Reference(英) |
17836
Wikiniyadhanee R, Lerksuthirat T, Stitchantrakul W, Chitphuk S, Takeda S, Dejsuphong D.
ATR Inhibitor Synergizes PARP Inhibitor Cytotoxicity in Homologous Recombination Repair Deficiency TK6 Cell Lines
Biomed Res Int
2023
2023:7891753
PubMed ID: 36794257
DOI: 10.1155/2023/7891753
|
17859
Zhao Z, Wu X, He F, Xiang C, Feng X, Bai X, Liu X, Zhao J, Takeda S, Qing Y.
Critical roles of Rad54 in tolerance to apigenin-induced Top1-mediated DNA damage
Exp Ther Med
2021
21(5):505
PubMed ID: 33791014
DOI: 10.3892/etm.2021.9936
|
17844
Rahman MM, Mohiuddin M, Shamima Keka I, Yamada K, Tsuda M, Sasanuma H, Andreani J, Guerois R, Borde V, Charbonnier JB, Takeda S.
Genetic evidence for the involvement of mismatch repair proteins, PMS2 and MLH3, in a late step of homologous recombination
J Biol Chem
2020
17460-17475
PubMed ID: 33453991
DOI: 10.1074/jbc.RA120.013521
|
17862
Naoto Shimizu, Remi Akagawa, Shunichi Takeda, Hiroyuki Sasanuma
The MRE11 nuclease promotes homologous recombination not only in DNA double-strand break resection but also in post-resection in human TK6 cells
Genome Instability & Disease
2020
1:184-196
DOI: 10.1007/s42764-020-00015-w
|
17840
Tsuda M, Ogawa S, Ooka M, Kobayashi K, Hirota K, Wakasugi M, Matsunaga T, Sakuma T, Yamamoto T, Chikuma S, Sasanuma H, Debatisse M, Doherty AJ, Fuchs RP, Takeda S.
PDIP38/PolDIP2 controls the DNA damage tolerance pathways by increasing the relative usage of translesion DNA synthesis over template switching
PLoS One
2019
14(3):e0213383
PubMed ID: 30840704
DOI: 10.1371/journal.pone.0213383
|
17839
Hoa NN, Shimizu T, Zhou ZW, Wang ZQ, Deshpande RA, Paull TT, Akter S, Tsuda M, Furuta R, Tsutsui K, Takeda S, Sasanuma H.
Mre11 Is Essential for the Removal of Lethal Topoisomerase 2 Covalent Cleavage Complexes
Mol Cell
2016
64(3):580-592
PubMed ID: 27814490
DOI: 10.1016/j.molcel.2016.10.011
|
17830
Hoa NN, Akagawa R, Yamasaki T, Hirota K, Sasa K, Natsume T, Kobayashi J, Sakuma T, Yamamoto T, Komatsu K, Kanemaki MT, Pommier Y, Takeda S, Sasanuma H.
Relative contribution of four nucleases, CtIP, Dna2, Exo1 and Mre11, to the initial step of DNA double-strand break repair by homologous recombination in both the chicken DT40 and human TK6 cell lines
Genes Cells
2015
20(12):1059-76
PubMed ID: 26525166
DOI: 10.1111/gtc.12310
|
17842
Keka IS, Mohiuddin, Maede Y, Rahman MM, Sakuma T, Honma M, Yamamoto T, Takeda S, Sasanuma H.
Smarcal1 promotes double-strand-break repair by nonhomologous end-joining
Nucleic Acids Res
2015
43(13):6359-72
PubMed ID: 26089390
DOI: 10.1093/nar/gkv621
|
279
Skopek TR, Liber HL, Penman BW, Thilly WG.
Isolation of a human lymphoblastoid line heterozygous at the thymidine kinase locus: possibility for a rapid human cell mutation assay
Biochem Biophys Res Commun
1978
84(2):411-6
PubMed ID: 214074
DOI: 10.1016/0006-291x(78)90185-7
|
281
Levy JA, Buell DN, Creech C, Hirshaut Y, Silverberg H.
Further characterization of the WI-L1 and WI-L2 lymphoblastoid lines
J Natl Cancer Inst
1971
46(3):647-54
PubMed ID: 4323138
|
280
Levy JA, Virolainen M, Defendi V.
Human lymphoblastoid lines from lymph node and spleen
Cancer
1968
22(3):517-24
PubMed ID: 5673231
DOI: 10.1002/1097-0142(196809)22:3<517::aid-cncr2820220305>3.0.co;2-a
|