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1.
Abstract: Rapid Ca2+ signals evoked by K+ depolarization of rat cerebral cortical synaptosomes were measured by dual-channel Ca2+ spectrofluorometry coupled to a stopped-flow device. Kinetic analysis of the signal rise phase at various extracellular Ca2+ concentrations revealed that the responsible voltage-dependent Ca2+ channels, previously identified as P-type Ca2+ channels, inactivate owing to the rise in intracellular Ca2+ levels. At millimolar extracellular Ca2+ concentrations the channels were inactivated very rapidly and the rate was dependent on the high influx rate of Ca2+, thus limiting the Ca2+ signal amplitudes to 500–600 n M. A slower, probably voltage-dependent regulation appears to be effective at lower Ca2+ influx rates, leading to submaximal Ca2+ signal amplitudes. The functional feedback regulation of calcium channels via a sensor for intracellular Ca2+ levels appears to be responsible for the different inhibition characteristics of Cd2+ versus ω-agatoxin IVa.  相似文献   

2.
The requirement for calcium and the change in calcium content in eggs of Oryzias iatipes during the cortical reaction and sperm penetration were examined. Naked eggs failed to exhibit the cortical reaction upon insemination under Ca Mg-free conditions. These eggs exhibited the cortical reaction by reinsemination in the presence of extracellular Ca2+. The effect of extracellular Ca2+ on sperm penetration could be replaced by one of several divalent cations in the external medium. Unlike the cortical reaction, sperm penetration failed to be induced by microinjection to increase intracellular Ca2+. Verapamil significantly reduced the action of extracellular Ca2+ or Ba2+ of divalent cations examined in fertilization, while TEA and TTX had no effect on fertilization in the presence of these cations. No 45Ca uptake into the egg proper was recognized before completion of the cortical reaction. These observations suggest that extracellular divalent cations are indispensable for sperm stimulation of the egg and its penetration into the egg, for which an influx of Ca2+ from the external medium is not required.  相似文献   

3.
The Mg2+ requirement in fertilization was investigated in sea urchins. It was found that when sea urchin eggs were inseminated in sea water free of Mg2+, little fertilization took place. Even when spermatozoa pre-treated with dissolved egg-jelly to induce the acrosome reaction, which needs Ca2+, were used, the fertilization rate remained quite low in the absence of Mg2+. In Strongylo-centrotus intermedius , the lowest concentration of Mg2+ required for 50% fertilization was 0.05 mM in the presence of 10 mM Ca2+, whereas that of calcium was 3 mM in the presence of 49 mM Mg2+. These critical concentrations increased when the concentration of the other ion decreased. Removal of Mg2+ or Ca2+ or both from the suspending medium had little adverse effect on sperm motility. The elevation of the fertilization membrane was also induced by butyric acid independent of the presence or absence of Mg2+ and/or Ca2+. These results indicate that Mg2+ are required at least in some process(es) between acrosome reaction and fertilization membrane elevation, such as sperm penetration or membrane fusion.  相似文献   

4.
Abstract: Lysophosphatidic acid (LPA) is a lipid biomediator enriched in the brain. A novel LPA-induced response in rat hippocampal neurons is described herein, namely, a rapid and sustained elevation in the concentration of free intracellular calcium ([Ca2+]i). This increase is specific, in that the related lipids phosphatidic acid and lysophosphatidylcholine did not induce an alteration in [Ca2+]i. Moreover, consistent with a receptor-mediated process, there was no further increase in [Ca2+]i after a second addition of LPA. The LPA-induced increase in [Ca2+]i required extracellular calcium. However, studies with Cd2+, Ni2+, and nifedipine and nystatin-perforated patch clamp analyses did not indicate involvement of voltage-gated calcium channels in the LPA-induced response. In contrast, glutamate appears to have a significant role in the LPA-induced increase in [Ca2+]i, because this increase was inhibited by NMDA receptor antagonists and α-amino-3-hydroxy-5-methylisoxazole-4-propionate (AMPA)/kainate receptor antagonists. Thus, LPA treatment may result in an increased extracellular glutamate concentration that could stimulate AMPA/kainate receptors and thereby alleviate the Mg2+ block of the NMDA receptors and lead to glutamate stimulation of an influx of calcium via NMDA receptors.  相似文献   

