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Calmodulin-androgen receptor (AR) interaction: calcium-dependent, calpain-mediated breakdown of AR in LNCaP prostate cancer cells.

Chemotherapy of prostate cancer targets androgen receptor (AR) by androgen ablation or antiandrogens, but unfortunately, it is not curative. Our attack on prostate cancer envisions the proteolytic elimination of AR, which requires a fuller understanding of AR turnover. We showed previously that calmodulin (CaM) binds to AR with important consequences for AR stability and function. To examine the involvement of Ca(2+)/CaM in the proteolytic breakdown of AR, we analyzed LNCaP cell extracts that bind to a CaM affinity column for the presence of low molecular weight forms of AR (intact AR size, approximately 114 kDa). Using an antibody directed against the NH(2)-terminal domain (ATD) of AR on Western blots, we identified approximately 76-kDa, approximately 50-kDa, and 34/31-kDa polypeptides in eluates of CaM affinity columns, suggesting the presence of CaM-binding sites within the 31/34-kDa ATD of AR. Under cell-free conditions in the presence of phenylmethylsulfonyl fluoride, AR underwent Ca(2+)-dependent degradation. AR degradation was inhibited by N-acetyl-leu-leu-norleu, an inhibitor of thiol proteases, suggesting the involvement of calpain. In intact cells, AR breakdown was accelerated by raising intracellular Ca(2+) using calcimycin, and increased AR breakdown was reversed with the cell-permeable Ca(2+) chelator bis-(O-aminophenoxy)-ethane-N,N,N',N'-tetraacetic acid tetra-(acetoxymethyl)-ester. In CaM affinity chromatography studies, the Ca(2+)-dependent protease calpain was bound to and eluted from the CaM-agarose column along with AR. Caspase-3, which plays a role in AR turnover under stress conditions, did not bind to the CaM column and was present in the proenzyme form. Similarly, AR immunoprecipitates prepared from whole-cell extracts of exponentially growing LNCaP cells contained both calpain and calpastatin. Nuclear levels of calpain and calpastatin (its endogenous inhibitor) changed in a reciprocal fashion as synchronized LNCaP cells progressed from G(1) to S phase. These reciprocal changes correlated with changes in AR level, which increased in late G(1) phase and decreased as S phase progressed. Taken together, these observations suggest potential involvement of AR-bound CaM in calcium-controlled, calpain-mediated breakdown of AR in prostate cancer cells.

Androgen Antagonists↗

Increased adrenal renin in transgenic hypertensive rats, TGR(mREN2)27, and its regulation by cAMP, angiotensin II, and calcium.

The newly established rat strain TGR(mREN2)27 is a monogenetic model in hypertension research. Microinjecting the mouse Ren-2d renin gene caused it to become a stable part of the genome. The rats are characterized by fulminant hypertension, low plasma active renin, suppressed kidney renin, high plasma inactive renin, and high extrarenal transgene expression, most prominently in the adrenal cortex. Additionally, they exhibit significantly enhanced excretion of corticosteroids. Here we demonstrate that part of the plasma renin and most of the adrenal renin are transgene determined and that the adrenal renin is strongly activated. TGR(mREN2)27 adrenal cells may serve as a new tool to investigate the regulation and processing of Ren-2d-derived renin and its significance in hypertension and steroid metabolism. Adrenal renin in TGR(mREN2)27 is stimulated by 8-bromo-cAMP (8-Br-cAMP), angiotensin II (ANGII), and calcium. 8-Br-cAMP significantly stimulates active renin and prorenin release, as well as Ren-2d mRNA. Interestingly, within 60 min 8-Br-cAMP, ANGII, and calcimycin stimulate active renin, but not prorenin release. This indicates different intracellular pathways. An activated adrenal renin-angiotensin system in TGR (mREN2)27 as well as the lack of negative feedback on renin secretion by ANGII may be of pathophysiological significance in this hypertensive model.

8-Bromo Cyclic Adenosine Monophosphate↗

Beta-agonists modulate T-cell functions via direct actions on type 1 and type 2 cells.

