Site-specific interaction of vaccinia virus topoisomerase I with duplex DNA: Minimal DNA substrate for strand cleavage in vitro Journal Article


Author: Shuman, S.
Article Title: Site-specific interaction of vaccinia virus topoisomerase I with duplex DNA: Minimal DNA substrate for strand cleavage in vitro
Abstract: Purified vaccinia virus DNA topoisomerase I forms a cleavable complex with duplex DNA at a conserved sequence element 5′(C/T)CCTT↓ in the incised DNA strand. DNase I footprint studies show that vaccinia topoisomerase protects the region around the site of covalent adduct formation from nuclease digestion. On the cleaved DNA strand, the protected region extends from +13 to -13 (+1 being the site of cleavage). On the noncleaved strand, the protected region extends from +13 to -9. Similar nuclease protection is observed for a mutant topoisomerase (containing a Tyr → Phe substitution at the active site amino acid 274) that is catalytically inert and does not form the covalent intermediate. Thus, vaccinia topoisomerase is a specific DNA binding protein independent of its competence in transesterification. By studying the cleavage of a series of 12-mer DNA duplexes in which the position of the CCCTT↓ motif within the substrate is systematically phased, the "minimal" substrate for cleavage has been defined; cleavage requires six nucleotides upstream of the cleavage site and two nucleotides downstream of the site. An analysis of the cleavage of oligomer substrates mutated singly in the CCCTT sequence reveals a hierarchy of mutational effects based on position within the pentamer motif and the nature of the sequence alteration.
Keywords: dna-binding proteins; nonhuman; molecular sequence data; kinetics; escherichia coli; recombinant proteins; substrate specificity; vaccinia virus; base sequence; plasmids; binding sites; dna topoisomerase; dna topoisomerases, type i; protein dna interaction; oligodeoxyribonucleotides; vaccinia; priority journal; article; support, non-u.s. gov't; support, u.s. gov't, p.h.s.
Journal Title: Journal of Biological Chemistry
Volume: 266
Issue: 17
ISSN: 0021-9258
Publisher: American Society for Biochemistry and Molecular Biology  
Date Published: 1991-06-15
Start Page: 11372
End Page: 11379
Language: English
PUBMED: 1645733
PROVIDER: scopus
DOI/URL:
Notes: Article -- Export Date: 27 September 2019 -- Source: Scopus
Citation Impact
MSK Authors
  1. Stewart H Shuman
    546 Shuman