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The EMBO Journal | 1991

Escherichia coli RuvC protein is an endonuclease that resolves the Holliday structure.

Hiroshi Iwasaki; Masahiko Takahagi; Toshikazu Shiba; Atsuo Nakata; Hideo Shinagawa

Genetic evidence suggests that the Escherichia coli ruvC gene is involved in DNA repair and in the late step of RecE and RecF pathway recombination. To study the biochemical properties of RuvC protein, we overproduced and highly purified the protein. By employing model substrates, we examined the possibility that RuvC protein is an endonuclease that resolves the Holliday structure, an intermediate in genetic recombination in which two double‐stranded DNA molecules are linked by single‐stranded crossover. RuvC protein cleaves cruciform junctions, which are formed by the extrusion of inverted repeat sequences from a supercoiled plasmid and which are structurally analogous to Holliday junctions, by introducing nicks into strands with the same polarity. The nicked ends are ligated by E.coli or T4 DNA ligases. Analysis of the cleavage sites suggests that DNA topology rather than a particular sequence determines the cleavage site. RuvC protein also cleaves Holliday junctions which are formed between gapped circular and linear duplex DNA by the function of RecA protein. However, it does not cleave a synthetic four‐way junction that does not possess homology between arms. The active form of RuvC protein, as studied by gel filtration, is a dimer. This is mechanistically suited for an endonuclease involved in swapping DNA strands at the crossover junctions. From these properties of RuvC protein and the phenotypes of the ruvC mutants, we infer that RuvC protein is an endonuclease that resolves Holliday structures in vivo.


Genes to Cells | 1998

Abortive recombination in Escherichia coli ruv mutants blocks chromosome partitioning

Ken Ishioka; Atsushi Fukuoh; Hiroshi Iwasaki; Atsuo Nakata; Hideo Shinagawa

All the ruvA, ruvB and ruvC mutants of Escherichia coli are sensitive to treatments that damage DNA, and are mildly defective in homologous recombination. It has been reported that the ruv mutants form nonseptate, multinuclear filaments after low doses of UV irradiation, dependent on the sfiA gene product. In vitro, the RuvAB complex promotes the branch migration of Holliday junctions, and RuvC resolves the junctions endonucleolytically.


Genes & Development | 1993

Role of the sigma 70 subunit of RNA polymerase in transcriptional activation by activator protein PhoB in Escherichia coli.

Kozo Makino; Mitsuko Amemura; Soo-Ki Kim; Atsuo Nakata; Hideo Shinagawa


The Japanese Journal of Genetics | 1995

Analysis of the tyrosinase gene of the Japanese pond frog, Rana nigromaculata: Cloning and nucleotide sequence of the genomic DNA containing the tyrosinase gene and its flanking regions.

Ikuo Miura; Hitoshi Okumoto; Kozo Makino; Atsuo Nakata; Midori Nishioka


Genes & Genetic Systems | 2000

Identification and characterization of Thermus thermophilus HB8 RuvA protein, the subunit of the RuvAB protein complex that promotes branch migration of Holliday junctions

Takayuki Ohnishi; Hiroshi Iwasaki; Yoshizumi Ishino; Seiki Kuramitsu; Atsuo Nakata; Hideo Shinagawa


Archive | 1983

VECTEUR D'EXPRESSION PORTEUR D'UN CODAGE GENETIQUE POUR UNE PROTEINE LIANT LES PHOSPHATES, PROCEDE POUR SA PREPARATION ET PROCEDE DE PRODUCTION D'UN POLYPEPTIDE EN L'UTILISANT

Atsuo Nakata; Hideo Shinagawa


Archive | 1993

Role of the 0 .70 subunit of RNA olymerase in transcriptional activation y activator protein PlioB in Escherichia coli

Kozo Makino; Mitsuko Amemura; Soo-Ki Kim; Atsuo Nakata; Hideo Shinagawa


Archive | 1992

Gag-Env Fusion-Antigen aus HIV Gag-Env fusion antigen from HIV

Atsushi Saito; Hideo Sinagawa; Atsuo Nakata


Archive | 1992

A method for producing retroviral enzymes

Atsusi Saito; Hideo Shinagawa; Atsuo Nakata


Archive | 1990

Herstellungsverfahren für ein plasmid mit fähigkeiten zu expression und prozessierung nach translation eines retroviralen gens, so erhaltenes plasmid und dessen expressionsprodukt Manufacturing process plasmid expression product with a skills for expression and processing by translation of a retroviral gens, thus obtained plasmid and its

Atsushi Saito; Naoto Tanaka; Hideo Shinagawa; Atsuo Nakata

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