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1.
Nucleic Acids Res ; 37(1): 38-46, 2009 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-19010961

RESUMO

Replication Protein A is a single-stranded (ss) DNA-binding protein that is highly conserved in eukaryotes and plays essential roles in many aspects of nucleic acid metabolism, including replication, recombination, DNA repair and telomere maintenance. It is a heterotrimeric complex consisting of three subunits: RPA1, RPA2 and RPA3. It possesses four DNA-binding domains (DBD), DBD-A, DBD-B and DBD-C in RPA1 and DBD-D in RPA2, and it binds ssDNA via a multistep pathway. Unlike the RPA1 and RPA2 subunits, no ssDNA-RPA3 interaction has as yet been observed although RPA3 contains a structural motif found in the other DBDs. We show here using 4-thiothymine residues as photoaffinity probe that RPA3 interacts directly with ssDNA on the 3'-side on a 31 nt ssDNA.


Assuntos
DNA de Cadeia Simples/metabolismo , Proteínas de Ligação a DNA/metabolismo , Proteína de Replicação A/metabolismo , Sítios de Ligação , DNA de Cadeia Simples/química , Humanos , Oligonucleotídeos/química , Oligonucleotídeos/metabolismo , Oligonucleotídeos/efeitos da radiação , Ligação Proteica , Subunidades Proteicas/química , Subunidades Proteicas/metabolismo , Timidina/análogos & derivados , Timidina/química , Timidina/efeitos da radiação
2.
Nucleic Acids Res ; 34(17): 4857-65, 2006.
Artigo em Inglês | MEDLINE | ID: mdl-16973897

RESUMO

G-quadruplex structures inhibit telomerase activity and must be disrupted for telomere elongation during S phase. It has been suggested that the replication protein A (RPA) could unwind and maintain single-stranded DNA in a state amenable to the binding of telomeric components. We show here that under near-physiological in vitro conditions, human RPA is able to bind and unfold G-quadruplex structures formed from a 21mer human telomeric sequence. Analyses by native gel electrophoresis, cross-linking and fluorescence resonance energy transfer indicate the formation of both 1:1 and 2:1 complexes in which G-quadruplexes are unfolded. In addition, quadruplex opening by hRPA is much faster than observed with the complementary DNA, demonstrating that this protein efficiently unfolds G-quartets. A two-step mechanism accounting for the binding of hRPA to G-quadruplexes is proposed. These data point to the involvement of hRPA in regulation of telomere maintenance.


Assuntos
DNA/química , Guanina/química , Proteína de Replicação A/metabolismo , Telômero/química , DNA/metabolismo , Transferência Ressonante de Energia de Fluorescência , Quadruplex G , Humanos , Modelos Biológicos , Conformação de Ácido Nucleico , Oligonucleotídeos/química
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