BIOLUMINESCENCE
- 1 November 1998
- journal article
- review article
- Published by Annual Reviews in Annual Review of Cell and Developmental Biology
- Vol. 14 (1) , 197-230
- https://doi.org/10.1146/annurev.cellbio.14.1.197
Abstract
▪ Abstract Bioluminescence has evolved independently many times; thus the responsible genes are unrelated in bacteria, unicellular algae, coelenterates, beetles, fishes, and others. Chemically, all involve exergonic reactions of molecular oxygen with different substrates (luciferins) and enzymes (luciferases), resulting in photons of visible light (≈50 kcal). In addition to the structure of luciferan, several factors determine the color of the emissions, such as the amino acid sequence of the luciferase (as in beetles, for example) or the presence of accessory proteins, notably GFP, discovered in coelenterates and now used as a reporter of gene expression and a cellular marker. The mechanisms used to control the intensity and kinetics of luminescence, often emitted as flashes, also vary. Bioluminescence is credited with the discovery of how some bacteria, luminous or not, sense their density and regulate specific genes by chemical communication, as in the fascinating example of symbiosis between luminous bacteria and squid.Keywords
This publication has 145 references indexed in Scilit:
- THE CIRCADIAN RHYTHM OF BIOLUMINESCENCE IN PYROCYSTIS IS NOT DUE TO DIFFERENCES IN THE AMOUNT OF LUCIFERASE: A COMPARATIVE STUDY OF THREE BIOLUMINESCENT MARINE DINOFLAGELLATESJournal of Phycology, 1998
- The 1.5-Å Resolution Crystal Structure of Bacterial Luciferase in Low Salt ConditionsJournal of Biological Chemistry, 1996
- Fluorescence resonance energy transfer between blue-emitting and red-shifted excitation derivatives of the green fluorescent proteinGene, 1996
- Mechanism for iron control of the Vibrio fischeri luminescence system: Involvement of cyclic AMP and cyclic AMP receptor protein and modulation of DNA levelJournal of Bioluminescence and Chemiluminescence, 1992
- Primary structure of the Aequorea victoria green-fluorescent proteinGene, 1992
- Evolutionary origins of bacterial bioluminescenceMolecular Microbiology, 1992
- Purification of the yellow fluorescent protein from vibrio fischeri and identity of the flavin chromophoreBiochemical and Biophysical Research Communications, 1987
- POLYNOIDIN: A MEMBRANE PHOTOPROTEIN ISOLATED FROM THE BIOLUMINESCENT SYSTEM OF SCALE‐WORMSPhotochemistry and Photobiology, 1982
- Mechanism of the enzyme-catalyzed bioluminescent oxidation of coelenterate-type luciferinBiochemical and Biophysical Research Communications, 1978
- Retinal differences between light-tolerant and light-avoiding slugs (Mollusca: Pulmonata)Journal of Ultrastructure Research, 1975