5.
We recently reported the first molecular genetic evidence that Dictyostelium Ca2+ responses to chemoattractants include a contribution from the endoplasmic reticulum (ER) – responses are enhanced in mutants lacking calreticulin or calnexin, two major Ca2+-binding proteins in the ER, even though the influx of Ca2+ into the mutants is reduced. Compared with wild-type cells, the ER in the mutants contributes at least 30–70 nM additional Ca2+ to the responses. Here we report that this additional ER contribution to the cytosolic Ca2+ signal depends upon extracellular Ca2+– it does not occur in the absence of extracellular Ca2+, increases to a maximum as the extracellular Ca2+ levels rise to 10 μM and then remains constant at extracellular Ca2+ concentrations up to at least 250 μM. These results suggest that Ca2+ influx causes the intracellular release, in the simplest scenario by a mechanism involving Ca2+-induced Ca2+ release from the ER. By way of contrast, we show that Ca2+ responses to mechanical stimulation are reduced, but still occur in the absence of extracellular Ca2+. Unlike the responses to chemoattractants, mechanoresponses thus include contributions from the ER that are independent of extracellular Ca2+.  相似文献   

6.
Carbon dioxide induces increases in guard cell cytosolic free calcium   总被引:10,自引:0,他引:10  
The hypothesis that increases in cytosolic free calcium ([Ca2+]i) are a component of the CO2 signal transduction pathway in stomatal guard cells of Commelina communis has been investigated. This hypothesis was tested using fura-2 fluorescence ratio photometry to measure changes in guard cell [Ca2+]i in response to challenge with 700 µl l−1 CO2. Elevated CO2 induced increases in guard cell [Ca2+]i which were similar to those previously reported in response to abscisic acid. [Ca2+]i returned to resting values following removal of the CO2 and further application of CO2 resulted in a second increase in [Ca2+]i. This demonstrated that the CO2-induced increases in [Ca2+]i were stimulus dependent. Removal of extracellular calcium both prevented the CO2-induced increase in [Ca2+]i and inhibited the associated reduction in stomatal aperture. These data suggest that Ca2+ acts as a second messenger in the CO2 signal transduction pathway and that an increase in [Ca2+]i may be a requirement for the stomatal response to CO2.  相似文献   

7.
Intracellular calcium (Ca2+) concentration determines neuronal dependence on neurotrophic factors (NTFs) and susceptibility to cell death. Ca2+ overload induces neuronal death and the consequences are thought to be a probable cause of motoneuron (MN) degeneration in neurodegenerative diseases. In the present study, we show that membrane depolarization with elevated extracellular potassium (K+) was toxic to cultured embryonic mouse spinal cord MNs even in the presence of NTFs. Membrane depolarization induced an intracellular Ca2+ increase. Depolarization-induced toxicity and increased intracellular Ca2+ were blocked by treatment with antagonists to some of the voltage-gated Ca2+ channels (VGCCs), indicating that Ca2+ influx through these channels contributed to the toxic effect of depolarization. Ca2+ activates the calpains, cysteine proteases that degrade a variety of substrates, causing cell death. We investigated the functional involvement of calpain using a calpain inhibitor and calpain gene silencing. Pre-treatment of MNs with calpeptin (a cell-permeable calpain inhibitor) rescued MNs survival; calpain RNA interference had the same protective effect, indicating that endogenous calpain contributes to the cell death caused by membrane depolarization. These findings suggest that MNs are especially vulnerable to extracellular K+ concentration, which induces cell death by causing both intracellular Ca2+ increase and calpain activation.  相似文献   

