cDNA cloning of p112, the largest regulatory subunit of the human 26S proteasome, and functional analysis of its yeast homologue, Sen3p

被引:51
作者
Yokota, K
Kagawa, S
Shimizu, Y
Akioka, H
Tsurumi, C
Noda, C
Fujimuro, M
Takahashi, E
Yokosawa, H
Fujiwara, T
Ohba, M
Yamasaki, M
DeMartino, GN
Slaughter, CA
Toh, A
Tanaka, K
机构
[1] UNIV TOKUSHIMA, SCH MED, DEPT UROL, TOKUSHIMA 770, JAPAN
[2] UNIV TOKUSHIMA, INST ENZYME RES, TOKUSHIMA 770, JAPAN
[3] HOKKAIDO UNIV, FAC PHARMACEUT SCI, DEPT BIOCHEM, KITA KU, SAPPORO, HOKKAIDO 060, JAPAN
[4] OTSUKA PHARMACEUT CO LTD, OTSUKA GEN RES INST, TOKUSHIMA 77101, JAPAN
[5] KYOWA HAKKO KOGYO CO LTD, TOKYO RES LAB, MACHIDA, TOKYO 194, JAPAN
[6] UNIV TEXAS, SW MED CTR, DEPT PHYSIOL, DALLAS, TX 75235 USA
[7] UNIV TEXAS, SW MED CTR, DEPT BIOCHEM, DALLAS, TX 75235 USA
[8] UNIV TEXAS, SW MED CTR, HOWARD HUGHES MED INST, DALLAS, TX 75235 USA
[9] UNIV TOKYO, GRAD SCH SCI, DEPT BIOL SCI, GENET LAB, TOKYO 113, JAPAN
关键词
D O I
10.1091/mbc.7.6.853
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The 26S proteasome is a large multisubunit protease complex, the largest regulatory subunit of which is a component named p112. Molecular cloning of cDNA encoding human p112 revealed a polypeptide predicted to have 953 amino acid residues and a molecular mass of 105,865. The human p112 gene was mapped to the q37.1-q37.2 region of chromosome 2. Computer analysis showed that p112 has strong similarity to the Saccharomyces cerevisiae Sen3p, which has been Listed in a gene bank as a factor affecting tRNA splicing endonuclease. The SEN3 also was identified in a synthetic lethal screen with the min1-1 mutant, a temperature-sensitive mutant of NIN1. NIN1 encodes p31, another regulatory subunit of the 26S proteasome, which is necessary for activation of Cdc28p kinase. Disruption of the SEN3 did not affect cell viability, but led to temperature-sensitive growth. The human p112 cDNA suppressed the growth defect at high temperature in a SEN3 disruptant, indicating that p112 is a functional homologue of the yeast Sen3p. Maintenance of SEN3 disruptant cells at the restrictive temperature resulted in a variety of cellular dysfunctions, including defects in proteolyis mediated by the ubiquitin pathway, in the N-end rule system, in the stress response upon cadmium exposure, and in nuclear protein transportation. The functional abnormality induced by SEN3 disruption differs considerably from various phenotypes shown by the min1-1 mutation, suggesting that these two regulatory subunits of the 26S proteasome play distinct roles in the various processes mediated by the 26S proteasome.
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收藏
页码:853 / 870
页数:18
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