Katsunori Sugimoto
Katsunori Sugimoto
Verified email at rutgers.edu - Homepage
Cited by
Cited by
S-phase checkpoint proteins Tof1 and Mrc1 form a stable replication-pausing complex
Y Katou, Y Kanoh, M Bando, H Noguchi, H Tanaka, T Ashikari, ...
Nature 424 (6952), 1078-1083, 2003
G1-specific cyclins of S. cerevisiae: cell cycle periodicity, regulation by mating pheromone, and association with the p34CDC28 protein kinase
C Wittenberg, K Sugimoto, SI Reed
Cell 62 (2), 225-237, 1990
Primary structure of porcine cardiac muscarinic acetylcholine receptor deduced from the cDNA sequence
T Kubo, A Maeda, K Sugimoto, I Akiba, A Mikami, H Takahashi, T Haga, ...
FEBS letters 209 (2), 367-372, 1986
A cyclin B homolog in S. cerevisiae: chronic activation of the Cdc28 protein kinase by cyclin prevents exit from mitosis
JB Ghiara, HE Richardson, K Sugimoto, M Henze, DJ Lew, C Wittenberg, ...
Cell 65 (1), 163-174, 1991
ATM-related Tel1 associates with double-strand breaks through an Xrs2-dependent mechanism
D Nakada, K Matsumoto, K Sugimoto
Genes & development 17 (16), 1957-1962, 2003
Cyclin-B homologs in Saccharomyces cerevisiae function in S phase and in G2.
H Richardson, DJ Lew, M Henze, K Sugimoto, SI Reed
Genes & development 6 (11), 2021-2034, 1992
Recruitment of Mec1 and Ddc1 checkpoint proteins to double-strand breaks through distinct mechanisms
T Kondo, T Wakayama, T Naiki, K Matsumoto, K Sugimoto
Science 294 (5543), 867-870, 2001
MSG5, a novel protein phosphatase promotes adaptation to pheromone response in S. cerevisiae.
K Doi, A Gartner, G Ammerer, B Errede, H Shinkawa, K Sugimoto, ...
The EMBO journal 13 (1), 61-70, 1994
Primary structure of the α-subunit of transducin and its relationship to ras proteins
T Tanabe, T Nukada, Y Nishikawa, K Sugimoto, H Suzuki, H Takahashi, ...
Nature 315 (6016), 242-245, 1985
Role of a complex containing Rad17, Mec3, and Ddc1 in the yeast DNA damage checkpoint pathway
T Kondo, K Matsumoto, K Sugimoto
Molecular and cellular biology 19 (2), 1136-1143, 1999
Primary structure of the β‐subunit of bovine transducin deduced from the cDNA sequence
K Sugimoto, T Nukada, T Tanabe, H Takahashi, M Noda, N Minamino, ...
FEBS letters 191 (2), 235-240, 1985
Pie1, a protein interacting with Mec1, controls cell growth and checkpoint responses in Saccharomyces cerevisiae
T Wakayama, T Kondo, S Ando, K Matsumoto, K Sugimoto
Molecular and Cellular Biology 21 (3), 755-764, 2001
Requirement of the Mre11 complex and exonuclease 1 for activation of the Mec1 signaling pathway
D Nakada, Y Hirano, K Sugimoto
Molecular and cellular biology 24 (22), 10016-10025, 2004
Rif1 and rif2 inhibit localization of tel1 to DNA ends
Y Hirano, K Fukunaga, K Sugimoto
Molecular cell 33 (3), 312-322, 2009
The Glc7 type 1 protein phosphatase of Saccharomyces cerevisiae is required for cell cycle progression in G2/M.
N Hisamoto, K Sugimoto, K Matsumoto
Molecular and Cellular Biology 14 (5), 3158-3165, 1994
Chl12 (Ctf18) forms a novel replication factor C-related complex and functions redundantly with Rad24 in the DNA replication checkpoint pathway
T Naiki, T Kondo, D Nakada, K Matsumoto, K Sugimoto
Molecular and cellular biology 21 (17), 5838-5845, 2001
Clamp and clamp loader structures of the human checkpoint protein complexes, Rad9‐1‐1 and Rad17‐RFC
Y Shiomi, A Shinozaki, D Nakada, K Sugimoto, J Usukura, C Obuse, ...
Genes to Cells 7 (8), 861-868, 2002
Rfc5, a replication factor C component, is required for regulation of Rad53 protein kinase in the yeast checkpoint pathway.
K Sugimoto, S Ando, T Shimomura, K Matsumoto
Molecular and Cellular Biology 17 (10), 5905-5914, 1997
Rfc5, a small subunit of replication factor C complex, couples DNA replication and mitosis in budding yeast
K Sugimoto, T Shimomura, K Hashimoto, H Araki, A Sugino, K Matsumoto
Proceedings of the National Academy of Sciences 93 (14), 7048-7052, 1996
A Proteomics Approach to Identify Proliferating Cell Nuclear Antigen (PCNA)-binding proteins in human cell lysates identification of the human CHL12/RFCs2–5 complex as a novel …
S Ohta, Y Shiomi, K Sugimoto, C Obuse, T Tsurimoto
Journal of Biological Chemistry 277 (43), 40362-40367, 2002
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