COMPLEMENTATION BY A CLONED HUMAN UBIQUITIN-ACTIVATING ENZYME E1 OF THE S-PHASE-ARRESTED MOUSE FM3A CELL MUTANT WITH THERMOLABILE E1

被引:23
作者
AYUSAWA, D
KANEDA, S
ITOH, Y
YASUDA, H
MURAKAMI, Y
SUGASAWA, K
HANAOKA, F
SENO, T
机构
[1] NATL INST GENET, MUTAGENESIS LAB, MISHIMA, SHIZUOKA 411, JAPAN
[2] UNIV TOKYO, INST APPL MICROBIOL, BUNKYO KU, TOKYO 113, JAPAN
[3] KANAZAWA UNIV, FAC PHARMACEUT SCI, DIV BIOL, KANAZAWA, ISHIKAWA 920, JAPAN
[4] JIKEI UNIV, DEPT NUTR, MINATO KU, TOKYO 105, JAPAN
[5] INST PHYS & CHEM RES, WAKO 35101, JAPAN
关键词
PROTEIN DEGRADATION; CDC2; KINASE; TEMPERATURE-SENSITIVE MUTANT; DNA TRANSFECTION; CELL CYCLE;
D O I
10.1247/csf.17.113
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
A temperature-sensitive growth mutant tsFS20 isolated from mouse FM3A cells was identified as a mutant with thermolabile ubiquitin-activating enzyme E1 by transfection with a full-length cDNA encoding the human E1 enzyme and cell-cell hybridization with an authentic E1 mutant ts85 previously isolated from FM3A cells. The resulting transformants produced thermoresistant E1 activity. Upon shift-up of temperature, asynchronously growing tsFS20 cells showed multiple points of cell-cycle arrest. At the nonpermissive temperature, tsFS20 cells that had been synchronized at the G1-S-phase progressed and accumulated in the mid-S-phase, as evidenced by the absence of G2-specific cdc2 kinase activity, while ts85 mutant cells, the widely used E1 mutant, reached the G2-phase and were arrested. Thus, the E1 mutation seemed to be involved in progression in the S-phase as well as in the G2-phase in the cell cycle. Degradation of short-lived abnormal proteins in tsFS20 cells was decreased to about 50% at the nonpermissive temperature, while the block was fully restored to the wild-type level in the transformant cells. Relevance of the unusually high incidence of the temperature-sensitive E1 mutation was discussed in terms of the E1 as a determinant of heat tolerance of cells.
引用
收藏
页码:113 / 122
页数:10
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