The Block of DNA Polymerase   Strand Displacement Activity by an Abasic Site Can Be Rescued by the Concerted Action of DNA Polymerase   and Flap Endonuclease 1 (original) (raw)

Stimulation of DNA Synthesis Activity of Human DNA Polymerase by PCNA

Satya Prakash

Molecular and Cellular Biology, 2002

View PDFchevron_right

Okazaki fragment processing: Modulation of the strand displacement activity of DNA polymerase by the concerted action of replication protein A, proliferating cell nuclear antigen, and flap endonuclease-1

Giovanni Maga

Proceedings of The National Academy of Sciences, 2001

View PDFchevron_right

Interaction with PCNA Is Essential for Yeast DNA Polymerase η Function

Satya Prakash

Molecular Cell, 2001

View PDFchevron_right

Immunoaffinity purification of DNA polymerase δ1

Marietta Y. W. T. Lee

Archives of Biochemistry and Biophysics, 1995

View PDFchevron_right

Biochemical Analysis of DNA Polymerase η Fidelity in the Presence of Replication Protein A

SAMUEL JOB ORTIZ SUAREZ

PLoS ONE, 2014

View PDFchevron_right

Structural Basis for FEN-1 Substrate Specificity and PCNA-Mediated Activation in DNA Replication and Repair

John Tainer

Cell, 2004

View PDFchevron_right

The N 2 -Ethylguanine and the O 6 -Ethyl- and O 6 -Methylguanine Lesions in DNA: Contrasting Responses from the “Bypass” DNA Polymerase η and the Replicative DNA Polymerase α

Stacy Gelhaus, William Lacourse

Chemical Research in Toxicology, 2003

View PDFchevron_right

Targeting of human DNA polymerase to the replication machinery via interaction with PCNA

Satya Prakash

Proceedings of The National Academy of Sciences, 2001

View PDFchevron_right

Purification and characterization of a yeast DNA polymerase .alpha. complex with associated primase, 5'.fwdarw.3' exonuclease, and DNA-dependent ATPase activities

Esther Biswas

Biochemistry, 1993

View PDFchevron_right

Error-free bypass of 2-hydroxyadenine by human DNA polymerase with Proliferating Cell Nuclear Antigen and Replication Protein A in different sequence contexts

Giovanni Maga

Nucleic Acids Research, 2007

View PDFchevron_right

Efficient Bypass and Base Misinsertions at Abasic Sites by Prokaryotic RNA Polymerases

Paul Doetsch

Annals of the New York Academy of Sciences, 1994

View PDFchevron_right

Nucleotide Excision Repair DNA Synthesis by DNA Polymerase .epsilon. in the Presence of PCNA, RFC, and RPA

Mahmud K . K . Shivji

Biochemistry, 1995

View PDFchevron_right

Lagging Strand DNA Synthesis at the Eukaryotic Replication Fork Involves Binding and Stimulation of FEN-1 by Proliferating Cell Nuclear Antigen

Michael Lieber

Journal of Biological Chemistry, 1995

View PDFchevron_right

DNA polymerase switching: I. Replication factor C displaces DNA polymerase α prior to PCNA loading

Silvio Spadari

Journal of Molecular Biology, 2000

View PDFchevron_right

Mechanism of DNA replication fidelity for three mutants of DNA polymerase I: Klenow fragment KF(exo+), KF(polA5), and KF(exo-)

Robert Kuchta

Biochemistry, 1991

View PDFchevron_right

DNA Polymerase Clamp Shows Little Turnover at Established Replication Sites but Sequential De Novo Assembly at Adjacent Origin Clusters

Anjeli Cristina

Molecular Cell, 2002

View PDFchevron_right

Repair of DNA strand gaps and nicks containing 3'-phosphate and 5'- hydroxyl termini by purified mammalian enzymes

Feridoun Karimi-busheri

Nucleic Acids Research, 1998

View PDFchevron_right

Studies on Human DNA Polymerase ϵ and GINS Complex and Their Role in DNA Replication

Vladimir Bermudez

Journal of Biological Chemistry, 2011

View PDFchevron_right

8-oxo-guanine bypass by human DNA polymerases in the presence of auxiliary proteins

Giovanni Maga

Nature, 2007

View PDFchevron_right

The mechanism of DNA replication primer synthesis by RNA polymerase

Konstantin Severinov

Nature, 2006

View PDFchevron_right

Dynamics of enzymatic interactions during short flap human Okazaki fragment processing by two forms of human DNA polymerase δ

Marietta Y. W. T. Lee

DNA Repair, 2013

View PDFchevron_right

DNA Synthesis across an Abasic Lesion by Yeast Rev1 DNA Polymerase

Deepak Nair

Journal of Molecular Biology, 2011

View PDFchevron_right

Abasic translesion synthesis by DNA polymerase β violates the 'A- rule'. Novel types of nucleotide incorporation by human DNA polymerase β at an abasic lesion in different sequence contexts

Ramon Eritja

Journal of Biological Chemistry, 1997

View PDFchevron_right

Localisation of human DNA polymerase kappa to replication foci

Vincent Verbiest

Journal of Cell Science, 2002

View PDFchevron_right

Processing of branched DNA intermediates by a complex of human FEN-1 and PCNA

Michael Lieber

Nucleic Acids Research, 1996

View PDFchevron_right

Efficient and Error-Free Replication Past a Minor-Groove DNA Adduct by the Sequential Action of Human DNA Polymerases and

Irina Minko

Mol Cell Biol, 2004

View PDFchevron_right

Increased Activity and Fidelity of DNA Polymerase beta on Single-nucleotide Gapped DNA

Alexander Chagovetz

Journal of Biological Chemistry, 1997

View PDFchevron_right

Eukaryotic DNA polymerases, a growing family

Heinz Peter Nasheuer

Trends in Biochemical Sciences, 2000

View PDFchevron_right

The enzymology of DNA replication

Rafael Vicuña

Archivos de biología y medicina experimentales, 1980

View PDFchevron_right

Efficient and error-free replication past a minor-groove DNA adduct by the sequential action of human DNA polymerases i and κ

Irina Minko

Molecular and Cellular Biology, 2004

View PDFchevron_right

Characterization of Human DNA Polymerase Delta and Its Subassemblies Reconstituted by Expression in the Multibac System

Marietta Y. W. T. Lee

PLoS ONE, 2012

View PDFchevron_right

Modulation of the 5'-Deoxyribose-5-phosphate Lyase and DNA Synthesis Activities of Mammalian DNA Polymerase by Apurinic/Apyrimidinic Endonuclease 1

Bruce Demple

Journal of Biological Chemistry, 2004

View PDFchevron_right

Human replication protein A can suppress the intrinsic in vitro mutator phenotype of human DNA polymerase

Silvio Spadari

Nucleic Acids Research, 2006

View PDFchevron_right

Inhibition of FEN1 Processing by DNA Secondary Structure at Trinucleotide Repeats

Goutam Gupta

Molecular Cell, 1999

View PDFchevron_right

Physical and functional interactions of human DNA polymerase {eta} with PCNA

satya prakash

… and cellular biology, 2001

View PDFchevron_right