Literature DB >> 22795082

Binding mechanism of metal⋅NTP substrates and stringent-response alarmones to bacterial DnaG-type primases.

Richard U Rymer1, Francisco A Solorio, Ashley K Tehranchi, Clement Chu, Jacob E Corn, James L Keck, Jue D Wang, James M Berger.   

Abstract

Primases are DNA-dependent RNA polymerases found in all cellular organisms. In bacteria, primer synthesis is carried out by DnaG, an essential enzyme that serves as a key component of DNA replication initiation, progression, and restart. How DnaG associates with nucleotide substrates and how certain naturally prevalent nucleotide analogs impair DnaG function are unknown. We have examined one of the earliest stages in primer synthesis and its control by solving crystal structures of the S. aureus DnaG catalytic core bound to metal ion cofactors and either individual nucleoside triphosphates or the nucleotidyl alarmones, pppGpp and ppGpp. These structures, together with both biochemical analyses and comparative studies of enzymes that use the same catalytic fold as DnaG, pinpoint the predominant nucleotide-binding site of DnaG and explain how the induction of the stringent response in bacteria interferes with primer synthesis.
Copyright © 2012 Elsevier Ltd. All rights reserved.

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Year:  2012        PMID: 22795082      PMCID: PMC3438381          DOI: 10.1016/j.str.2012.05.017

Source DB:  PubMed          Journal:  Structure        ISSN: 0969-2126            Impact factor:   5.006


  64 in total

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Journal:  Methods       Date:  2011-07-29       Impact factor: 3.608

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10.  Overview of the CCP4 suite and current developments.

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  33 in total

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Authors:  Brent W Anderson; Kuanqing Liu; Christine Wolak; Katarzyna Dubiel; Fukang She; Kenneth A Satyshur; James L Keck; Jue D Wang
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3.  Genome-wide effects on Escherichia coli transcription from ppGpp binding to its two sites on RNA polymerase.

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7.  Molecular Mechanism of Regulation of the Purine Salvage Enzyme XPRT by the Alarmones pppGpp, ppGpp, and pGpp.

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Review 8.  Sleeper cells: the stringent response and persistence in the Borreliella (Borrelia) burgdorferi enzootic cycle.

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