Although the beta2-adrenergic receptor (beta2AR) is the most extensively characterized G-protein-coupled receptor (GPCR), the effects of beta-agonists on T-cell subtype function remain poorly understood. In contrast to studies suggesting lack of beta2AR expression on type 2 T cells, we demonstrate that type 2 interleukin-13+ (IL-13+) T cells (CD4+ or CD8+) in human peripheral blood lymphocytes (PBLs) can respond directly to beta-agonist, with effects including induction of protein kinase A (PKA) activity and associated inhibition of CD3-stimulated CD25 expression; CD3-stimulated IL-13, interferon-gamma (IFN-gamma), and IL-2 production; and p38 mitogen-activated protein kinase (MAPK) phosphorylation. PGE2 was more efficacious than beta-agonist in activating PKA and inhibiting cytokine production. beta-agonist and PGE2 also inhibited phorbol myristate acetate (PMA) + calcimycin-stimulated IFN-gamma and IL-2 (but not IL-13) production, suggesting that upstream CD3-initiated signaling is not the sole locus of PKA actions. Differential regulation of PMA-stimulated p38, p42/p44, and NF-kappaB explained the capacity of PGE2 and beta-agonist to inhibit IFN-gamma but not IL-13 production. The inhibition of CD3 + CD28-stimulated IL-13 production by both beta-agonist and PGE2 was reversed at low agonist concentrations, resulting in enhanced IL-13, but not IFN-gamma or IL-2, production. These findings identify direct effects of beta2AR activation on T-cell subtypes and suggest a complex role for GPCRs and PKA activity in modulating T-cell functions.

Adrenergic beta-2 Receptor Agonists↗

Effect of 3,6-dimethamidodibenzopyriodonium citrate on Ca2+ in rabbit platelet in vitro.

AIM: To study the effect of 3,6-dimethamidodibenzopyriodonium citrate (I-65) on the cytoplasmic free Ca2+ ([Ca2+]i) concentration in rabbit platelet. METHODS: Measurement of the cytosolic Ca2+ of platelets in vitro by using Quin 2-AM fluorescence technique. RESULTS: In the presence of CaCl2 1 mmol.L-1, I-65 (10, 20, and 30 mumol.L-1) reduced the rise in [Ca2+]i induced by thrombin and calcimycin from 142 +/- 22 nmol.L-1 and 124 +/- 18 nmol.L-1 to 118 +/- 20, 78 +/- 12, 40 +/- 10 nmol.L-1, respectively and 108 +/- 15, 77 +/- 14, 37 +/- 14 nmol.L-1, respectively. In the presence of egtazic acid 2 mmol.L-1, I-65 (10, 20, and 30 mumol.L-1), reduced the Ca2+ release induced by thrombin from 52 +/- 11 nmol.L-1 to 34 +/- 9, 19 +/- 6, and 11 +/- 5 nmol.L-1, respectively. In addition, I-65 (10, 20, and 30 mumol.L-1) also reduced the Ca2+ influx induced by thrombin from 91 +/- 13 nmol.L-1 to 84 +/- 15, 58 +/- 15, and 28 +/- 19 nmol.L-1, respectively. CONCLUSION: I-65 inhibited not only the Ca2+ release, but also the influx of Ca2+ in activation platelet.

Animals↗

Cyclosporine inhibited calcium-mediated apoptosis of HL-60 cells.

AIM: To study the effects of cyclosporine (Cyc) on apoptosis of HL-60 cells. METHODS: Apoptotic cells induced by harringtonine (Har), camptothecin (Cam), or calcimycin (Cal), thapsigargin (Tha) were identified with DNA electrophoresis, morphology, and flow cytometry. Relative [Ca2+]i alteration of apoptotic HL-60 cells were determined with flow cytometry. RESULTS: Cal 1 mg.L-1 or Tha 0.5 mg.L-1 induced apoptosis of HL-60 cells. This effect was inhibited by nontoxic concentration of Cyc 1 mg.L-1. Cyc did not inhibit Har- or Cam-induced apoptosis of HL-60 cells. Both Cal and Tha increased intracellular calcium, whereas Har or Cam did not. CONCLUSION: Cyc inhibited apoptosis only induced by calcium increasement in HL-60 cells. The mechanism of apoptosis induced by Cal or Tha was different from that by Har or Cam.

Anti-Bacterial Agents↗

Effects of berbamine on intracellular calcium concentration in cultured HeLa cells.

