2009
DOI: 10.1021/bi900086z
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Mechanisms of DNA Binding and Regulation of Bacillus anthracis DNA Primase

Abstract: DNA primases are pivotal enzymes in chromosomal DNA replication in all organisms. In this article, we report unique mechanistic characteristics of recombinant DNA primase from Bacillus anthracis (B. anthracis). The mechanism of action of B. anthracis DNA primase (DnaGBA) may be described in several distinct steps as follows. Its mechanism of action is initiated when it binds to single-stranded DNA (ssDNA) in the form of a trimer. Although DnaGBA binds to different DNA sequences with moderate affinity (as expec… Show more

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Cited by 3 publications
(2 citation statements)
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“…For example, E. coli DnaG binds ssDNA with affinity of 720 nM (17), whereas S. aureus DnaG binds ssDNA with a six-fold greater affinity, 112 nM [as measured by the same group (50)], which is only three-fold weaker than that of Mtb DnaG. The K d value that we obtained for Mtb DnaG is similar to the recently reported affinity (34 ± 5 nM) of Bacillus anthracis DnaG for an ssDNA oligomer of a similar size (19) and to the DNA-binding affinity of eukaryotic primases (45). These measurements underscore the applicability of our assay to quantitative kinetic and thermodynamic studies of primases.…”
Section: Discussionsupporting
confidence: 86%
“…For example, E. coli DnaG binds ssDNA with affinity of 720 nM (17), whereas S. aureus DnaG binds ssDNA with a six-fold greater affinity, 112 nM [as measured by the same group (50)], which is only three-fold weaker than that of Mtb DnaG. The K d value that we obtained for Mtb DnaG is similar to the recently reported affinity (34 ± 5 nM) of Bacillus anthracis DnaG for an ssDNA oligomer of a similar size (19) and to the DNA-binding affinity of eukaryotic primases (45). These measurements underscore the applicability of our assay to quantitative kinetic and thermodynamic studies of primases.…”
Section: Discussionsupporting
confidence: 86%
“…The functional interaction between the HBD and helicase N-terminal domain appears to be specific, since DnaG from E. coli and S. aureus are not stimulated by the heterologous helicase ( 12 ). Further, E. coli helicase is unable to productively interact with B. anthracis primase ( 24 ).…”
Section: Introductionmentioning
confidence: 99%