堀越 直樹
Horikoshi, Naoki
東京大学 , 定量生命科学研究所 , 准教授 The University of Tokyo , Institute for Quantitative Biosciences , Associate Professor
関連記事はまだありません。
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1.
Cryo-EM structures of the BAF-Lamin A/C complex bound to nucleosomes
Naoki Horikoshi; Ryosuke Miyake; Chizuru Sogawa-Fujiwara; Mitsuo Ogasawara (+1 著者) Hitoshi Kurumizaka
Nature Communications 16: (2025)
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2.
The C-terminal 4CXXC-type zinc finger domain of CDCA7 recognizes hemimethylated DNA and modulates activities of chromatin remodeling enzyme HELLS.
Akeo Shinkai; Hideharu Hashimoto; Chikako Shimura; Hiroaki Fujimoto (+6 著者) Yoichi Shinkai
Nucleic acids research (2024) Semantic Scholar
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3.
Molecular and structural basis of the chromatin remodeling activity by Arabidopsis DDM1.
Akihisa Osakabe; Yoshimasa Takizawa; Naoki Horikoshi; Suguru Hatazawa (+4 著者) Hitoshi Kurumizaka
Nature communications 15: 5187 (2024) Semantic Scholar
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4.
Chromatin structure related to oncogenesis.
Syota Matsumoto; Naoki Horikoshi; Yoshimasa Takizawa; Hitoshi Kurumizaka
Cancer science 114: 3068 (2023) Semantic Scholar
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5.
High-Speed Atomic Force Microscopy Reveals Spontaneous Nucleosome Sliding of H2A.Z at the Subsecond Time Scale
Shin Morioka; Shoko Sato; Naoki Horikoshi; Tomoya Kujirai (+9 著者) Mikihiro Shibata
Nano Letters (2023) Semantic Scholar
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6.
Structural insight into replicative helicase loading in Escherichia coli
Naoki Horikoshi; Hitoshi Kurumizaka
The Journal of Biochemistry (2022) Semantic Scholar
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7.
Cryo-EM, Protein Engineering, and Simulation Enable the Development of Peptide Therapeutics against Acute Myeloid Leukemia
Kaiming Zhang; Naoki Horikoshi; Shanshan Li; Alexander S. Powers (+8 著者) Soichi Wakatsuki
ACS Central Science (2022) Semantic Scholar
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8.
Stabilization of glucose-6-phosphate dehydrogenase oligomers enhances catalytic activity and stability of clinical variants.
Adriana Ann Garcia; Irimpan I Mathews; Naoki Horikoshi; Tsutomu Matsui (+2 著者) Daria Mochly-Rosen
The Journal of biological chemistry 101610 (2022) Semantic Scholar
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9.
Long-range structural defects by pathogenic mutations in most severe glucose-6-phosphate dehydrogenase deficiency.
Naoki Horikoshi; Sunhee Hwang; Cornelius Gati; Tsutomu Matsui (+11 著者) Soichi Wakatsuki
Proceedings of the National Academy of Sciences of the United States of America 118: (2021) Semantic Scholar
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10.
Incorporation and influence of Leishmania histone H3 in chromatin.
Mariko Dacher; Hiroaki Tachiwana; Naoki Horikoshi; Tomoya Kujirai (+2 著者) Hitoshi Kurumizaka
Nucleic acids research 47: 11637 (2019) Semantic Scholar
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11.
Structure determination of the nucleosome core particle by selenium SAD phasing.
Mika Saotome; Naoki Horikoshi; Kazuki Urano; Tomoya Kujirai (+2 著者) Wataru Kagawa
Acta crystallographica. Section D, Structural biology 75: 930 (2019) Semantic Scholar
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12.
SAR optimization studies on modified salicylamides as a potential treatment for acute myeloid leukemia through inhibition of the CREB pathway.
Hee-Don Chae; Nick Cox; Samanta Capolicchio; Jae Wook Lee (+12 著者) Kathleen M Sakamoto
Bioorganic & medicinal chemistry letters 29: 2307 (2019) Semantic Scholar
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13.
Structure-based design of an H2A.Z.1 mutant stabilizing a nucleosome in vitro and in vivo.
Horikoshi N; Kujirai T; Sato K; Kimura HKurumizaka H
Biochemical and biophysical research communications 515: 719 (2019) Semantic Scholar
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14.
Small-Molecule Activators of Glucose-6-phosphate Dehydrogenase (G6PD) Bridging the Dimer Interface.
Andrew G Raub; Sunhee Hwang; Naoki Horikoshi; Anna D Cunningham (+2 著者) Daria Mochly-Rosen
ChemMedChem 14: 1321 (2019) Semantic Scholar
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15.
Cancer-associated mutations of histones H2B, H3.1 and H2A.Z.1 affect the structure and stability of the nucleosome
Arimura, Yasuhiro; Ikura, Masae; Fujita, Risa; Noda, Mamiko (+10 著者) Kurumizaka, Hitoshi
Nucleic acids research 46: 10007 (2018) Semantic Scholar
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16.
Correcting glucose-6-phosphate dehydrogenase deficiency with a small-molecule activator.
Sunhee Hwang; Karen Mruk; Simin Rahighi; Andrew G Raub (+5 著者) Daria Mochly-Rosen
Nature communications 9: 4045 (2018) Semantic Scholar
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17.
Corrigendum to: Contribution of histone N-terminal tails to the structure and stability of nucleosomes.
Iwasaki W; Miya Y; Horikoshi N; Osakabe A (+4 著者) Kurumizaka H
FEBS open bio 8: 1567 (2018)
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18.
Corrigendum to: Contribution of histone N-terminal tails to the structure and stability of nucleosomes.
Iwasaki W; Miya Y; Horikoshi N; Osakabe A (+4 著者) Kurumizaka H
FEBS open bio 8: 1567 (2018) Semantic Scholar
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19.
Corrigendum to: Contribution of histone N-terminal tails to the structure and stability of nucleosomes.
Wakana Iwasaki; Yuta Miya; Naoki Horikoshi; Akihisa Osakabe (+4 著者) Hitoshi Kurumizaka
FEBS open bio 8: 1567 - 1567 (2018) Semantic Scholar
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20.
Corrigendum to: Contribution of histone N-terminal tails to the structure and stability of nucleosomes.
Iwasaki W; Miya Y; Horikoshi N; Osakabe A (+4 著者) Kurumizaka H
FEBS open bio 8: 1567 (2018) Semantic Scholar
書籍等出版物情報はまだありません。
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21.
ヒトSPF45の相同組換えにおける機能解析
堀越直樹; 両角佑一; 高久誉大; 胡桃坂仁志
第27回染色体ワークショップ 2010年1月
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22.
新規相同組換え修復タンパク質ヒトSPF45の生化学的解析
堀越直樹; 両角佑一; 高久誉大; 胡桃坂仁志
第32回日本分子生物学会年会 2009年12月
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23.
SMN-GEMIN2 comple χ stimulates the RAD51-mediated recombination reactions
第34 回日本分子生物学会年会 12 月15 日横浜
知財情報はまだありません。
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