AIM: To study the involvement of Ca2+ signaling and the effects of berbamine (Ber) on intracellular calcium concentration ([Ca2+]i) elevated in cultured HeLa cells. METHODS: [Ca2+]i was measured by confocal microscopy in single HeLa cell loaded with Fluo 3-AM. The change of [Ca2+]i was represented by fluorescent intensity (FI). RESULTS: (1) In the presence of extracellular Ca2+ 1.3 mmol.L-1, the resting level of FI was 186 +/- 44, n = 49 cells from all control experiments, and KCl, NE, caffeine, and calcimycin (Cal) all induced [Ca2+]i elevations in cultured HeLa cells. (2) The resting level of FI was not affected by pretreatment with Ber. The FI increased by KCl 60 mmol.L-1, NE 100 micromol.L-1, and Cal 30 micromol.L-1 were attenuated (P < 0.05 or P < 0.01), the slope and the time to peak of FI increase were decreased and prolonged. (3) In the absence of extracellular Ca2+, caffeine 80 mmol.L-1-induced [Ca2+]i mobilization was not inhibited by Ber 100 micromol.L-1 pretreatment. (4) These effects of Ber were similar to those of verapamil (Ver) 10 mumol.L-1. CONCLUSION: Although it was derived from cervical cancer, the HeLa cells which were belong to the nonexcitable cell possessed the similar biological properties with excitable cells, and Ca2+ also played a crucial role in signal transduction processes.

Alkaloids↗

Inhibitory effects of tetrandrine on Bay k 8644-stimulated contraction of isolated rabbit aortic strips.

In the presence of KCl 19 mmol.L-1, calcium agonist Bay k 8644 0.47 mumol.L-1 elicited a strong contraction of isolated rabbit aortic strips, and this contraction was concentration-dependently inhibited by tetrandrine; but this antagonism was noncompetitive. Calcium ionophore calcimycin evoked contraction was markedly depressed by tetrandrine. The results suggested that tetrandrine might not only inhibit transmembrane influx of calcium via potential-dependent channels but also interfere with other processes related to calcium.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy↗

Platelet activating factor stimulates cyclo-oxygenase activity in guinea pig eosinophils. Concerted biosynthesis of thromboxane A2 and E-series prostaglandins.

The effect of platelet activating factor (PAF) on the generation of cyclo-oxygenase-derived arachidonic acid metabolites was examined on purified eosinophils harvested from the peritoneal cavity of male guinea pigs. PAF produced a concentration-dependent increase in the amount of immunoreactive thromboxane B2 (TXB2) and PGE1/E2 released from these inflammatory cells at a relative molar ratio of 30:1. The EC50 of PAF was 20 to 40 nM and maximum stimulation (4.5-fold) of both prostanoids occurred at 1 microM PAF. The ability of PAF to generate TXA2 was rapid (t 1/2 = 9 s), transient (40 s), noncytotoxic, and noncompetitively antagonized by the PAF-receptor blocking drug, WEB 2086. On an equimolar (100 nM) basis, PAF was significantly more effective than C5a, fMLP, and PMA at stimulating TXB2 release but markedly less potent than the calcium ionophore, calcimycin. Pretreatment of eosinophils with the cyclo-oxygenase inhibitor flurbiprofen (8 microM for 5 min) abolished the ability of PAF to promote both TXB2 and PGE1/E2 release. Likewise, dazmegrel (50 microM for 5 min), a selective inhibitor of thromboxane synthetase, abolished PAF-stimulated TXB2 release but markedly augmented the elaboration of PGE1/E2. Inhibition of cyclo-oxygenase with flurbiprofen affected neither the ability of PAF to elevate the intracellular calcium ion concentration (measured by fura-2 fluorescence) nor its appetency to generate superoxide anions at any PAF concentration examined. It is concluded that activation of guinea pig eosinophils by PAF is receptor-mediated and independent of the concomitant generation of cyclo-oxygenase-derived excitatory prostanoids. Inasmuch as TXA2 may contribute to the pathogenesis of bronchial hyperreactivity, then these data implicate the eosinophil as a potential source of this lipid mediator.

Animals↗

Immunosuppressive lymphokine derived from natural suppressor cells.

Cloned natural suppressor (NS) cells derived from spleens of total lymphoid irradiated BALB/c mice were incubated with the phorbol ester, PMA, and calcimycin for 4 h. After thorough washing, the induced NS cells were incubated in serum-free medium for 24 h and the supernatants were collected. The supernatants suppressed the MLR between normal adult responder and stimulator spleen cells. There was no Ag specificity or H-2 haplotype restriction of the MLR suppression. The supernatants did not inhibit [3H]thymidine incorporation per se, because they did not suppress mitogen stimulation of spleen cells. Protease digestion of the supernatants removed the suppressive activity, and dialysis studies indicated that the molecular size of the suppressive factor was larger than 50,000 Da and smaller than 100,000 Da. The suppressive activity was stable at 56 degrees C, pH 2, for 1 h. Thus, NS cell clones can be induced to secrete an immunosuppressive lymphokine, NS factor.

