Takuro Nakagawa
Affiliations: | University of Osaka, Suita-shi, Ōsaka-fu, Japan |
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Publications
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Xu R, Pan Z, Nakagawa T. (2023) Gross Chromosomal Rearrangement at Centromeres. Biomolecules. 14 |
Mongia P, Toyofuku N, Pan Z, et al. (2023) Fission yeast Srr1 and Skb1 promote isochromosome formation at the centromere. Communications Biology. 6: 551 |
Su J, Xu R, Mongia P, et al. (2021) Fission yeast Rad8/HLTF facilitates Rad52-dependent chromosomal rearrangements through PCNA lysine 107 ubiquitination. Plos Genetics. 17: e1009671 |
Onaka AT, Su J, Katahira Y, et al. (2020) DNA replication machinery prevents Rad52-dependent single-strand annealing that leads to gross chromosomal rearrangements at centromeres. Communications Biology. 3: 202 |
Okita AK, Zafar F, Su J, et al. (2019) Heterochromatin suppresses gross chromosomal rearrangements at centromeres by repressing Tfs1/TFIIS-dependent transcription. Communications Biology. 2: 17 |
Nakagawa T, Okita AK. (2019) Transcriptional silencing of centromere repeats by heterochromatin safeguards chromosome integrity. Current Genetics |
Okita AK, Zafar F, Su J, et al. (2019) Heterochromatin suppresses gross chromosomal rearrangements at centromeres by repressing Tfs1/TFIIS-dependent transcription. Communications Biology. 2: 17 |
Ogawa S, Kido S, Handa T, et al. (2018) Shelterin promotes tethering of late replication origins to telomeres for replication-timing control. The Embo Journal |
Terui R, Nagao K, Kawasoe Y, et al. (2018) Nucleosomes around a mismatched base pair are excluded via an Msh2-dependent reaction with the aid of SNF2 family ATPase Smarcad1. Genes & Development. 32: 806-821 |
Zafar F, Okita AK, Onaka AT, et al. (2018) Regulation of mitotic recombination between DNA repeats in centromeres. Nucleic Acids Research |