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Dive into the research topics where Mark A. Griep is active.

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Featured researches published by Mark A. Griep.


Biochemistry | 2017

Identification of a Ligand-Binding Site on the Staphylococcus aureus DnaG Primase C-Terminal Domain

Jonathan Catazaro; Jessica Periago; Matthew D. Shortridge; Bradley Worley; Andrew Kirchner; Robert Powers; Mark A. Griep

The interface between the DnaG primase C-terminal domain (CTD) and the N-terminal domain of DnaB helicase is essential for bacterial DNA replication because it allows coordinated priming of DNA synthesis at the replication fork while the DNA is being unwound. Because these two proteins are conserved in all bacteria and distinct from those in eukaryotes, their interface is an attractive antibiotic target. To learn more about this interface, we determined the solution structure and dynamics of the DnaG primase CTD from Staphylococcus aureus, a medically important bacterial species. Comparison with the known primase CTD structures shows there are two biologically relevant conformations, an open conformation that likely binds to DnaB helicase and a closed conformation that does not. The S. aureus primase CTD is in the closed conformation, but nuclear magnetic resonance (NMR) dynamic studies indicate there is considerable movement in the linker between the two subdomains and that N564 is the most dynamic residue within the linker. A high-throughput NMR ligand affinity screen identified potential binding compounds, among which were acycloguanosine and myricetin. Although the affinity for these compounds and adenosine was in the millimolar range, all three bind to a common pocket that is present only on the closed conformation of the CTD. This binding pocket is at the opposite end of helices 6 and 7 from N564, the key hinge residue. The identification of this binding pocket should allow the development of stronger-binding ligands that can prevent formation of the CTD open conformation that binds to DnaB helicase.


Biochemistry | 2000

DnaB Helicase Stimulates Primer Synthesis Activity on Short Oligonucleotide Templates

Scott K. Johnson; Saumitri Bhattacharyya; Mark A. Griep


Journal of Biological Chemistry | 1989

Glutamate overcomes the salt inhibition of DNA polymerase III holoenzyme.

Mark A. Griep; Charles S. McHenry


Biochemistry | 1995

Primer synthesis kinetics by Escherichia coli primase on single-stranded DNA templates

John R. Swart; Mark A. Griep


Journal of Biological Chemistry | 1993

Primase from Escherichia coli primes single-stranded templates in the absence of single-stranded DNA-binding protein or other auxiliary proteins. Template sequence requirements based on the bacteriophage G4 complementary strand origin and Okazaki fragment initiation sites.

John R. Swart; Mark A. Griep


Biochemistry | 2000

DnaB helicase affects the initiation specificity of Escherichia coli primase on single-stranded DNA templates.

Saumitri Bhattacharyya; Mark A. Griep


Biochemistry | 1996

The role of zinc and the reactivity of cysteines in Escherichia coli primase.

Mark A. Griep; Elsbeth R. Lokey


Journal of Biological Chemistry | 1992

Fluorescence energy transfer between the primer and the beta subunit of the DNA polymerase III holoenzyme.

Mark A. Griep; Charles S. McHenry


Journal of Biological Chemistry | 1990

Dissociation of the DNA polymerase III holoenzyme beta 2 subunits is accompanied by conformational change at distal cysteines 333.

Mark A. Griep; Charles S. McHenry


Biochemistry | 1990

Reduction of the potent DNA polymerase III holoenzyme 3'----5' exonuclease activity by template-primer analogues.

Mark A. Griep; Jo Anna Reems; Mary A. Franden; Charles S. McHenry

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Charles S. McHenry

University of Colorado Boulder

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John R. Swart

University of Nebraska–Lincoln

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Jo Anna Reems

University of Colorado Denver

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Saumitri Bhattacharyya

University of Nebraska–Lincoln

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Scott K. Johnson

University of Nebraska–Lincoln

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Andrew Kirchner

University of Nebraska–Lincoln

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Betsy J. Adkins

University of Nebraska–Lincoln

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Bradley Worley

University of Nebraska–Lincoln

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Daniel Hromas

University of Nebraska–Lincoln

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Elsbeth R. Lokey

University of Nebraska–Lincoln

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