Abstract

The complete nucleotide sequence of the Escherichia coli ung gene is described. Transcription initiation and termination sites were determined by S1 nuclease and RNase mapping. The common prokaryotic -35, -10, and the ribosome binding site sequences are represented by TGTTCTGTA, TAAGCTA, and AGGAGAG at their respective locations. A putative hairpin transcription terminator structure is present at the major transcription terminator sites. The open reading frame of the ung gene codes for a protein of 229 amino acids (25,664 daltons). The molecular weight, amino acid composition, and the N-terminal amino acid sequence of the uracil DNA glycosylase purified from E. coli cells match with the open reading frame of the ung gene. The protein sequence analysis shows that the N-terminal methionine is cleaved off in the mature protein. The in vitro transcription coupled translation of the ung gene directs the synthesis of a protein which comigrates with uracil DNA glycosylase. Also, the CNBr cleavage of the protein synthesized in vitro confirms the positions of the methionines deduced from the DNA sequence. The levels of ung gene expression remain constant up to the early stationary phase, but decline in the late stationary phase of the E. coli culture. The E. coli gene showed a strong sequence homology to Shigella, a weak sequence homology to Salmonella and Citrobacter, and a very weak sequence homology to Proteus genes. No sequence homologies were seen for Pseudomonas, Clostridium, Micrococcus, and several eukaryotic genomes.

Highlights

  • The complete nucleotide sequence of tEhsecherichia cells [1, 2]

  • The cells match with the open reading frame of the ung uracil DNA glycosylases have been shown to excise some of gene

  • In order to study the mechanism of action of uracil DNA glycosylase, the complete nucleotide sequence of the E. coli ung gene was determined and is presented in this paper

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Summary

THEJOURNAOLF BIOLOGICACLHEMISTRY

Q 1988by The American Society for Biochemistry and Molecular Biology, Inc. Vol,263,No Issue of June 5,pp. 7776-7784,1988 Printed in U.S.A. 7776-7784,1988 Printed in U.S.A. Sequence Analysis, Expression, and Conservationof Escherichia coli Uracil DNA Glycosylase andIts Gene (ung)*. The cells match with the open reading frame of the ung uracil DNA glycosylases have been shown to excise some of gene. In order to study the mechanism of action of uracil DNA glycosylase, the complete nucleotide sequence of the E. coli ung gene was determined and is presented in this paper. The open reading frame of the gene, confirmed by N-terminal protein sequence analysis, codes for a protein of664 Da. DNA glycosylasesexcise damaged or unconventional bases which contains a single cysteine residue towards the C terfrom DNA and initiate the DNA repair pathway. The structure, expression, and some ascosylases have been identified and purified from prokaryotic pects of the ung gene conservation among other organisms and eukaryotic sources [1,2] These enzymes are present in are reported. Plusmid DNA-Plasmid DNAs were prepared from overnight cultures of the plasmid harboring E. coli cells using the boiling method

SI Nuclease Mapping
Southern Blot Analysis
RNase Mapping
In Vitro Transcription Coupled Translations
Purification of Uracil DNA Glycosylase
Thelengths of theprotectedfragmentsrepresentthe
CNBr Digestion of the in Vitro Synthesized ung Gene Product
Composition from protein hvdrolvsis
DISCUSSION
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