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PMID: 7907018 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Increased thermal aggregation of proteins in ATP-depleted mammalian cells.

European journal of biochemistry ·Vol. 220 ·No. 1 ·1994-02-15 ·Pages 239-46

Nguyen VT, Bensaude O

Abstract

In an attempt to understand the influence of the intracellular environment on protein stability, the thermal denaturation of various reporter proteins was examined within cultured mammalian cells. Loss of solubility and of enzymatic activities were taken as indicators of thermal denaturation. Photinus pyralis luciferase, Escherichia coli beta-galactosidase, the 70-kDa constitutive heat-shock proteins and the 68-kDa dsRNA-dependent protein kinase are found mostly in the supernatant fractions of centrifuged lysates from control unshocked mammalian cells. However, when cells are lysed after heat shock, a proportion of the reporter molecules is found to be aggregated to the nuclear pellets. This insolubilization does not affect all cellular proteins; many of them remain unaffected by heat shock. The heat-induced insolubilization of all four reporter proteins is markedly enhanced when the intracellular ATP concentration is drastically decreased after inhibition of both oxidative phosphorylation and glycolysis. Although ATP molecules bind to luciferase and protect it from thermal inactivation in vitro, the consequences of strong ATP depletion on luciferase thermal stability within the cells are found to be much greater than expected from in vitro data. The 70-kDa constitutive heat-shock proteins and the 68-kDa protein kinase are ATP-binding proteins but ATP depletion also considerably increases the aggregation of beta-galactosidase to the nuclear pellets, although this enzyme is not known to be an ATP-binding molecule. Insolubilization of all four reporter proteins occurs in ATP-depleted cells even at normal growing temperatures (37 degrees C). Protein denaturation may be enhanced either by the aggregation and disappearance of the intracellular 'free' chaperones or by the trapping of unfolded protein molecules on chaperones; the chaperone/unfolded protein complexes could not dissociate in the absence of ATP. Enhanced protein denaturation due to ATP depletion is proposed to account for the greater heat sensitivity of ATP-depleted cells and for the ability of mitochondrial uncouplers to trigger a heat-shock response in some cells.

MeSH Terms
Adenosine Triphosphate/metabolism Animals Cell Line Heat-Shock Proteins/genetics,metabolism Hot Temperature Humans Luciferases/genetics,metabolism Mice Protein Denaturation Protein Serine-Threonine Kinases/genetics,metabolism Proteins/chemistry,metabolism Solubility Transfection beta-Galactosidase/genetics,metabolism eIF-2 Kinase
Chemicals
Heat-Shock Proteins Proteins Adenosine Triphosphate Luciferases Protein Serine-Threonine Kinases eIF-2 Kinase beta-Galactosidase
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Nguyen V T
Laboratoire de Génétique Moléculaire, Ecole Normale Supérieure, Paris, France.
Bensaude O
Article Info
Journal
European journal of biochemistry
Abbr.
Eur J Biochem
ISSN
0014-2956
Published
1994-02-15
Pages
239-46
Language
English
Region
England
NLM ID
0107600
Subset
IM
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