Animals↗

Effects of tetrandrine on rabbit platelet aggregation and platelet activating factor generation.

AIM: To study the effects of tetrandrine (Tet) on platelet aggregation and platelet activating factor (PAF) generation in rabbit platelet-rich plasma (PRP). METHODS: The aggregation rate of platelets induced by calcimycin (Cal) and PAF and the inhibition rate of Tet on platelet aggregation were measured. The amount of PAF in PRP stimulated with Cal and treated with Tet was also measured. RESULTS: Cal 1-8 mumol.L(-1) and PAF 9.5-190.5 pmol.L(-1) induced platelet aggregation. At the final concentrations of 4-64 mumol.L(-1), Tet inhibited the aggregation induced by Cal 4 mumol.L(-1) and PAF 142.9 pmol.L-1. The IC50 (95% confidence limits) were 8.6 (6.0-12.2) mumol.L-1 for Cal and 14.0 (6.4-30.4) mumol.L(-1) for PAF. In the PRP aggregation by Cal, there was a marked increase in PAF content. Tet dependented the release of PAF from platelets by Cal in a concentration-dependent manner, with IC50 of 21 (8-54) mumol.L(-1). CONCLUSION: The inhibition effect of Tet on platelet aggregation might be concerned with the reduction of endogenous PAF generation.

Alkaloids↗

[Inhibitory effects of protein kinase C inhibitor and calmodulin antagonist on tumor necrosis factor production by mouse macrophages].

Mouse peritoneal macrophages were primed with calcium ionophore calcimycin 1 mumol.L-1 for 8 h and then elicited by lipopolysaccharides (LPS, 10 ng.ml-1) for 6 h to induce tumor necrosis factor (TNF), measured by crystal violet staining assay using murine fibroblast L929 cells. Protein kinase C (PKC) inhibitor, 1-(5-isoquinolinesulphonyl)-2-methylpiperazine (H-7) and calmodulin (CaM) antagonist, N-(6-aminohexyl)-5-chloro-1-naphthalenesulfonamide (W-7) were studied on LPS-induced TNF production by macrophages. Addition of H-7 (0.31-50 micrograms.ml-1) and W-7 (10-4000 ng.ml-1) simultaneously with LPS to the culture medium suppressed LPS-induced TNF production in a concentration-dependent manner. When macrophages were pretreated with W-7 (10 ng.ml-1), LPS-induced TNF production was completely inhibited at 8 h. These results suggest that TNF production by macrophages may be dependent on the PKC and CaM.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Platelet activating factor production in bovine cerebral microvascular endothelial cells and its drug inhibition.

The production of platelet activating factor (PAF) in bovine cerebral microvascular endothelial cells (CME cells) and the effects of tetrandrine (Tet) and dauricine (Dau) on the PAF production were investigated. PAF was determined by the aggregation of washed rabbit platelets. The results showed that the CME cells produced PAF 5.93 ng/8.5x 10(5) cells under the calcimycin 2.5 mumol.L-1 stimulation. Tet and Dau 1, 10, and 100 mumol.L-1 inhibited the production of PAF by 18.2%, 51.8%, 56.8%, and 26.3%, 63.3%, 65.9%, respectively. Tet concentration-dependently inhibited the PAF 9.1 nmol.L-1 induced washed rabbit platelets aggregation with the IC50 of 3.05 mumol.L-1 (95% confidence limits: 0.59-15.86 mumol.L-1). The binding of [3H]triazolodiazepine to the CME cells was partially displaced by Tet 0.02-33.00 mumol.L-1. It is suggested that the cerebrovascular system produces PAF at the pathological conditions and the inhibition of Tet and Dau.

Alkaloids↗

Oxatomide and derivatives as inhibitors of mediator release from a mast cell model. Structure-activity relationships.

