Relation of neuronal endoplasmic reticulum calcium homeostasis to ribosomal aggregation and protein synthesis: implications for stress-induced suppression of protein synthesis

被引:60
作者
Doutheil, J [1 ]
Gissel, C [1 ]
Oschlies, U [1 ]
Hossmann, KA [1 ]
Paschen, W [1 ]
机构
[1] Max Planck Inst Neurol Res, Dept Expt Neurol, D-50931 Cologne, Germany
关键词
Ca2+-ATPase; calcium homeostasis; cell culture; electron microscopy; endoplasmic reticulum; protein synthesis; ribosomal aggregation;
D O I
10.1016/S0006-8993(97)00899-8
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Results from experiments performed with permanent non-neuronal cell lines suggest that endoplasmic reticulum (ER) calcium homeostasis plays a key role in the control of protein synthesis (PS). It has been concluded that disturbances in ER calcium homeostasis may contribute to the suppression of PS triggered by a severe metabolic stress (W. Paschen, Med. Hypoth., 47 (1996) 283-288). To elucidate how an emptying of ER calcium stores of these cells would effect PS and ribosomal aggregation of non-transformed fully differentiated cells, experiments were run on primary neuronal cell cultures. ER calcium stores were depleted by treating cells with thapsigargin (TG, a selective, irreversible inhibitor of ER Ca2+-ATPase), cyclopiazonic acid (CPA, a reversible inhibitor of ER Ca2+-ATPase), or caffeine (an agonist of ER ryanodine receptor). Changes in intracellular calcium activity were evaluated by fluorescence microscopy using fura-2-loaded cells. Protein synthesis was determined by measuring the incorporation of [H-3]leucine into proteins. The degree of aggregation of ribosomes was evaluated by electron microscopy. TG induced a permanent inhibition of PS to about 10% of control which was only partially reversed within 2 h of recovery. CPA caused about 70% inhibition of PS, and PS recovered completely 60 min after treatment. Caffeine produced an inhibition of PS to about 50% of control. Loading cells with the calcium chelator BAPTA-AM (33.3 mu M) alone suppressed PS without reversing TG- or caffeine-induced inhibition of PS, indicating that the suppression of PS was caused by a depletion of ER calcium stores and not by an increase in cytosolic calcium activity. TG-treatment of cells induced a complete disaggregation of polysomes which was not reversed within the 4 h recovery period following TG-treatment. After caffeine treatment of cells, we observed a heterogeneous pattern of ribosomal aggregation: in some neurons ribosomes were almost completely aggregated while in other cells a significant portion of polyribosomes were disaggregated. The results indicate that a depletion of neuronal ER calcium stores disturbs protein synthesis in a similar way to the effects of transient forms of metabolic stress (ischemia, hypoglycemia or status epilepticus), thus implying that a disturbance in ER calcium homeostasis may contribute to the pathological process of stress-induced cell injury. (C) 1997 Elsevier Science B.V.
引用
收藏
页码:43 / 51
页数:9
相关论文
共 35 条
[1]   RECOVERY FROM CALCIUM-INDUCED DAMAGE IN A NEUROBLASTOMA CELL-LINE [J].
ABE, K ;
KOGURE, K .
BRAIN RESEARCH, 1987, 423 (1-2) :221-228
[2]   ENERGY-METABOLISM IN DELAYED NEURONAL DEATH OF CA1 NEURONS OF THE HIPPOCAMPUS FOLLOWING TRANSIENT ISCHEMIA IN THE GERBIL [J].
ARAI, H ;
PASSONNEAU, JV ;
LUST, WD .
METABOLIC BRAIN DISEASE, 1986, 1 (04) :263-278
[3]   KAINIC ACID-INDUCED SEIZURES AND BRAIN-DAMAGE IN THE RAT - ROLE OF CALCIUM HOMEOSTASIS [J].
BERG, M ;
BRUHN, T ;
FRANDSEN, A ;
SCHOUSBOE, A ;
DIEMER, NH .
JOURNAL OF NEUROSCIENCE RESEARCH, 1995, 40 (05) :641-646
[4]  
BIAN X, 1997, AM J PHYSIOL-CELL PH, V41, pC1241
[5]  
BODSCH W, 1985, PROG BRAIN RES, V63, P197
[6]   BARBITURATE PROMOTES POSTISCHEMIC REAGGREGATION OF POLYRIBOSOMES IN GERBIL HIPPOCAMPUS [J].
BONNEKOH, P ;
KUROIWA, T ;
OSCHLIES, U ;
HOSSMANN, KA .
NEUROSCIENCE LETTERS, 1992, 146 (01) :75-78
[7]  
BROSTROM CO, 1990, ANNU REV PHYSIOL, V52, P577
[8]   ACTIVATION OF METABOTROPIC GLUTAMATE RECEPTORS COUPLED TO INOSITOL PHOSPHOLIPID HYDROLYSIS AMPLIFIES NMDA-INDUCED NEURONAL DEGENERATION IN CULTURED CORTICAL-CELLS [J].
BRUNO, V ;
COPANI, A ;
KNOPFEL, T ;
KUHN, R ;
CASABONA, G ;
DELLALBANI, P ;
CONDORELLI, DF ;
NICOLETTI, F .
NEUROPHARMACOLOGY, 1995, 34 (08) :1089-1098
[9]  
CHIOU GCY, 1995, J PHARMACOL EXP THER, V275, P474
[10]   EFFECT OF ISCHEMIA AND RECIRCULATION ON PROTEIN-SYNTHESIS IN RAT-BRAIN [J].
COOPER, HK ;
ZALEWSKA, T ;
KAWAKAMI, S ;
HOSSMANN, KA ;
KLEIHUES, P .
JOURNAL OF NEUROCHEMISTRY, 1977, 28 (05) :929-934