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Takuro Nakagawa
Takuro Nakagawa
Verified email at osaka-u.ac.jp - Homepage
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Cited by
Year
Genome‐wide localization of pre‐RC sites and identification of replication origins in fission yeast
M Hayashi, Y Katou, T Itoh, M Tazumi, Y Yamada, T Takahashi, ...
The EMBO journal 26 (5), 1327-1339, 2007
2082007
The Saccharomyces cerevisiae MER3 gene, encoding a novel helicase‐like protein, is required for crossover control in meiosis
T Nakagawa, H Ogawa
The EMBO journal, 1999
1701999
The heterochromatin protein Swi6/HP1 activates replication origins at the pericentromeric region and silent mating-type locus
MT Hayashi, TS Takahashi, T Nakagawa, J Nakayama, H Masukata
Nature cell biology 11 (3), 357-362, 2009
1692009
Saccharomyces cerevisiae Mer3 Helicase Stimulates 3′–5′ Heteroduplex Extension by Rad51: Implications for Crossover Control in Meiotic Recombination
OM Mazina, AV Mazin, T Nakagawa, RD Kolodner, SC Kowalczykowski
Cell 117 (1), 47-56, 2004
1412004
Ordered assembly of Sld3, GINS and Cdc45 is distinctly regulated by DDK and CDK for activation of replication origins
H Yabuuchi, Y Yamada, T Uchida, T Sunathvanichkul, T Nakagawa, ...
The EMBO journal 25 (19), 4663-4674, 2006
1392006
Mcm10 plays an essential role in origin DNA unwinding after loading of the CMG components
M Kanke, Y Kodama, TS Takahashi, T Nakagawa, H Masukata
The EMBO journal 31 (9), 2182-2194, 2012
1292012
Functions of the yeast meiotic recombination genes, MRE11 and MRE2
H Ogawa, K Johzuka, T Nakagawa, SH Leem, AH Hagihara
Advances in biophysics 31, 67-76, 1995
1141995
Auxin-inducible protein depletion system in fission yeast
M Kanke, K Nishimura, M Kanemaki, T Kakimoto, T Takahashi, ...
BMC Cell Biology 12 (1), 8, 2011
1062011
Telomere-binding protein Taz1 controls global replication timing through its localization near late replication origins in fission yeast
A Tazumi, M Fukuura, R Nakato, A Kishimoto, T Takenaka, S Ogawa, ...
Genes & development 26 (18), 2050-2062, 2012
862012
The MER3 helicase involved in meiotic crossing over is stimulated by single-stranded DNA-binding proteins and unwinds DNA in the 3′ to 5′ direction
T Nakagawa, H Flores-Rozas, RD Kolodner
Journal of Biological Chemistry 276 (34), 31487, 2001
782001
Multiple functions of MutS-and MutL-related heterocomplexes
T Nakagawa, A Datta, RD Kolodner
Proceedings of the National Academy of Sciences 96 (25), 14186, 1999
771999
Saccharomyces cerevisiae Mer3 is a DNA helicase involved in meiotic crossing over
T Nakagawa, RD Kolodner
Molecular and cellular biology 22 (10), 3281, 2002
742002
Rad51 suppresses gross chromosomal rearrangement at centromere in Schizosaccharomyces pombe
K Nakamura, A Okamoto, Y Katou, C Yadani, T Shitanda, ...
The EMBO journal 27 (22), 3036-3046, 2008
662008
The prereplication complex recruits XEco2 to chromatin to promote cohesin acetylation in Xenopus egg extracts
TL Higashi, M Ikeda, H Tanaka, T Nakagawa, M Bando, K Shirahige, ...
Current biology 22 (11), 977-988, 2012
622012
Involvement of the MRE2 gene of yeast in formation of meiosis‐specific double‐strand breaks and crossover recombination through RNA splicing
T Nakagawa, H Ogawa
Genes to Cells 2 (1), 65-79, 1997
621997
A novel allele of fission yeast rad11 that causes defects in DNA repair and telomere length regulation
Y Ono, K Tomita, A Matsuura, T Nakagawa, H Masukata, M Uritani, ...
Nucleic acids research 31 (24), 7141-7149, 2003
502003
CDK promotes interactions of Sld3 and Drc1 with Cut5 for initiation of DNA replication in fission yeast
M Fukuura, K Nagao, C Obuse, TS Takahashi, T Nakagawa, H Masukata
Molecular Biology of the Cell 22 (14), 2620-2633, 2011
472011
DNA polymerization-independent functions of DNA polymerase epsilon in assembly and progression of the replisome in fission yeast
T Handa, M Kanke, TS Takahashi, T Nakagawa, H Masukata
Molecular biology of the cell 23 (16), 3240-3253, 2012
462012
The MER3 DNA helicase catalyzes the unwinding of holliday junctions
T Nakagawa, RD Kolodner
Journal of Biological Chemistry 277 (31), 28019, 2002
462002
Nucleosomes around a mismatched base pair are excluded via an Msh2-dependent reaction with the aid of SNF2 family ATPase Smarcad1
R Terui, K Nagao, Y Kawasoe, K Taki, TL Higashi, S Tanaka, T Nakagawa, ...
Genes & development 32 (11-12), 806-821, 2018
452018
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