L-asparaginase Genes in Escherichia Coli: Isolation of Mutants and Characterization of the AnsA Gene and Its Protein Product
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Mutants of Escherichia coli have been isolated which are resistant to beta-aspartyl hydroxamate, a lethal substrate of asparaginase II in fungi and a substrate for asparaginase II in E. coli. Among the many phenotypic classes observed, a single mutant (designated GU16) was found with multiple defects affecting asparaginases I and II and aspartase. Other asparaginase II-deficient mutants have also been derived from an asparaginase I-deficient mutant. The mutant strain, GU16, was unable to utilize asparagine and grew poorly on aspartate as the sole source of carbon; transformation of this strain with an E. coli recombinant plasmid library resulted in a large recombinant plasmid which complemented both these defects. Two subclones were isolated, designated pDK1 and pDK2; the former complemented the partial defect in the utilization of aspartate, although its exact function was not established. pDK2 encoded the asparaginase I gene (ansA), the coding region of which was further defined within a 1.7-kilobase fragment. The ansA gene specified a polypeptide, identified in maxicells, with a molecular weight of 43,000. Strains carrying recombinant plasmids encoding the ansA gene overproduced asparaginase I approximately 130-fold, suggesting that the ansA gene might normally be under negative regulation. Extracts from strains overproducing asparaginase I were electrophoresed, blotted, and probed with asparaginase II-specific antisera; no cross-reaction of the antisera with asparaginase I was observed, indicating that asparaginases I and II are not appreciably related immunologically. When a DNA fragment containing the ansA gene was used to probe Southern blots of restriction endonuclease-digested E. coli chromosomal DNA, no homologous sequences were revealed other than the expected ansA-containing fragments. Therefore, the genes encoding asparaginases I and II are highly sequence related.
Kishore V, Nishita K, Manonmani H 3 Biotech. 2017; 5(6):975-981.
PMID: 28324403 PMC: 4624130. DOI: 10.1007/s13205-015-0300-y.
Crystal structure and allosteric regulation of the cytoplasmic Escherichia coli L-asparaginase I.
Yun M, Nourse A, White S, Rock C, Heath R J Mol Biol. 2007; 369(3):794-811.
PMID: 17451745 PMC: 1991333. DOI: 10.1016/j.jmb.2007.03.061.
Linkage map of Escherichia coli K-12, edition 10: the traditional map.
Berlyn M Microbiol Mol Biol Rev. 1998; 62(3):814-984.
PMID: 9729611 PMC: 98936. DOI: 10.1128/MMBR.62.3.814-984.1998.
In vitro alterations of L-asparaginase activity of Tetrahymena pyriformis by lipids.
Tsirka S, Kyriakidis D Mol Cell Biochem. 1988; 83(2):147-55.
PMID: 3143910 DOI: 10.1007/BF00226142.
Jennings M, Beacham I J Bacteriol. 1990; 172(3):1491-8.
PMID: 2407723 PMC: 208625. DOI: 10.1128/jb.172.3.1491-1498.1990.