Abstract

The strictly conserved arginine residue proximal to the active site tyrosine of type IA topoisomerases is required for the relaxation of supercoiled DNA and was hypothesized to be required for positioning of the scissile phosphate for DNA cleavage to take place. Mutants of recombinant Yersinia pestis topoisomerase I with hydrophobic substitutions at this position were found in genetic screening to exhibit a dominant lethal phenotype, resulting in drastic loss in Escherichia coli viability when overexpressed. In depth biochemical analysis of E. coli topoisomerase I with the corresponding Arg-321 mutation showed that DNA cleavage can still take place in the absence of this arginine function if Mg(2+) is present to enhance the interaction of the enzyme with the scissile phosphate. However, DNA rejoining is inhibited in the absence of this conserved arginine, resulting in accumulation of the cleaved covalent intermediate and loss of relaxation activity. These new experimental results demonstrate that catalysis of DNA rejoining by type IA topoisomerases has a more stringent requirement than DNA cleavage. In addition to the divalent metal ions, the side chain of this arginine residue is required for the precise positioning of the phosphotyrosine linkage for nucleophilic attack by the 3'-OH end to result in DNA rejoining. Small molecules that can interfere or distort the enzyme-DNA interactions required for DNA rejoining by bacterial type IA topoisomerases could be developed into novel antibacterial drugs.

Highlights

  • Grants R01 GM054226 and AI069313. 1 To whom correspondence should be addressed: Dept. of Biochemistry and Molecular Biology, New York Medical College, Valhalla, NY 10595

  • The use of recombinant Y. pestis topoisomerase I with inducible expression in E. coli has been useful for identifying mutations in bacterial topoisomerase I that affect the DNA rejoining step

  • Previous studies showed that mutation of E. coli topoisomerase I Arg321 to alanine resulted in a significant loss in the relaxation activity of the enzyme [17, 18]

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Summary

EXPERIMENTAL PROCEDURES

Identification of Y. pestis Topoisomerase I Mutants with Deficiency in DNA Rejoining—E. coli strain JD5 containing the chromosomal dinD1::lacZ fusion as SOS response reporter was transformed with plasmid pYTOP expressing Y. pestis topoisomerase I (YpTOP1) under the control of the BAD promoter [22]. Random mutations were introduced into the YpTOP1 coding sequence by PCR [22]. The transformants were first isolated on Luria-Bertani (LB) plates with 100 ␮g/ml ampicillin

The abbreviations used are
RESULTS
DISCUSSION
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