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Noriko K. Takahashi
Researcher at University of Tokyo
Publications - 8
Citations - 2302
Noriko K. Takahashi is an academic researcher from University of Tokyo. The author has contributed to research in topics: Homologous recombination & Gene conversion. The author has an hindex of 8, co-authored 8 publications receiving 2216 citations.
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Whole genome sequencing of meticillin-resistant Staphylococcus aureus
Makoto Kuroda,Toshiko Ohta,Ikuo Uchiyama,Tadashi Baba,Harumi Yuzawa,Ichizo Kobayashi,Longzhu Cui,Akio Oguchi,Ken-ichi Aoki,Yoshimi Nagai,JianQi Lian,Teruyo Ito,Mutsumi Kanamori,Hiroyuki Matsumaru,Atsushi Maruyama,Hiroyuki Murakami,Akira Hosoyama,Yoko Mizutani-Ui,Noriko K. Takahashi,Toshihiko Sawano,Ryu-ichi Inoue,Chikara Kaito,Kazuhisa Sekimizu,Hideki Hirakawa,Satoru Kuhara,Susumu Goto,Junko Yabuzaki,Minoru Kanehisa,Atsushi Yamashita,Kenshiro Oshima,Keiko Furuya,Chie Yoshino,Tadayoshi Shiba,Masahira Hattori,Naotake Ogasawara,Hideo Hayashi,Keiichi Hiramatsu +36 more
TL;DR: Investigation of many newly identified gene products, including the 70 putative virulence factors, will greatly improve the understanding of the biology of staphylococci and the processes of infectious diseases caused by S aureus.
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Double-stranded gap repair of DNA by gene conversion in Escherichia coli.
TL;DR: The demonstrated repair of a double-stranded DNA gap through gene conversion by a homologous DNA sequence in Escherichia coli can explain plasmid recombination in the absence of an artificial double-Stranded break reported in a companion study by Yamamoto et al.
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Involvement of RecE exonuclease and RecT annealing protein in DNA double-strand break repair by homologous recombination
TL;DR: It is demonstrated that a double-stranded gap in DNA is repaired by a gene conversion mechanism in an Escherichia coli recBC sbcA23 strain, as predicted by the ds break repair models for homologous recombination and concluded that both ExoVIII and RecT are essential for ds gap repair.
Journal ArticleDOI
Genetic analysis of double-strand break repair in Escherichia coli.
Noriko K. Takahashi,Kohji Kusano,Tomoki Yokochi,Yoshihiro Kitamura,Hiroshi Yoshikura,Ichizo Kobayashi +5 more
TL;DR: It is concluded that the RecBCD, Rec BCD-, and RecF pathways cannot promote conservative double-strand break repair as the RecE and lambda Red pathways can.
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Nonconservative recombination in Escherichia coli.
Noriko K. Takahashi,Kenji Yamamoto,Yoshihiro Kitamura,Si-Qin Luo,Hiroshi Yoshikura,Ichizo Kobayashi +5 more
TL;DR: Evidence is presented that the mode of homologous recombination is nonconservative in an Escherichia coli strain with an active RecF pathway (a recBC sbcBC mutant) and plasmid substrates that enable us to recover both recombination products.