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PMID: 1506413 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Brefeldin A, thapsigargin, and AIF4- stimulate the accumulation of GRP78 mRNA in a cycloheximide dependent manner, whilst induction by hypoxia is independent of protein synthesis.

Journal of cellular physiology ·Vol. 152 ·No. 3 ·1992-09-00 ·Pages 545-52

Price BD, Mannheim-Rodman LA, Calderwood SK

Abstract

The glucose regulated proteins (GRPs) are major structural components of the endoplasmic reticulum (ER) and are involved in the import, folding, and processing of ER proteins. Expression of the glucose regulated proteins (GRP78 and GRP94) is greatly increased after cells are exposed to stress agents (including A23187 and tunicamycin) which inhibit ER function. Here, we demonstrate that three novel inhibitors of ER function, thapsigargin (which inhibits the ER Ca(2+)-ATPase), brefeldin A (an inhibitor of vesicle transport between the ER and Golgi) and AIF4-, (which inhibits trimeric G-proteins), can increase the expression of both GRP78 and 94. The common characteristic shared by activators of GRP expression is that they disrupt some function of the ER. The increased levels of GRPs may be a response to the accumulation of aberrant proteins in the ER or they may be increased in response to structural/functional damage to the ER. The increased accumulation of GRP78 mRNA after exposure of cells to either thapsigargin, brefeldin A, AIF4-, A23187, or tunicamycin can be blocked by pre-incubation in cycloheximide. In contrast, accumulation of GRPs after exposure to hypoxia was independent of cycloheximide. In addition, the protein kinase inhibitor genistein blocked the thapsigargin induced accumulation of GRP78 mRNA, whereas the protein phosphatase inhibitor okadaic acid caused increased accumulation of GRP78 mRNA. The data indicates that there are at least 2 mechanisms for induced expression of GRPs, one of which involves a phosphorylation step and requires new protein synthesis (e.g., thapsigargin, A23187) and one which is independent of both these steps (hypoxia).

MeSH Terms
3T3 Cells Aluminum/pharmacology Aluminum Compounds Animals Brefeldin A Carrier Proteins/biosynthesis,genetics Cell Hypoxia Cycloheximide/pharmacology Cyclopentanes/pharmacology Endoplasmic Reticulum Chaperone BiP Ethers, Cyclic/pharmacology Fluorides Fluorine/pharmacology Genistein HSP70 Heat-Shock Proteins Heat-Shock Proteins Isoflavones/pharmacology Membrane Proteins/biosynthesis Mice Molecular Chaperones Okadaic Acid Protein Biosynthesis RNA, Messenger/genetics,metabolism Terpenes/pharmacology Thapsigargin
Chemicals
Aluminum Compounds Carrier Proteins Cyclopentanes Endoplasmic Reticulum Chaperone BiP Ethers, Cyclic HSP70 Heat-Shock Proteins Heat-Shock Proteins Hspa5 protein, mouse Isoflavones Membrane Proteins Molecular Chaperones RNA, Messenger Terpenes glucose-regulated proteins Okadaic Acid Brefeldin A tetrafluoroaluminate Fluorine Thapsigargin Cycloheximide Aluminum Genistein Fluorides
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Price B D
Joint Center for Radiation Therapy, Dana-Farber Cancer Institute, Boston, Massachusetts 02115.
Mannheim-Rodman L A
Calderwood S K
Article Info
Journal
Journal of cellular physiology
Abbr.
J Cell Physiol
ISSN
0021-9541
Published
1992-09-00
Pages
545-52
Language
English
Region
United States
NLM ID
0050222
Subset
IM
Grants
PHS HHS · R0147407 · United States
NCI NIH HHS · R29CA44940 · United States
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