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筒井康博 研究業績一覧 (15件)
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- 2021
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論文
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Jo, M.,
Murayama, Y.,
Tsutsui, Y.,
Iwasaki, H.
In vitro site-specific recombination mediated by the tyrosine recombinase XerA of Thermoplasma acidophilum,
Genes to Cells,
Vol. 22,
No. 7,
pp. 646-661,
June 2017.
公式リンク
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Kurokawa, Y.,
Tsutsui Yasuhiro,
Kurokawa Yumiko,
Ito Kentaro,
Siddique MS,
Kawano Yumiko,
Yamao Fumio,
Iwasaki Hiroshi.
Multiple regulation of Rad51-mediated homologous recombination by fission yeast Fbh1,
PLoS Genetics,
PLOS,
Vol. 10,
No. 8,
pp. e1004542,
Aug. 2014.
公式リンク
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Fornander, L.H.,
Renodon-Cornière, A.,
Kuwabara, N.,
Ito, K.,
Tsutsui, Y.,
Shimizu, T.,
Hiroshi Iwasaki,
Nordén, B.,
Takahashi, M..
Swi5-Sfr1 protein stimulates Rad51-mediated DNA strand exchange reaction through organization of DNA bases in the presynaptic filament,
Nucleic Acids Research,
Vol. 42,
No. 4,
pp. 2358-2365,
Feb. 2014.
公式リンク
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Yasuto Murayama,
Yumiko Kurokawa,
Yasuhiro Tsutsui,
Hiroshi Iwasaki.
Dual regulation of Dmc1-driven DNA strand exchange by Swi5– Sfr1 activation and Rad22 inhibition,
Genes and Development,
Vol. 27,
No. 21,
pp. 2299-2304,
Nov. 2013.
公式リンク
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Kuwabara, N.,
Murayama, Y.,
Hashimoto, H.,
Kokabu, Y.,
Ikeguchi, M.,
Sato, M.,
Mayanagi, K.,
Yasuhiro Tsutsui,
Hiroshi Iwasaki,
Shimizu, T..
Mechanistic insights into the activation of Rad51-mediated strand exchange from the structure of a recombination activator, the Swi5-Sfr1 complex,
Structure,
Vol. 20,
No. 3,
pp. 440-449,
May 2012.
公式リンク
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Kokabu, Y.,
Yasuto Murayama,
Kuwabara, N.,
Oroguchi, T.,
Hashimoto, H.,
Yasuhiro Tsutsui,
Nozaki, N.,
Akashi, S.,
Unzai, S.,
Shimizu, T.,
Hiroshi Iwasaki,
Sato, M.,
Ikeguchi, M..
Fission yeast Swi5-Sfr1 protein complex, an activator of Rad51 recombinase, forms an extremely elongated dogleg-shaped structure,
Journal of Biological Chemistry,
Vol. 286,
No. 50,
pp. 43569-43576,
Dec. 2011.
公式リンク
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Yasuto Murayama,
Yasuhiro Tsutsui,
Hiroshi Iwasaki.
The fission yeast meiosis-specific Dmc1 recombinase mediates formation and branch migration of Holliday junctions by preferentially promoting strand exchange in a direction opposite to that of Rad51,
Genes and Development,
Vol. 25,
No. 5,
pp. 516-527,
Mar. 2011.
公式リンク
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Akamatsu, Y.,
Yasuto Murayama,
Yamada, T.,
Nakazaki, T.,
Yasuhiro Tsutsui,
Ohta, K.,
Hiroshi Iwasaki.
Molecular characterization of the role of the Schizosaccharomyces pombe nip1<sup>+</sup>/ctp1<sup>+</sup>gene in DNA double-strand break repair in association with the Mre11-Rad50-Nbs1 complex,
Molecular and Cellular Biology,
Vol. 28,
No. 11,
pp. 3639-3651,
June 2008.
公式リンク
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Roseaulin, L.,
Yamada, Y.,
Yasuhiro Tsutsui,
Russell, P.,
Hiroshi Iwasaki,
Arcangioli, B..
Mus81 is essential for sister chromatid recombination at broken replication forks,
EMBO Journal,
Vol. 27,
No. 9,
pp. 1378-1387,
May 2008.
公式リンク
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Roseaulin, L.,
Yamada, Y.,
Yasuhiro Tsutsui,
Russell, P.,
Hiroshi Iwasaki,
Arcangioli, B..
Mus81 is essential for sister chromatid recombination at broken replication forks,
EMBO Journal,
Vol. 27,
No. 9,
pp. 1378-1387,
May 2008.
公式リンク
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Haruta, N.,
Akamatsu, Y.,
Yasuhiro Tsutsui,
Yumiko Kurokawa,
Yasuto Murayama,
Arcangioli, B.,
Hiroshi Iwasaki.
Fission yeast Swi5 protein, a novel DNA recombination mediator,
DNA Repair,
Vol. 7,
No. 1,
pp. 1-9,
Jan. 2008.
公式リンク
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Akamatsu, Y.,
Yasuhiro Tsutsui,
Morishita, T.,
Siddique, M.D.S.P.,
Yumiko Kurokawa,
Ikeguchi, M.,
Yamao, F.,
Arcangioli, B.,
Hiroshi Iwasaki.
Fission yeast Swi5/Sfr1 and Rhp55/Rhp57 differentially regulate Rhp51-dependent recombination outcomes,
EMBO Journal,
Vol. 26,
No. 5,
pp. 1352-1362,
Mar. 2007.
公式リンク
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Yasuhiro Tsutsui,
Morishita, T.,
Natsume, T.,
Yamashita, K.,
Hiroshi Iwasaki,
Yamao, F.,
Shinagawa, H..
Genetic and physical interactions between Schizosaccharomyces pombe Mcl1 and Rad2, Dna2 and DNA polymerase a: Evidence for a multifunctional role of Mcl1 in DNA replication and repair,
Current Genetics,
Vol. 48,
No. 1,
pp. 34-43,
July 2005.
公式リンク
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Yasuhiro Tsutsui,
Morishita, T.,
Hiroshi Iwasaki,
Toh, H.,
Shinagawa, H..
A recombination repair gene of Schizosaccharomyces pombe, rhp57, is a functional homolog of the Saccharomyces cerevisiae RAD57 gene and is phylogenetically related to the human XRCC3 gene,
Genetics,
Vol. 154,
No. 4,
pp. 1451-1461,
Apr. 2000.
公式リンク
国内会議発表 (査読なし・不明)
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