A Toh-E
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Explore the profile of A Toh-E including associated specialties, affiliations and a list of published articles.
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Articles
130
Citations
3423
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Recent Articles
1.
Saeki Y, Isono E, Toh-E A
Methods Enzymol
. 2005 Dec;
399:215-27.
PMID: 16338358
For analysis of the mechanism of the 26S proteasome-mediated protein degradation in vitro, the preparation of well-defined substrate, the ubiquitinated proteins, of the 26S proteasome is inevitable. However, no method...
2.
Saeki Y, Isono E, Shimada M, Kawahara H, Yokosawa H, Toh-E A
Methods Enzymol
. 2005 Dec;
399:64-74.
PMID: 16338349
At present, the 26S proteasome-specific inhibitor is not available. We constructed polyubiquitin derivatives that contained a tandem repeat of ubiquitins and were insensitive to ubiquitin hydrolases. When these artificial polyubiquitins...
3.
Toh-E A, Oguchi T
Genes Genet Syst
. 2002 Apr;
76(6):393-410.
PMID: 11922108
Las21/Gpi7 contains a heavy-metal-associated motif at its N-terminus. When this motif was disrupted by amino acid substitution, the cells acquired weak copper-resistance. We found that the previously isolated las21 mutants...
4.
Iwase M, Toh-E A
Genes Genet Syst
. 2002 Jan;
76(5):335-43.
PMID: 11817649
An uncharacterized gene, YNL078W, was isolated by the two-hybrid screening method using SHS1 (one of the septin genes) as bait and designated NIS1 (Neck protein Interacting with Septins). Nis1 interacts...
5.
Takahashi Y, Toh-E A, Kikuchi Y
Gene
. 2001 Oct;
275(2):223-31.
PMID: 11587849
SUMO1/Smt3, a ubiquitin-like protein modifier, is known to be conjugated to other proteins and modulate their functions in various important processes. Similar to the ubiquitin system, SUMO1/Smt3 is activated in...
6.
Takahashi Y, Kahyo T, Toh-E A, Yasuda H, Kikuchi Y
J Biol Chem
. 2001 Sep;
276(52):48973-7.
PMID: 11577116
SUMO1/Smt3, a ubiquitin-like protein modifier, is known to conjugate to other proteins and modulate their functions in various important processes. Similar to the ubiquitin conjugation system, SUMO/Smt3 is transferred to...
7.
Yoshida S, Toh-E A
Genes Genet Syst
. 2001 Jul;
76(2):141-7.
PMID: 11434459
The mitotic exit network (MEN) governs Cdk inactivation. In budding yeast, MEN consists of the protein phosphatase Cdc14, the ras-like GTPase Tem1, protein kinases Cdc15, Cdc5, Dbf2 and Dbf2-binding protein...
8.
Takeuchi J, Toh-E A
Biochimie
. 2001 Apr;
83(3-4):333-40.
PMID: 11295494
Rpn9 is one of the subunits of the regulatory particle of the yeast 26S proteasome and is needed for stability or efficient assembly of the 26S proteasome. As anticipated from...
9.
Nishizawa M, Tanabe M, Yabuki N, Kitada K, Toh-E A
Yeast
. 2001 Feb;
18(3):239-49.
PMID: 11180457
The PHO85 gene is a negative regulator of the PHO system in the yeast Saccharomyces cerevisiae and encodes a protein kinase (Pho85) highly homologous to the Cdc28 kinase (Cdc28). Ten...
10.
Takahashi Y, Mizoi J, Toh-E A, Kikuchi Y
J Biochem
. 2000 Nov;
128(5):723-5.
PMID: 11056382
Yeast Smt3 is a ubiquitin-like protein similar to the mammalian SUMO-1. Cdc3, a septin component, is known to be modified by Smt3. The level of this modification was affected by...