Literature DB >> 3127654

Structure and regulation of the anthranilate synthase genes in Pseudomonas aeruginosa: I. Sequence of trpG encoding the glutamine amidotransferase subunit.

I P Crawford1, L Eberly.   

Abstract

We have determined the DNA sequence of the distal 148 codons of trpE and all of trpG in Pseudomonas aeruginosa. These genes encode, respectively, the large and small (glutamine amidotransferase) subunits of anthranilate synthase, the first enzyme in the tryptophan synthetic pathway. The sequenced region of trpE is homologous with the distal portion of E. coli and Bacillus subtilis trpE, whereas the trpG sequence is homologous to the glutamine amidotransferase subunit genes of a number of bacterial and fungal anthranilate synthases. The two coding sequences overlap by 23 bp. Codon usage in these Pseudomonas genes shows a marked preference for codons ending in G or C, thereby resembling that of trpB, trpA, and several other chromosomal loci from this species and others with a high G + C content in their DNA. The deduced amino acid sequence for the P. aeruginosa trpG gene product differs to a surprising extent from the directly determined amino acid sequence of the glutamine amidotransferase subunit of P. putida anthranilate synthase (Kawamura et al. 1978). This suggests that these two proteins are encoded by loci that duplicated much earlier in the phylogeny of these organisms but have recently assumed the same function. We have also determined 490 bp of DNA sequence distal to trpG but have not ascertained the function of this segment, though it is rich in dyad symmetries.

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Year:  1986        PMID: 3127654     DOI: 10.1093/oxfordjournals.molbev.a040408

Source DB:  PubMed          Journal:  Mol Biol Evol        ISSN: 0737-4038            Impact factor:   16.240


  11 in total

1.  DNA sequences and characterization of four early genes of the tryptophan pathway in Pseudomonas aeruginosa.

Authors:  D W Essar; L Eberly; C Y Han; I P Crawford
Journal:  J Bacteriol       Date:  1990-02       Impact factor: 3.490

2.  Sequence of the Pseudomonas aeruginosa trpI activator gene and relatedness of trpI to other procaryotic regulatory genes.

Authors:  M Chang; A Hadero; I P Crawford
Journal:  J Bacteriol       Date:  1989-01       Impact factor: 3.490

3.  Complementation of a trpE deletion in Escherichia coli by Spirochaeta aurantia DNA encoding anthranilate synthetase component I activity.

Authors:  B Brahamsha; E P Greenberg
Journal:  J Bacteriol       Date:  1987-08       Impact factor: 3.490

4.  Identification and characterization of genes for a second anthranilate synthase in Pseudomonas aeruginosa: interchangeability of the two anthranilate synthases and evolutionary implications.

Authors:  D W Essar; L Eberly; A Hadero; I P Crawford
Journal:  J Bacteriol       Date:  1990-02       Impact factor: 3.490

5.  Codon usage in Pseudomonas aeruginosa.

Authors:  S E West; B H Iglewski
Journal:  Nucleic Acids Res       Date:  1988-10-11       Impact factor: 16.971

6.  Genetic organization and sequence of the Pseudomonas cepacia genes for the alpha and beta subunits of protocatechuate 3,4-dioxygenase.

Authors:  G J Zylstra; R H Olsen; D P Ballou
Journal:  J Bacteriol       Date:  1989-11       Impact factor: 3.490

7.  Identification and nucleotide sequence of the Leptospira biflexa serovar patoc trpE and trpG genes.

Authors:  D B Yelton; S L Peng
Journal:  J Bacteriol       Date:  1989-04       Impact factor: 3.490

8.  Sequence analysis of the hutH gene encoding histidine ammonia-lyase in Pseudomonas putida.

Authors:  M W Consevage; A T Phillips
Journal:  J Bacteriol       Date:  1990-05       Impact factor: 3.490

9.  A novel transposon-like structure carries the genes for pyocin AP41, a Pseudomonas aeruginosa bacteriocin with a DNase domain homology to E2 group colicins.

Authors:  Y Sano; M Kageyama
Journal:  Mol Gen Genet       Date:  1993-02

Review 10.  Histidine biosynthesis, its regulation and biotechnological application in Corynebacterium glutamicum.

Authors:  Robert K Kulis-Horn; Marcus Persicke; Jörn Kalinowski
Journal:  Microb Biotechnol       Date:  2013-04-25       Impact factor: 5.813

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