A series of benzimidazolone and benzimidazole analogues of the antiallergic drug oxatomide (1-¿3-[4-(diphenylmethyl)-1-piperazinyl]propyl¿-1,3-dihydro-2H- benzimidazol-2-one, CAS 60607-34-3) [formula: see text], was evaluated for inhibiting the release of the performed mediator beta-hexosaminidase from the rat basophilic leukemia (RBL-2H3) cell line. Activation of the cells was induced by antigen, or by the calcium ionophore A23187 (calcimycin) in combination with or without the phorbol ester 12-O-tetradecanoylphorbol-13-acetate (TPA). For the active compounds, inhibition of exocytosis was found with all triggers, with the antigen trigger being somewhat more sensitive. This indicates that the compounds influence several steps in the signal transduction route leading to exocytosis. The activity of the compounds is not totally aspecific as small structural changes strongly affect the inhibiting activity. Introduction of a chlorine substituent at the 6-position of the benzimidazolone group results in loss of activity. There does not seem to be a significant activity difference between the benzimidazolone and benzimidazole analogues. Analogues with n < 3, n > 5 or a branched alkyl chain between the piperazinyl and the benzimidazol(on)e moiety lose inhibitory activity. Secretion of the newly formed mediator arachidonic acid and its metabolites was affected by the compounds comparable to the effect on the release of beta-hexosaminidase. The anti-allergic activity did not correlate with the histamine H1-receptor antagonistic activity.

Animals↗

Influence of some biological response modifiers on swelling of rat liver mitochondria in vitro.

In order to understand any involvement of altered calcium functions in peroxidative membrane damage, the effect of a few chemicals, known to modify specific biological responses involving calcium related functions on mitochondrial swelling in vitro was studied. Histamine caused swelling, whereas antihistamines reduced calcium induced swelling. Anti-inflammatory agents aspirin and indomethacin did not affect the initial rapid phase of swelling but reduced the swelling during the later phase. The uncouplers of oxidative phosphorylation and electron transport chain blockers such as dinitrophenol (DNP), antimycin-A and rotenone reduced swelling and the respiratory inhibitors KCN and sodium azide completely abolished it. Trifluoperazine, an anti-calmodulin agent did not influence the initial phase of calcium induced swelling but in the subsequent phase swelling was reduced. c-AMP as well as calcium ionophores, calcimycin and lasalocid acid, potentiated swelling. Thus agents capable of modulating calcium functions could influence the in vitro swelling of mitochondria.

Animals↗

Exposure to N-methyl-D-aspartate increases release of arachidonic acid in primary cultures of rat hippocampal neurons and not in astrocytes.

The release of [3H]arachidonic acid (ARA) was investigated from prelabelled primary cultures of hippocampal neurons and astroglial cells. The activation of N-methyl-D-aspartate (NMDA) subtype of glutamate receptors resulted in a dose-dependent stimulation of [3H]ARA release. The half maximal effect was obtained at about 15 microM NMDA, whereas the maximum concentration (50 microM NMDA) produced about a 2-fold increase in 7-day-old cultures. This elevation in [3H]ARA release was blocked in a dose-related manner by the NMDA receptor antagonist, 2-amino-5-phosphonovaleric acid (APV), and by Mg2+ which blocks NMDA receptor-linked Ca2+ ion channels. The removal of external Ca2+ inhibited NMDA-induced release, whereas treatment with calcimycin (A 23187, a Ca2+ ionophore) greatly increased the [3H]ARA release. The inhibitors of phospholipase A2, nordihydroguaiaretic acid and mepacrine, decreased the NMDA-dependent [3H]ARA release in a dose-related manner, maximum inhibition reaching to about 90% at high doses. Entry of Ca2+ brought about by opening the voltage-sensitive channels by high K+ had no effect on the release of [3H]ARA, indicating that NMDA gated channels are situated in a part of the neuron where Ca2+ entry through this route is more efficiently coupled to the activation of phospholipase A2. Treatment with NMDA had no significant effect on [3H]ARA release in hippocampal astroglial cells as opposed to neurons. This was not due to inability of astrocytes to release ARA, for ATP still evoked [3H]ARA release, and this was markedly inhibited by mepacrine. It is suggested that ARA act as both intracellular and intercellular messengers in the functioning of NMDA receptors in synaptic transmission and plasticity in the hippocampus.

Adenosine Triphosphate↗

Protective role of heparin on in vitro functional aortic response in Watanabe heritable hyperlipidemic rabbits.

