Probing the role of threonine and serine residues of E. coli asparaginase II by site-specific mutagenesis.

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Citation

Derst C, Henseling J, Rohm KH

Probing the role of threonine and serine residues of E. coli asparaginase II by site-specific mutagenesis.

Protein Eng. 1992 Dec;5(8):785-9.

PubMed ID
1287659 [ View in PubMed
]
Abstract

Site-specific mutagenesis has been used to probe amino acid residues proposed to be critical in catalysis by Escherichia coli asparaginase II. Thr12 is conserved in all known asparaginases. The catalytic constant of a T12A mutant towards L-aspartic acid beta-hydroxamate was reduced to 0.04% of wild type activity, while its Km and stability against urea denaturation were unchanged. The mutant enzyme T12S exhibited almost normal activity but altered substrate specificity. Replacement of Thr119 with Ala led to a 90% decrease of activity without markedly affecting substrate binding. The mutant enzyme S122A showed normal catalytic function but impaired stability in urea solutions. These data indicate that the hydroxyl group of Thr12 is directly involved in catalysis, probably by favorably interacting with a transition state or intermediate. By contrast, Thr119 and Ser122, both putative target sites of the inactivator DONV, are functionally less important.

DrugBank Data that Cites this Article

Polypeptides
NameUniProt ID
L-asparaginase 2P00805Details