Sphingolipid Metabolism and Cell Signaling, Part A

Abelson, John N.; Simon, Melvin I.

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Table of contents
  • Table of Contentsv
  • Prefacexvii
  • Volumes in Seriesxix
  • Section I: Sphingolipid Metabolism1
  • A. Biosynthesis1
  • Chapter 1. Serine Palmitoyltransferase3
  • Chapter 2. Assay of the Saccharomyces cerevisiae Dihydrosphingosine C-4 Hydroxylase9
  • Chapter 3. Ceramide Synthase15
  • Chapter 4. Dihydroceramide Desaturase22
  • Chapter 5. Assays for the Biosynthesis of Sphingomyelin and Ceramide- Phosphoethanolamine31
  • Chapter 6. Glucosylceramide Synthase: Assay and Properties42
  • Chapter 7. Methods for Studying Glucosylceramide Synthase50
  • Chapter 8. Analysis of Galactolipids and UDP-Galactose: Ceramide Galactosyltransferase59
  • Chapter 9. Assay of Lactosylceramide Synthase and Comments on Its Potential Role in Signal Transduct73
  • Chapter 10. In Vitro Assays for Enzymes of Ganglioside Synthesis82
  • Chapter 11. Analyses of Sulfatide and Enzymes of Sulfatide Metabolism94
  • Chapter 12. 1-O-Acylceramide Synthase105
  • Chapter 13. N-Acetylation of Sphingosine by Platelet-Activating Factor: Sphingosine Transacetylase117
  • Chapter 14. Inositolphosphoryl Ceramide Synthase from Yeast123
  • Chapter 15. Enzymes of Sphingolipid Metabolism in Plants130
  • B. Turnover1
  • Chapter 16. Purification and Characterization of Recombinant Human Acid Sphingomyelinase Expressed i149
  • Chapter 17. Purification of Rat Brain Membrane Neutral Sphingomyelinase156
  • Chapter 18. Sphingomyelinase Assay Using Radiolabeled Substrate164
  • Chapter 19. Robotic Assay of Sphingomyelinase for High Throughput Screening168
  • Chapter 20. A High Throughput Sphingomyelinase Assay176
  • Chapter 21. Analyses of Sphingomyelin Hydrolysis in Caveolar Membranes184
  • Chapter 22. Ceramidases194
  • Chapter 23. Purification of Acid Ceramidase from Human Placenta201
  • Chapter 24. Ceramide Kinase207
  • Chapter 25. Assaying Sphingosine Kinase Activity215
  • Chapter 26. Yeast Sphingosine-1-Phosphate Phosphatases: Assay, Expression, Deletion, Purification, a223
  • Chapter 27. Analysis of Ceramide 1-Phosphate and Sphingosine-1-Phosphate Phosphatase Activities233
  • Chapter 28. Sphingosine-1-Phosphate Lyase244
  • Chapter 29. Sphingolipid Hydrolases and Activator Proteins255
  • Chapter 30. Sphingolipid Hydrolyzing Enzymes in the Gastrointestinal Tract276
  • Chapter 31. Properties of Animal Ceramide Glycanases287
  • C. Genetic Approaches1
  • Chapter 32. Enzymatic N-Deacylation of Sphingolipids297
  • Chapter 33. Genetic Approaches for Studies of Glycolipid Synthetic Enzymes303
  • Chapter 34. Use of Yeast as a Model System for Studies of Sphingolipid Metabolism and Signaling319
  • Section II: Inhibitors of Sphingolipid Biosynthesis333
  • Chapter 35. Isolation and Characterization of Novel Inhibitors of Sphingolipid Biosynthesis: Austral335
  • Chapter 36. Fermentation, Partial Purification, and Use of Serine Palmitoyltransferase Inhibitors fr348
  • Chapter 37. Isolation and Characterization of Fumonisins361
  • Chapter 38. Inhibitors of Glucosylceramide Synthase373
  • Section III: Chemical and Enzymatic Synthesis389
  • Chapter 39. Synthesis of Sphingosine and Sphingoid Bases391
  • Chapter 40. Synthesis of Sphingosine, Radiolabeled Sphingosine, 4-Methyl-cis-Sphingosine, and 1-Amin441
  • Chapter 41. Total Synthesis of Sphingosine and Its Analogs458
  • Chapter 42. Radiolabeling of the Sphingolipid Backbone480
  • Chapter 43. Preparation of Radiolabeled Ceramides and Phosphosphingolipids499
  • Chapter 44. Synthesis of Key Precursors of Radiolabeled Sphingolipids518
  • Chapter 45. Practical Synthesis of N-Palmitoylsphingomyelin and N-Palmitoyldihydrosphingomyelin535
  • Chapter 46. Synthesis and Biological Activity of Glycolipids, with a Focus on Gangliosides and Sulfa547
  • Chapter 47. Sphingolipid Photoaffinity Labels568
  • Chapter 48. Synthesis and Characterization of Metabolically Stable Sphingolipids601
  • Chapter 49. Synthetic Soluble Analogs of Glycolipids for Studies of Virus–Glycolipid Interactions626
  • Chapter 50. Preparation of Radioactive Gangliosides 3H or 14C Isotopically Labeled at the Oligosacch639
  • Chapter 51. Estimating Sphingolipid Metabolism and Trafficking in Cultured Cells Using Radiolabeled656
  • Chapter 52. Enzymatic Synthesis of [14C]Ceramide, [14C]Glycosphingolipids, and w-Aminoceramide682
  • Author Index691
  • Subject Index727
Book details
  • Vendor Elsevier S & T
  • SKU 9780121822125
  • ISBN-13 9780080496689
  • Author Abelson, John N.; Simon, Melvin I.
  • Category Medical
  • Subject Biochemistry

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Sphingolipids are found in all eukaryotic and in some prokaryotic organisms and provide structure for cell membranes, lipoproteins, and other biological materials as well as participate in the regulation of cell growth, differentiation, and diverse cell functions, including cell-cell communication, cell-substratum interactions, and intracellular signal transduction. This volume presents methods used in studying enzymes of sphingolipid biosynthesis and turnover, including inhibitors of some of these enzymes, genetic approaches, and organic and enzymatic syntheses of sphingolipids and analogs. Its companion Volume 312 will contain information on analyzing sphingolipids, sphingolipid transport and trafficking, and sphingolipid-protein interactions and cellular targets.
The critically acclaimed laboratory standard for more than forty years, Methods in Enzymology is one of the most highly respected publications in the field of biochemistry. Since 1955, each volume has been eagerly awaited, frequently consulted, and praised by researchers and reviewers alike. Now with more than 300 volumes (all of them still in print), the series contains much material still relevant today--truly an essential publication for researchers in all fields of life sciences.