Literature DB >> 14596605

Replication protein A interactions with DNA: differential binding of the core domains and analysis of the DNA interaction surface.

Iwona M Wyka1, Kajari Dhar, Sara K Binz, Marc S Wold.   

Abstract

Human replication protein A (RPA) is a heterotrimeric (70, 32, and 14 kDa subunits), eukaryotic single-stranded DNA (ssDNA) binding protein required for DNA recombination, repair, and replication. The three subunits of human RPA are composed of six conserved DNA binding domains (DBDs). Deletion and mutational studies have identified a high-affinity DNA binding core in the central region of the 70 kDa subunit, composed of DBDs A and B. To define the roles of each DBD in DNA binding, monomeric and tandem DBD A and B domain chimeras were created and characterized. Individually, DBDs A and B have a very low intrinsic affinity for ssDNA. In contrast, tandem DBDs (AA, AB, BA, and BB) bind ssDNA with moderate to high affinity. The AA chimera had a much higher affinity for ssDNA than did the other tandem DBDs, demonstrating that DBD A has a higher intrinsic affinity for ssDNA than DBD B. The RPA-DNA interface is similar in both DBD A and DBD B. Mutational analysis was carried out to probe the relative contributions of the two domains to DNA binding. Mutation of polar residues in either core DBD resulted in a significant decrease in the affinity of the RPA complex for ssDNA. RPA complexes with pairs of mutated polar residues had lower affinities than those with single mutations. The decrease in affinity observed when polar mutations were combined suggests that multiple polar interactions contribute to the affinity of the RPA core for DNA. These results indicate that RPA-ssDNA interactions are the result of binding of multiple nonequivalent domains. Our data are consistent with a sequential binding model for RPA, in which DBD A is responsible for positioning and initial binding of the RPA complex while DBD A together with DBD B direct stable, high-affinity binding to ssDNA.

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Year:  2003        PMID: 14596605     DOI: 10.1021/bi034930h

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  41 in total

1.  Theoretical prediction of the binding free energy for mutants of replication protein A.

Authors:  Claudio Carra; Janapriya Saha; Francis A Cucinotta
Journal:  J Mol Model       Date:  2011-12-10       Impact factor: 1.810

2.  Functional characterization of a cancer causing mutation in human replication protein A.

Authors:  Cathy S Hass; Lokesh Gakhar; Marc S Wold
Journal:  Mol Cancer Res       Date:  2010-06-29       Impact factor: 5.852

3.  Structural mechanism of RPA loading on DNA during activation of a simple pre-replication complex.

Authors:  Xiaohua Jiang; Vitaly Klimovich; Alphonse I Arunkumar; Erik B Hysinger; Yingda Wang; Robert D Ott; Gulfem D Guler; Brian Weiner; Walter J Chazin; Ellen Fanning
Journal:  EMBO J       Date:  2006-11-16       Impact factor: 11.598

4.  RPA physically interacts with the human DNA glycosylase NEIL1 to regulate excision of oxidative DNA base damage in primer-template structures.

Authors:  Corey A Theriot; Muralidhar L Hegde; Tapas K Hazra; Sankar Mitra
Journal:  DNA Repair (Amst)       Date:  2010-03-24

5.  The role of p14 subunit of replication protein A in binding to single-stranded DNA.

Authors:  P E Pestryakov; Yu S Krasikova; I O Petruseva; S N Khodyreva; O I Lavrik
Journal:  Dokl Biochem Biophys       Date:  2007 Jan-Feb       Impact factor: 0.788

6.  A CCCH zinc finger conserved in a replication protein a homolog found in diverse Euryarchaeotes.

Authors:  Yuyen Lin; Justin B Robbins; Ernest K D Nyannor; Yi-Hsing Chen; Isaac K O Cann
Journal:  J Bacteriol       Date:  2005-12       Impact factor: 3.490

Review 7.  RPA-coated single-stranded DNA as a platform for post-translational modifications in the DNA damage response.

Authors:  Alexandre Maréchal; Lee Zou
Journal:  Cell Res       Date:  2014-11-18       Impact factor: 25.617

8.  Suppression of the DNA repair defects of BRCA2-deficient cells with heterologous protein fusions.

Authors:  Hiroshi Saeki; Nicolas Siaud; Nicole Christ; Wouter W Wiegant; Paul P W van Buul; Mingguang Han; Malgorzata Z Zdzienicka; Jeremy M Stark; Maria Jasin
Journal:  Proc Natl Acad Sci U S A       Date:  2006-05-26       Impact factor: 11.205

9.  Recycling of single-stranded DNA-binding protein by the bacterial replisome.

Authors:  Lisanne M Spenkelink; Jacob S Lewis; Slobodan Jergic; Zhi-Qiang Xu; Andrew Robinson; Nicholas E Dixon; Antoine M van Oijen
Journal:  Nucleic Acids Res       Date:  2019-05-07       Impact factor: 16.971

10.  Evidence for direct contact between the RPA3 subunit of the human replication protein A and single-stranded DNA.

Authors:  Tonatiuh Romero Salas; Irina Petruseva; Olga Lavrik; Carole Saintomé
Journal:  Nucleic Acids Res       Date:  2008-11-14       Impact factor: 16.971

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