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Cellular Control of the Synthesis and Activity of the Bacterial Luminescent System

Journal of Bacteriology · 1970 · Vol. 104(1) · pp. 313–322
Kenneth H. NealsonTerry PlattJ. Woodland Hastings

Abstract

In bioluminescent bacteria growing in shake flasks, the enzyme luciferase has been shown to be synthesized in a relatively short burst during the period of exponential growth. The luciferase gene appears to be completely inactive in a freshly inoculated culture; the pulse of preferential luciferase synthesis which occurs later is the consequence of its activation at the level of deoxyribonucleic acid transcription which is attributed to an effect of a "conditioning" of the medium by the growing of cells. Although cells grown in a minimal medium also exhibit a similar burst of synthesis of the luminescent system, the amount of synthesis is quantitatively less, relative to cell mass. Under such conditions, added arginine results in a striking stimulation of bioluminescence. This is attributed to a stimulation of existing patterns of synthesis and not to induction or derepression per se.

bioluminescence and chemiluminescence researchPhotoreceptor and optogenetics researchChemical Reactions and IsotopesDerepressionLuciferaseBioluminescenceBiologyBiochemistryChemically defined mediumStimulationBacteriaDNA synthesisCell biology

MeSH terms

AldehydesAnimalsArginineChloramphenicolCulture MediaCyanidesEnzyme InductionLightLuciferasesLuminescent MeasurementsMutagensMutationPhotobacteriumRabbitsRifampin
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