The role of the carboxyl-terminal amino acid residues in Escherichia coli DNA topoisomerase III-mediated catalysis Journal Article


Authors: Zhang, H. L.; Malpure, S.; Li, Z.; Hiasa, H.; DiGate, R. J.
Article Title: The role of the carboxyl-terminal amino acid residues in Escherichia coli DNA topoisomerase III-mediated catalysis
Abstract: The role that the carboxyl-terminal amino acids of Escherichia coli DNA topoisomerase I (Topo I) and III (Topo III) play in catalysis was examined by comparing the properties of Topo III with those of a truncated enzyme lacking the generalized DNA binding domain of Topo III, Topo I, and a hybrid topoisomerase polypeptide containing the amino-terminal 605 amino acids of Topo III and the putative generalized DNA binding domain of Topo I. The deletion of the carboxyl-terminal 49 amino acids of Topo III decreases the affinity of the enzyme for its substrate, single-stranded DNA, by approximately 2 orders of magnitude and reduces Topo III-catalyzed relaxation of supercoiled DNA and Topo III-catalyzed resolution of DNA replication intermediates to a similar extent. Fusion of the carboxyl-terminal 312 amino acid residues of Topo I onto the truncated molecule stimulates topoisomerase.catalyzed relaxation 15-20-fold, to a level comparable with that of full-length Topo III. However, topoisomerase-catalyzed resolution of DNA replication intermediates was only stimulated 2-3-fold. Therefore, the carboxyl-terminal amino acids of these topoisomerases constitute a distinct and separable domain, and this domain is intimately involved in determining the catalytic properties of these polypeptides.
Keywords: dna-binding proteins; nonhuman; dna replication; gene; carboxy terminal sequence; enzyme substrate; structure-activity relationship; chimera; dna; amino acid sequence; molecular sequence data; recombinant fusion proteins; escherichia coli; substrate specificity; base sequence; amino acid; binding sites; catalysis; dna binding; dna topoisomerase; dna topoisomerases, type i; oligodeoxyribonucleotides; polypeptide; dna, superhelical; priority journal; article
Journal Title: Journal of Biological Chemistry
Volume: 271
Issue: 15
ISSN: 0021-9258
Publisher: American Society for Biochemistry and Molecular Biology  
Date Published: 1996-04-12
Start Page: 9039
End Page: 9045
Language: English
DOI: 10.1074/jbc.271.15.9039
PUBMED: 8621552
PROVIDER: scopus
DOI/URL:
Notes: Article -- Export Date: 22 November 2017 -- Source: Scopus
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  1. Hiroshi   Hiasa
    21 Hiasa