Literature DB >> 19607842

Steric and electrostatic effects at the C2 atom substituent influence replication and miscoding of the DNA deamination product deoxyxanthosine and analogs by DNA polymerases.

Huidong Zhang1, Urban Bren, Ivan D Kozekov, Carmelo J Rizzo, Donald F Stec, F Peter Guengerich.   

Abstract

Deoxyinosine (dI) and deoxyxanthosine (dX) are both formed in DNA at appreciable levels in vivo by deamination of deoxyadenosine (dA) and deoxyguanosine (dG), respectively, and can miscode. Structure-activity relationships for dA pairing have been examined extensively using analogs but relatively few studies have probed the roles of the individual hydrogen-bonding atoms of dG in DNA replication. The replicative bacteriophage T7 DNA polymerase/exonuclease and the translesion DNA polymerase Sulfolobus solfataricus pol IV were used as models to discern the mechanisms of miscoding by DNA polymerases. Removal of the 2-amino group from the template dG (i.e., dI) had little impact on the catalytic efficiency of either polymerase, as judged by either steady-state or pre-steady-state kinetic analysis, although the misincorporation frequency was increased by an order of magnitude. dX was highly miscoding with both polymerases, and incorporation of several bases was observed. The addition of an electronegative fluorine atom at the 2-position of dI lowered the oligonucleotide T(m) and strongly inhibited incorporation of dCTP. The addition of bromine or oxygen (dX) at C2 lowered the T(m) further, strongly inhibited both polymerases, and increased the frequency of misincorporation. Linear activity models show the effects of oxygen (dX) and the halogens at C2 on both DNA polymerases as mainly due to a combination of both steric and electrostatic factors, producing a clash with the paired cytosine O2 atom, as opposed to either bulk or perturbation of purine ring electron density alone.

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Year:  2009        PMID: 19607842      PMCID: PMC2755575          DOI: 10.1016/j.jmb.2009.07.019

Source DB:  PubMed          Journal:  J Mol Biol        ISSN: 0022-2836            Impact factor:   5.469


  79 in total

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3.  DNA adduct bypass polymerization by Sulfolobus solfataricus DNA polymerase Dpo4: analysis and crystal structures of multiple base pair substitution and frameshift products with the adduct 1,N2-ethenoguanine.

Authors:  Hong Zang; Angela K Goodenough; Jeong-Yun Choi; Adriana Irimia; Lioudmila V Loukachevitch; Ivan D Kozekov; Karen C Angel; Carmelo J Rizzo; Martin Egli; F Peter Guengerich
Journal:  J Biol Chem       Date:  2005-06-17       Impact factor: 5.157

4.  Synthesis and properties of oligonucleotides containing 2'-deoxynebularine and 2'-deoxyxanthosine.

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Journal:  Nucleic Acids Res       Date:  1986-10-24       Impact factor: 16.971

5.  Hydrogen bonding revisited: geometric selection as a principal determinant of DNA replication fidelity.

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Journal:  Proc Natl Acad Sci U S A       Date:  1997-09-30       Impact factor: 11.205

Review 6.  Biochemical basis of DNA replication fidelity.

Authors:  M F Goodman; S Creighton; L B Bloom; J Petruska
Journal:  Crit Rev Biochem Mol Biol       Date:  1993       Impact factor: 8.250

7.  Template activity of poly(2'-fluoro-2'-deoxyinosinic acid) for murine leukemia virus reverse transcriptase.

Authors:  T Fukui; E De Clerq; N Kakiuchi; M Ikehara
Journal:  Cancer Lett       Date:  1982 Jul-Aug       Impact factor: 8.679

8.  Misincorporation and stalling at O(6)-methylguanine and O(6)-benzylguanine: evidence for inactive polymerase complexes.

Authors:  Adrienne M Woodside; F Peter Guengerich
Journal:  Biochemistry       Date:  2002-01-22       Impact factor: 3.162

9.  Fidelity of Dpo4: effect of metal ions, nucleotide selection and pyrophosphorolysis.

Authors:  Alexandra Vaisman; Hong Ling; Roger Woodgate; Wei Yang
Journal:  EMBO J       Date:  2005-08-18       Impact factor: 11.598

10.  Enhancing the "A-rule" of translesion DNA synthesis: promutagenic DNA synthesis using modified nucleoside triphosphates.

Authors:  Babho Devadoss; Irene Lee; Anthony J Berdis
Journal:  Biochemistry       Date:  2007-11-06       Impact factor: 3.162

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  7 in total

1.  Frameshift deletion by Sulfolobus solfataricus P2 DNA polymerase Dpo4 T239W is selective for purines and involves normal conformational change followed by slow phosphodiester bond formation.

Authors:  Huidong Zhang; Jeff W Beckman; F Peter Guengerich
Journal:  J Biol Chem       Date:  2009-10-16       Impact factor: 5.157

2.  Pseudomonas aeruginosa phage PaP1 DNA polymerase is an A-family DNA polymerase demonstrating ssDNA and dsDNA 3'-5' exonuclease activity.

Authors:  Binyan Liu; Shiling Gu; Nengsong Liang; Mei Xiong; Qizhen Xue; Shuguang Lu; Fuquan Hu; Huidong Zhang
Journal:  Virus Genes       Date:  2016-04-06       Impact factor: 2.332

Review 3.  Mechanisms of mutagenesis: DNA replication in the presence of DNA damage.

Authors:  Binyan Liu; Qizhen Xue; Yong Tang; Jia Cao; F Peter Guengerich; Huidong Zhang
Journal:  Mutat Res Rev Mutat Res       Date:  2016-04-07       Impact factor: 5.657

4.  Efficient recognition of an unpaired lesion by a DNA repair glycosylase.

Authors:  Derek M Lyons; Patrick J O'Brien
Journal:  J Am Chem Soc       Date:  2009-12-16       Impact factor: 15.419

5.  Synthetic nucleotides as probes of DNA polymerase specificity.

Authors:  Jason M Walsh; Penny J Beuning
Journal:  J Nucleic Acids       Date:  2012-06-07

6.  Role of magnesium ions in the reaction mechanism at the interface between Tm1631 protein and its DNA ligand.

Authors:  Mitja Ogrizek; Janez Konc; Urban Bren; Milan Hodošček; Dušanka Janežič
Journal:  Chem Cent J       Date:  2016-07-08       Impact factor: 4.215

7.  Error-Free Bypass of 7,8-dihydro-8-oxo-2'-deoxyguanosineby DNA Polymerase of Pseudomonas aeruginosa Phage PaP1.

Authors:  Shiling Gu; Qizhen Xue; Qin Liu; Mei Xiong; Wanneng Wang; Huidong Zhang
Journal:  Genes (Basel)       Date:  2017-01-06       Impact factor: 4.096

  7 in total

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