Fremgangsmate, samt diagnostiske sett for bestemmelse av toksisitet ved anvendelse av bakterielle stresspromotere fusert til reporter-gener
This invention provides methods and diagnostic kits for determining the toxicity of a compound. The methods and diagnostic kits of this invention employ a plurality of E. coli hosts, each of which have been transformed with a DNA sequence encoding a unique stress promoter fused to a gene which encod...
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creator | FARR SPENCER B |
description | This invention provides methods and diagnostic kits for determining the toxicity of a compound. The methods and diagnostic kits of this invention employ a plurality of E. coli hosts, each of which have been transformed with a DNA sequence encoding a unique stress promoter fused to a gene which encodes an assayable product. Each of these stress promoters is induced by exposure to a different type of cellular stress. The stress promoters utilized in this invention, in toto, comprises those which respond to redoxo stress, DNA stress, protein stress, energy stress and pH stress. The methods and diagnostic kits of this invention may be employed to characterize and quantify the toxicity of a compound, as well as to identify the cellular mechanism of its toxic action. The methods disclosed herein represent a more humane and economical alternative to the live animal testing currently employed to test the toxicity of new chemicals. Moreover, the methods of this invention, yield information concerning the action of a compound on a subcellular level. This information may be utilized to design antitoxins to compounds found to be toxic and in active drug design. |
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The methods and diagnostic kits of this invention employ a plurality of E. coli hosts, each of which have been transformed with a DNA sequence encoding a unique stress promoter fused to a gene which encodes an assayable product. Each of these stress promoters is induced by exposure to a different type of cellular stress. The stress promoters utilized in this invention, in toto, comprises those which respond to redoxo stress, DNA stress, protein stress, energy stress and pH stress. The methods and diagnostic kits of this invention may be employed to characterize and quantify the toxicity of a compound, as well as to identify the cellular mechanism of its toxic action. The methods disclosed herein represent a more humane and economical alternative to the live animal testing currently employed to test the toxicity of new chemicals. Moreover, the methods of this invention, yield information concerning the action of a compound on a subcellular level. 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The methods and diagnostic kits of this invention employ a plurality of E. coli hosts, each of which have been transformed with a DNA sequence encoding a unique stress promoter fused to a gene which encodes an assayable product. Each of these stress promoters is induced by exposure to a different type of cellular stress. The stress promoters utilized in this invention, in toto, comprises those which respond to redoxo stress, DNA stress, protein stress, energy stress and pH stress. The methods and diagnostic kits of this invention may be employed to characterize and quantify the toxicity of a compound, as well as to identify the cellular mechanism of its toxic action. The methods disclosed herein represent a more humane and economical alternative to the live animal testing currently employed to test the toxicity of new chemicals. Moreover, the methods of this invention, yield information concerning the action of a compound on a subcellular level. 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The methods and diagnostic kits of this invention employ a plurality of E. coli hosts, each of which have been transformed with a DNA sequence encoding a unique stress promoter fused to a gene which encodes an assayable product. Each of these stress promoters is induced by exposure to a different type of cellular stress. The stress promoters utilized in this invention, in toto, comprises those which respond to redoxo stress, DNA stress, protein stress, energy stress and pH stress. The methods and diagnostic kits of this invention may be employed to characterize and quantify the toxicity of a compound, as well as to identify the cellular mechanism of its toxic action. The methods disclosed herein represent a more humane and economical alternative to the live animal testing currently employed to test the toxicity of new chemicals. Moreover, the methods of this invention, yield information concerning the action of a compound on a subcellular level. 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subjects | BEER BIOCHEMISTRY CHEMISTRY COMPOSITIONS OR TEST PAPERS THEREFOR COMPOSITIONS THEREOF CONDITION-RESPONSIVE CONTROL IN MICROBIOLOGICAL ORENZYMOLOGICAL PROCESSES CULTURE MEDIA ENZYMOLOGY INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIRCHEMICAL OR PHYSICAL PROPERTIES MEASURING MEASURING OR TESTING PROCESSES INVOLVING ENZYMES, NUCLEICACIDS OR MICROORGANISMS METALLURGY MICROBIOLOGY MICROORGANISMS OR ENZYMES MUTATION OR GENETIC ENGINEERING PHYSICS PROCESSES OF PREPARING SUCH COMPOSITIONS PROPAGATING, PRESERVING OR MAINTAINING MICROORGANISMS SPIRITS TESTING VINEGAR WINE |
title | Fremgangsmate, samt diagnostiske sett for bestemmelse av toksisitet ved anvendelse av bakterielle stresspromotere fusert til reporter-gener |
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