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Asako Furukohri

Showing results (1-10 of 21) with videos related to

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The Journal of Biological Chemistry|November 4, 2023
Fanconi anemia-associated mutation in RAD51 compromises the coordinated action of DNA-binding and ATPase activitiesSijia Liu, Akira Shinohara, Asako Furukohri
The Journal of Biological Chemistry|March 1, 2008
A dynamic polymerase exchange with Escherichia coli DNA polymerase IV replacing DNA polymerase III on the sliding clampAsako Furukohri, Myron F Goodman, Hisaji Maki
Nucleic Acids Research|March 27, 2012
Interaction between Escherichia coli DNA polymerase IV and single-stranded DNA-binding protein is required for DNA synthesis on SSB-coated DNAAsako Furukohri, Yoshito Nishikawa, Masahiro Tatsumi Akiyama, et al.
Scientific Reports|October 18, 2017
Collision with duplex DNA renders Escherichia coli DNA polymerase III holoenzyme susceptible to DNA polymerase IV-mediated polymerase switching on the sliding clampThanh Thi Le, Asako Furukohri, Masahiro Tatsumi-Akiyama, et al.
Genes & Genetic Systems|May 24, 2023
The role of conserved amino acid residues of Sae3 in Mei5-Sae3 complex for Dmc1 assembly in meiotic recombinationPriyanka Sawant, Stephen Mwaniki, Yurika Fujita, et al.
Nature Communications|October 27, 2023
FIGNL1 AAA+ ATPase remodels RAD51 and DMC1 filaments in pre-meiotic DNA replication and meiotic recombinationMasaru Ito, Asako Furukohri, Kenichiro Matsuzaki, et al.
Genes & Genetic Systems|July 24, 2012
Escherichia coli DinB inhibits replication fork progression without significantly inducing the SOS responseTetsuya Mori, Tatsuro Nakamura, Naoto Okazaki, et al.
Journal of Biochemistry|October 17, 2003
Identification and characterization of a Xenopus homolog of Dbf4, a regulatory subunit of the Cdc7 protein kinase required for the initiation of DNA replicationAsako Furukohri, Noriko Sato, Hisao Masai, et al.
Nucleic Acids Research|January 29, 2015
Recombinase and translesion DNA polymerase decrease the speed of replication fork progression during the DNA damage response in Escherichia coli cellsKang Wei Tan, Tuan Minh Pham, Asako Furukohri, et al.
Nucleic Acids Research|August 31, 2015
A novel mode of nuclease action is revealed by the bacterial Mre11/Rad50 complexChew Theng Lim, Pey Jiun Lai, David R F Leach, et al.
Pageof 3

Showing results (1-10 of 21) with videos related to

Sort By:
Pageof 3
The Journal of Biological Chemistry|November 4, 2023
Fanconi anemia-associated mutation in RAD51 compromises the coordinated action of DNA-binding and ATPase activitiesSijia Liu, Akira Shinohara, Asako Furukohri
The Journal of Biological Chemistry|March 1, 2008
A dynamic polymerase exchange with Escherichia coli DNA polymerase IV replacing DNA polymerase III on the sliding clampAsako Furukohri, Myron F Goodman, Hisaji Maki
Nucleic Acids Research|March 27, 2012
Interaction between Escherichia coli DNA polymerase IV and single-stranded DNA-binding protein is required for DNA synthesis on SSB-coated DNAAsako Furukohri, Yoshito Nishikawa, Masahiro Tatsumi Akiyama, et al.
Scientific Reports|October 18, 2017
Collision with duplex DNA renders Escherichia coli DNA polymerase III holoenzyme susceptible to DNA polymerase IV-mediated polymerase switching on the sliding clampThanh Thi Le, Asako Furukohri, Masahiro Tatsumi-Akiyama, et al.
Genes & Genetic Systems|May 24, 2023
The role of conserved amino acid residues of Sae3 in Mei5-Sae3 complex for Dmc1 assembly in meiotic recombinationPriyanka Sawant, Stephen Mwaniki, Yurika Fujita, et al.
Nature Communications|October 27, 2023
FIGNL1 AAA+ ATPase remodels RAD51 and DMC1 filaments in pre-meiotic DNA replication and meiotic recombinationMasaru Ito, Asako Furukohri, Kenichiro Matsuzaki, et al.
Genes & Genetic Systems|July 24, 2012
Escherichia coli DinB inhibits replication fork progression without significantly inducing the SOS responseTetsuya Mori, Tatsuro Nakamura, Naoto Okazaki, et al.
Journal of Biochemistry|October 17, 2003
Identification and characterization of a Xenopus homolog of Dbf4, a regulatory subunit of the Cdc7 protein kinase required for the initiation of DNA replicationAsako Furukohri, Noriko Sato, Hisao Masai, et al.
Nucleic Acids Research|January 29, 2015
Recombinase and translesion DNA polymerase decrease the speed of replication fork progression during the DNA damage response in Escherichia coli cellsKang Wei Tan, Tuan Minh Pham, Asako Furukohri, et al.
Nucleic Acids Research|August 31, 2015
A novel mode of nuclease action is revealed by the bacterial Mre11/Rad50 complexChew Theng Lim, Pey Jiun Lai, David R F Leach, et al.
Pageof 3