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ESTABLISHMENT OF A CHINESE-HAMSTER OVARY CELL-LINE THAT EXPRESSES GRP78 ANTISENSE TRANSCRIPTS AND SUPPRESSES A23187 INDUCTION OF BOTH GRP78 AND GRP94
被引:88
|作者:
LI, LJ
LI, XA
FERRARIO, A
RUCKER, N
LIU, ES
WONG, S
GOMER, CJ
LEE, AS
机构:
[1] UNIV SO CALIF,CHILDRENS HOSP LOS ANGELES,SCH MED,CLAYTON OCULAR ONCOL CTR,LOS ANGELES,CA 90033
[2] UNIV SO CALIF,SCH MED,DEPT BIOCHEM,LOS ANGELES,CA 90033
[3] UNIV SO CALIF,SCH MED,NORRIS CANC RES INST,LOS ANGELES,CA 90033
[4] UNIV SO CALIF,SCH MED,DEPT PEDIAT,LOS ANGELES,CA 90033
关键词:
D O I:
10.1002/jcp.1041530319
中图分类号:
Q2 [细胞生物学];
学科分类号:
071009 ;
090102 ;
摘要:
GRP78, a 78,000 dalton protein residing in the endoplasmic reticulum, is postulated to play important roles in protein folding and cell survival during calcium and other physiological stress. Here we describe the construction of an eukaryotic expression vector for the constitutive expression of grp78 antisense RNA and the creation of a CHO cell line, 78WO, which expresses high levels of the grp78 antisense RNA through amplification of the stably transfected antisense vector. We observed that whereas 78WO maintains a basal level of GRP78 similar to that of control cells, GRP78 is no longer inducible by A23187. The 78WO cells have undergone a compensatory increase in grp78 transcription such that the effects of antisense are cancelled out at the protein level under nonstressed conditions. In these same cells, GRP94, a 94,000 dalton ER protein, is also rendered noninducible by A23187. This provides the first evidence that the regulation of two ER proteins might be coupled such that the failure to induce GRP78 results in the down-regulation of GRP94. The 78WO cell line grows with a doubling time of about 26 hr and exhibits decreased tolerance to A23187, suggesting the GRPs contribute to cell viability under calcium stress. The establishment of this cell line, which can be stably maintained, will provide a useful tool for testing whether the induction of the GRPs is important for protein folding or transport and whether their enhanced synthesis is the cause or consequence of a variety of physiological adaptations.
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页码:575 / 582
页数:8
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