1970European Journal of BiochemistryOpen access

Inability of Escherichia coliB to Incorporate Added Deoxycytidine, Deoxyadenosine, and Deoxyguanosine into DNA

Helena Karlström

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Abstract

It is known that Escherichia coli can incorporate labeled thymidine into its DNA, but it has not been previously possible to measure the incorporation of the other deoxyribonucleosides deoxycytidine, deoxyadenosine, and deoxyguanosine because of degradation of these compounds. The present experiments utilize a mutant of E. coli B lacking deoxyribonucleoside‐catabolizing enzymes. This strain, OK441, has mutations affecting the following enzymes: thymidine phosphorylase, purine nucleoside phosphorylase, eytidine deaminase, and adenosine deaminase. The results with OK441 show that E. coli, in contrast to lactobacilli and mammalian cells, does not incorporate any deoxyribonucleoside other than thymidine into its DNA.E. coli may be unable to phosphorylate deoxyeytidine, deoxyadenosine, and deoxyguanosine. In agreement with this suggestion, only thymidine kinase but no other deoxyribonucleotide kinase could be detected in extracts of OK441.

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It is known that Escherichia coli can incorporate labeled thymidine into its DNA, but it has not been previously possible to measure the incorporation of the other deoxyribonucleosides deoxycytidine, deoxyadenosine, and deoxyguanosine because of degradation of these compounds. The present experiments utilize a mutant of E. coli B lacking deoxyribonucleoside‐catabolizing enzymes. This strain, OK441, has mutations affecting the following enzymes: thymidine phosphorylase, purine nucleoside phosphorylase, eytidine deaminase, and adenosine deaminase. The results with OK441 show that E. coli, in contrast to lactobacilli and mammalian cells, does not incorporate any deoxyribonucleoside other than thymidine into its DNA.E. coli may be unable to phosphorylate deoxyeytidine, deoxyadenosine, and deoxyguanosine. In agreement with this suggestion, only thymidine kinase but no other deoxyribonucleotide kinase could be detected in extracts of OK441.

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Available abstract

It is known that Escherichia coli can incorporate labeled thymidine into its DNA, but it has not been previously possible to measure the incorporation of the other deoxyribonucleosides deoxycytidine, deoxyadenosine, and deoxyguanosine because of degradation of these compounds. The present experiments utilize a mutant of E. coli B lacking deoxyribonucleoside‐catabolizing enzymes. This strain, OK441, has mutations affecting the following enzymes: thymidine phosphorylase, purine nucleoside phosphorylase, eytidine deaminase, and adenosine deaminase. The results with OK441 show that E. coli, in contrast to lactobacilli and mammalian cells, does not incorporate any deoxyribonucleoside other than thymidine into its DNA.E. coli may be unable to phosphorylate deoxyeytidine, deoxyadenosine, and deoxyguanosine. In agreement with this suggestion, only thymidine kinase but no other deoxyribonucleotide kinase could be detected in extracts of OK441.

Key concepts: Deoxyadenosine, Deoxyribonucleoside, Deoxyguanosine, Deoxycytidine kinase, Thymidine phosphorylase, Deoxyribonucleosides, Biochemistry, Thymidine

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