roles in lipid metabolism
39. Spatiotemporal Activation of Yeast Lipin Pah1 and Phospholipid Remodelling during Lipid Droplet Formation
40. Distinct Roles of the Phosphatidate Phosphatases Lipin 1 and 2 during Adipogenesis and Lipid Droplet Biogenesis in 3T3-L1 Cells
41. Transcription Factor Reb1p Regulates DGK1-encoded Diacylglycerol Kinase and Lipid Metabolism in Saccharomyces cerevisiae
42. Regulation of lipid droplet and membrane biogenesis by the acidic tail of the phosphatidate phosphatase Pah1p
43. Phospholipid metabolism and nuclear function: Roles of the lipin family of phosphatidic acid phosphatases
44. Colorimetric determination of pure Mg 2+-dependent phosphatidate phosphatase activity
45. Hypoxia causes triglyceride accumulation via HIF-1-mediated stimulation of lipin 1 expression
46. Phosphorylation of Phosphatidate Phosphatase Regulates Its Membrane Association and Physiological Functions in Saccharomyces cerevisiae
47. Temporal and Spatial Regulation of the Phosphatidate Phosphatases Lipin 1 and 2
48. An Unconventional Diacylglycerol Kinase That Regulates Phospholipid Synthesis and Nuclear Membrane Growth
49. Characterization of the Yeast DGK1-encoded CTP-dependent Diacylglycerol Kinase
50. Colorimetric determination of pure Mg2+-dependent phosphatidate phosphatase activity
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