The effects of prolonged in vivo heparin treatment upon vasomotor responses and content of cholesterol and energy related compounds were studied in isolated thoracic and abdominal aortas from Watanabe heritable hyperlipidemic (WHHL) rabbits. Unfractionated heparin was administered subcutaneously (2 mg/kg twice a day) to 3-month-old WHHL rabbits for a period of 6 months. A group of WHHL rabbits was treated with saline solution and considered as control. Aortic cholesterol infiltration and serum cholesterol were not significantly decreased by the prolonged heparin treatment. In heparin-treated WHHL rabbits, the in vitro aortic endothelium-dependent relaxation produced by acetylcholine or calcimycin (A 23187) was greater than in saline-treated WHHL group. ATP-induced aorta relaxation (endothelium-dependent and endothelium-independent) did not vary significantly in the two groups of WHHL rabbits, even after mechanical removal of endothelium. Also the noradrenaline-induced aorta contraction did not vary between the two groups of WHHL rabbits. No significant variation in energy-related compounds (except for ADP) was found in the aortic arch. These results suggest that heparin produces a protective effect on aortic tissue by acting mainly at endothelial level.

Adenosine Triphosphate↗

Decreased protein and mRNA expression of ER stress proteins GRP78 and GRP94 in HepG2 cells over-expressing CYP2E1.

CYP2E1 causes oxidative stress mediated cell death; the latter is one mechanism for endoplasmic reticulum (ER) stress in the cell. Unfolded proteins accumulate during ER stress and ER resident proteins GRP78 and GRP94 protect cells against ER dysfunction. We examined the possible role of GRP78 and GRP94 as protective factors against CYP2E1-mediated toxicity in HepG2 cells expressing CYP2E1 (E47 cells). E47 cells expressed high levels of CYP2E1 protein and catalytic activity which is associated with increased ROS generation, lipid peroxidation and the elevated presence of ubiquinated and aggregated proteins as compared to control HepG2 C34 cells which do not express CYP2E1. The mRNA and protein expression of GRP78 and GRP94 were decreased in E47 cells compared to the C34 cells, which may explain the accumulation of ubiquinated and aggregated proteins. Expression of these GRP proteins was induced with the ER stress agent thapsigargin in E47 cells, and E47 cells were more resistant to the toxicity caused by thapsigargin and calcimycin, possibly due to this upregulation and also because of the high expression of GSH and antioxidant enzymes in E47 cells. Antioxidants such as trolox and N-acetylcysteine increased GRP78 and GRP94 levels in the E47 cells, suggesting that CYP2E1- derived oxidant stress was responsible for down regulation of these GRPs in the E47 cells. Thapsigargin mediated toxicity was decreased in cells treated with the antioxidant trolox indicating a role for oxidative stress in this toxicity. These results suggest that CYP2E1 mediated oxidative stress downregulates the expression of GRP proteins in HepG2 cells and oxidative stress is an important mechanism in causing ER dysfunction in these cells.

Cell Line, Tumor↗

Moderate increases in intracellular calcium activate neuroprotective signals in hippocampal neurons.

Although large increases in neuronal intracellular calcium concentrations ([Ca(2+)](i)) are lethal, moderate increases in [Ca(2+)](i) of 50-200 nM may induce immediate or long-term tolerance of ischemia or other stresses. In neurons in rat hippocampal slice cultures, we determined the relationship between [Ca(2+)](i), cell death, and Ca(2+)-dependent neuroprotective signals before and after a 45 min period of oxygen and glucose deprivation (OGD). Thirty minutes before OGD, [Ca(2+)](i) was increased in CA1 neurons by 40-200 nM with 1 nM-1 microM of a Ca(2+)-selective ionophore (calcimycin or ionomycin-"Ca(2+) preconditioning"). Ca(2+) preconditioning greatly reduced cell death in CA1, CA3 and dentate during the following 7 days, even though [Ca(2+)](i) was similar (approximately 2 microM) in preconditioned and control neurons 1 h after the OGD. When pre-OGD [Ca(2+)](i) was lowered to 25 nM (10 nM ionophore in Ca(2+)-free medium) or increased to 8 microM (10 microM ionophore), more than 90% of neurons died. Increased levels of the anti-apoptotic protein protein kinase B (Akt) and the MAP kinase ERK (p42/44) were present in preconditioned slices after OGD. Reducing Ca(2+) influx, inhibiting calmodulin, and preventing Akt or MAP kinase p42/44 upregulation prevented Ca(2+) preconditioning, supporting a specific role for Ca(2+) in the neuroprotective process. Further, in continuously oxygenated cultured hippocampal/cortical neurons, preconditioning for 30 min with 10 nM ionomycin reduced cell death following a 4 microM increase in [Ca(2+)](i) elicited by 1 microM ionomycin. Thus, a zone of moderately increased [Ca(2+)](i) before a potentially lethal insult promotes cell survival, uncoupling subsequent large increases in [Ca(2+)](i) from initiating cell death processes.

Animals↗