87 results on '"Tauchi, Hiroshi"'
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52. Histone chaperone FACT regulates homologous recombination by chromatin remodeling through interaction with RNF20
53. Assessment of Biological Effect of Tritiated Water by Using Hypersensitive System
54. Corrigendum to “Histone H2AX participates the DNA damage-induced ATM activation through interaction with NBS1” [Biochem. Biophys. Res. Commun. 380 (2009) 752–757]
55. Dancing on Damaged Chromatin: Functions of ATM and the RAD50/MRE11/NBS1 Complex in Cellular Responses to DNA Damage
56. Current Topics in DNA Double-Strand Break Repair
57. Association of DNA-PK activity and radiation-induced NBS1 foci formation in lymphocytes with clinical malignancy in breast cancer patients
58. NBS1 and MRE11 associate for responses to DNA double-strand breaks
59. Association of Ionizing Radiation-Induced Foci of NBS1 with Chromosomal Instability and Breast Cancer Susceptibility
60. Activation of Antioxidative Enzymes Induced by Low-Dose-Rate Whole‐Body γ Irradiation: Adaptive Response in Terms of Initial DNA Damage
61. 1P456 Hematopoietic stem cell dynamics under low dose-rate gammairradiation(20. Radiation biology,Poster Session,Abstract,Meeting Program of EABS &BSJ 2006)
62. Tritium Elimination System Using Tritium Gas Oxidizing Bacteria
63. The Nijmegen breakage syndrome gene and its role in genome stability
64. Direct ATM Activation by Sulfhydryl-Reactive Inflammatory Cyclopentenone Prostaglandins
65. Msh6 and Nbs1 are required for ATR-mediated Chk1 activation induced by DNA replication stalling in higher vertebrate cells
66. NBS1 Localizes to γ-H2AX Foci through Interaction with the FHA/BRCT Domain
67. Chk2 Activation Dependence on Nbs1 after DNA Damage
68. Expression of genes involved in repair of DNA double-strand breaks in normal and tumor tissues
69. Positional Cloning and Functional Analysis of the Gene Responsible for Nijmegen Breakage Syndrome, NBS1
70. A polymorphic CA repeat marker at the human 27-kD calbindin (CALB1) locus
71. Sequence Analysis of an 800-kb Genomic DNA Region on Chromosome 8q21 That Contains the Nijmegen Breakage Syndrome Gene,NBS1
72. Neutron Generator (HIRRAC) and Dosimetry Study.
73. Cell Cycle and LET Dependence for Radiation-induced Mutation. A Possible Mechanism for Reversed Dose-rate Effect.
74. Four novel mutations of the Fanconi anemia group A gene (FAA) in Japanese patients
75. Estimation of Dose Absorbed Fraction for 131I-beta rays in Rat Thyroid.
76. Radiation Induction of p53 in Cells from Nijmegen Breakage Syndrome Is Defective but Not Similar to Ataxia-Telangiectasia
77. Genetic Mapping Using Microcell-Mediated Chromosome Transfer Suggests a Locus for Nijmegen Breakage Syndrome at Chromosome 8q21-24
78. Inhibitory action of (−)-epigallocatechin gallate on radiation-induced mouse oncogenic transformation
79. Accumulation of Cells at G2/M Stage by Low Dose-Rate Irradiation Renders the Cell Population More Susceptible to the Subsequent Induction of 6-Thioguanine-Resistant Mutations by 252Cf Fission Neutrons.
80. The genetic complementation assay of Nijmegen breakage syndrome witit ataxia telangiectasia on the basis of radiation sensitivity to cell killing
81. Altered splicing of the ATDC message in ataxia telangiectasia group D cells results in the absence of a functional protein.
82. Production of carbon monoxide by bacteria of the genera Proteus and Morganella.
83. Activation of Antioxidative Enzymes Induced by Low-Dose-Rate Whole‐Body γ Irradiation: Adaptive Response in Terms of Initial DNA Damage
84. Induction of somatic mutations by low-dose X-rays: the challenge in recognizing radiation-induced events.
85. Histone chaperone FACT regulates homologous recombination by chromatin remodeling through interaction with RNF20.
86. Effect of gravity stress on fidelity of DNA double-strand break repair.
87. NBS1 localizes to gamma-H2AX foci through interaction with the FHA/BRCT domain.
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