Bioluminescence and Chemiluminescence, Part C

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Table of contents
  • Table of Contentsv
  • Contributors to Volume 305xi
  • Prefacexv
  • Volumes in Seriesxvii
  • Section I: Chemiluminescence and Bioluminescence: Overviews1
  • Chapter 1. Chemical Generation of Excited States: The Basis of Chemiluminescence and Bioluminescence3
  • Chapter 2. Some Brief Notes on Nomenclature and Units and Standards Used in Bioluminescence and Chem47
  • Section II: Instrumentation51
  • Chapter 3. Physics of Low Light Detectors53
  • Chapter 4. Luminometer Design and Low Light Detection62
  • Chapter 5. Absolute Calibration of Luminometers with Low-Level Light Standards87
  • Chapter 6. Commercially Available Luminometers and Low-Level Light Imaging Devices96
  • Chapter 7. Automated Recordings of Bioluminescence with Special Reference to the Analysis of Circadi104
  • Chapter 8. Chemiluminescence Imaging Systems for the Analysis of Macrosamples: Microtiter Format, Bl120
  • Section III: Luciferases, Luminescence Accessory Proteins, and Substrates133
  • Chapter 9. Overexpression of Bacterial Luciferase and Purification from Recombinant Sources135
  • Chapter 10. Purification of Luciferase Subunits from Recombinant Sources152
  • Chapter 11. A Rapid Chromatographic Method to Separate the Subunits of Bacterial Luciferase in Urea157
  • Chapter 12. Purification and Ligand Exchange Protocols for Antenna Proteins from Bioluminescent Bact164
  • Chapter 13. Purification of Firefly Luciferase from Recombinant Sources180
  • Chapter 14. Chemical Synthesis of Firefly Luciferin Analogs and Inhibitors188
  • Chapter 15. Structural Basis for Understanding Spectral Variations in Green Fluorescent Protein196
  • Chapter 16. Large-Scale Purification of Recombinant GFP from Escherichia coli212
  • Chapter 17. Recombinant Obelin: Cloning and Expression of cDNA, Purification, and Characterization a223
  • Chapter 18. Gonyaulax Luciferase: Gene Structure, Protein Expression, and Purification from Recombin249
  • Chapter 19. Dinoflagellate Luciferin-Binding Protein258
  • Section IV: Bacterial Autoinduction System and Its Applications277
  • Chapter 20. Assay of Autoinducer Activity with Luminescent Escherichia coli Sensor Strains Harboring279
  • Chapter 21. Detection, Purification, and Structural Elucidation of the Acylhomoserine Lactone Induce288
  • Chapter 22. Chemical Synthesis of Bacterial Autoinducers and Analogs301
  • Chapter 23. Overexpression of Foreign Proteins Using the Vibrio fischeri lux Control System315
  • Section V: Luminescence-Based Assays in Vitro331
  • Chapter 24. Application of Bioluminescence and Chemiluminescence in the Biomedical Sciences333
  • Chapter 25. Use of Firefly Luciferase in ATP-Related Assays of Biomass, Enzymes, and Metabolites346
  • Chapter 26. Chemiluminescent Methods for Detecting and Quantitating Enzyme Activity370
  • Chapter 27. Chemiluminescence Assay of Serum Alkaline Phosphatase and Phosphoprotein Phosphatases391
  • Chapter 28. Chemiluminescence Screening Assays for Erythrocytes and Leukocytes in Urine402
  • Chapter 29. Immunoassay Protocol for Quantitation of Protein Kinase Activities410
  • Chapter 30. Chemiluminescent Immunodetection Protocols with 1,2-Dioxetane Substrates417
  • Chapter 31. Chemiluminescent Reporter Gene Assays with 1,2-Dioxetane Substrates428
  • Chapter 32. Clinical Application of Southern Blot Hybridization with Chemiluminescence Detection450
  • Chapter 33. Quantitative Polymerase Chain Reaction and Solid-Phase Capture Nucleic Acid Detection466
  • Section VI: Luminescence Monitoring in Vivo477
  • Chapter 34. Targeted Bioluminescent Indicators in Living Cells479
  • Chapter 35. Green Fluorescent Protein as a Reporter of Transcriptional Activity in a Prokaryotic Sys499
  • Chapter 36. Bacterial lux Genes as Reporters in Cyanobacteria513
  • Chapter 37. Application of Bioluminescence to the Study of Circadian Rhythms in Cyanobacteria527
  • Chapter 38. Construction of lux Bacteriophages and the Determination of Specific Bacteria and Their543
  • Chapter 39. Luciferase Gene as Reporter: Comparison with the CAT Gene and Use in Transfection and Mi557
  • Chapter 40. In Situ Hybridization and Immunohistochemistry with Enzyme-Triggered Chemiluminescent Pr577
  • Chapter 41. Blood Phagocyte Luminescence: Gauging Systemic Immune Activation591
  • Section VII: Bioluminescence as an Education Tool631
  • Chapter 42. Demonstrations of Chemiluminescence633
  • Chapter 43. Bioluminescence as a Classroom Tool for Scientist Volunteers660
  • Chapter 44. Green Fluorescent Protein in Biotechnology Education672
  • Author Index681
  • Subject Index715
Book details
  • Vendor Elsevier S & T
  • SKU 9780121822064
  • ISBN-13 9780080496641

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Since the publication of Bioluminescence and Chemiluminescence, Part B, genes have been cloned that encode luciferases from an array of bioluminescent organisms, novel applications of these genes have been developed, and much has been learned of the fundamental chemistry, biochemistry, structural biology, and biophysics of these intriguing enzymes. New strategies for application of chemiluminescence technology have been developed and refined, promising to further reduce the need to use radioisotopes in basic research and clinical laboratory settings. Methods for detection of low levels of light continue to push the limits of detection, allowing ready monitoring in real time of intricate subcellular processes within living cells. This book affords a glimpse of the state of the art of a rapidly advancing field, and presents to users of these methods a detailed reference of current activities in the field.
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.

Key Features
@bul* Outlines the use of luminescent reporter technologies to monitor gene expression and protein trafficking
* Describes the luminescence-based clinical assay technologies
* Details the basic biochemistry, biophysics, and chemistry of light-emitting reactions that are critical for applications
* Includes explanations of the instrumentation used for detection and quantification of low level light
* Shows the new applications of luminescence-based technologies that result largely from broad advances in recombinant DNA technologies and nonscale methods