8.
Abstract: Endothelin-1 (Et-1) but not a range of other receptor agonists stimulated the release of arachidonic acid (AA) in C6 glioma. Et-1 activation was concentration dependent and was inhibited by chelation of extracellular calcium. The calcium ionophores A23187 and ionomycin could also stimulate release of AA. Et-1 caused an early increase in intracellular Ca2+ concentration ([Ca2+]i) followed by a sustained but lower plateau level. The sensitivity of the response to quinacrine, its dependence on Ca2+, and the demonstration of an increase in phospholipase A2 (PLA2) activity that was insensitive to dithiothreitol suggested that the release of AA was due to activation of cytosolic PLA2 in the cells. Staurosporine, a protein kinase C (PKC) inhibitor, had no effect on Et-1-induced AA release but abolished that by phorbol 12-myristate 13-acetate, demonstrating that the Et-1 response was PKC independent. Raised levels of extracellular KCI inhibited both AA release and the increase in [Ca2+]i triggered by Et-1, whereas valinomycin, which causes K+ efflux, not only caused a rapid rise in [Ca2+]i but also caused AA mobilisation. The results therefore suggest that Et-1 activation of PLA2 in this cell type requires calcium influx dependent on K+ efflux.  相似文献   

9.
Abstract: Current literature suggests that a massive influx of Ca2+ into the cells of the CNS induces cell damage associated with traumatic brain injury (TBI). Using an in vitro model for stretch-induced cell injury developed by our laboratory, we have investigated the role of extracellular Ca2+ in astrocyte injury. The degree of injury was assessed by measurement of propidium iodide uptake and release of lactate dehydrogenase. Based on results of in vivo models of TBI developed by others, our initial hypothesis was that decreasing extracellular Ca2+ would result in a reduction in astrocyte injury. Quite unexpectedly, our results indicate that decreasing extracellular Ca2+ to levels observed after in vivo TBI increased astrocyte injury. Elevating the extracellular Ca2+ content to twofold above physiological levels (2 m M ) produced a reduction in cell injury. The reduction in injury afforded by Ca2+ could not be mimicked with Ba2+, Mn2+, Zn2+, or Mg2+, suggesting that a Ca2+-specific mechanism is involved. Using 45Ca2+, we demonstrate that injury induces a rapid influx of extracellular Ca2+ into the astrocyte, achieving an elevation in total cell-associated Ca2+ content two- to threefold above basal levels. Pharmacological elevation of intracellular Ca2+ levels with the Ca2+ ionophore A23187 or thapsigargin before injury dramatically reduced astrocyte injury. Our data suggest that, contrary to popular assumptions, an elevation of total cell-associated Ca2+ reduces astrocyte injury produced by a traumatic insult.  相似文献   

10.
Increase in the extracellular Ca2+ concentration from low (≤ 10−7 M) to normal (10−3 M) caused morphological changes of cultured myocardial cells obtained from fetal mouse heart. The extracellular Na+ and K+ concentrations of the normal medium (10−3 M Ca2+) did not significantly affect the genesis of these morphological changes. Like Ca2+, Ba2+ and Sr2+, but not Mg2+, Co2+ or Ni2+, could induce morphological changes. Increase in the extracellular Ca2+ concentration from 10−8 M to 10−3M also caused excess uptake of 45Ca2+ by cultured myocardial cells. B–16CW 1 cells, which did not show these morphological changes, did not take up excess 45Ca2+ on this treatment. Treatments, such as addition of verapamil or incubation at pH 6.3, which reduced the genesis of morphological changes, reduced the rate of 45Ca2+ uptake by myocardial cells. These facts show that the morphological changes of myocardial cells induced by increasing the extracellular Ca2+ concentration from low to normal are due to excess uptake of Ca2+ by the myocardial cells.
The morphological changes of cultured myocardial cells induced by increasing the extracellular Ca2+ concentration from low to normal were reversed on further incubation of the cells in medium with or without Ca2+.  相似文献   

11.
We show here that, within 1–2 min of application, systemin triggers a transient increase of cytoplasmic free calcium concentration ([Ca2+]c) in cells from Lycopersicon esculentum mesophyll. The systemin-induced Ca2+ increase was slightly but not significantly reduced by L-type Ca2+ channel blockers (nifedipine, verapamil and diltiazem) and the Ca2+ chelator [ethylene glycol tetraacetic acid (EGTA)], whereas inorganic Ca2+ channel blockers (LaCl3, CdCl2 and GdCl3) and compounds affecting the release of intracellular Ca2+ from the vacuole (ruthenium red, LiCl, neomycin) strongly reduced the systemin-induced [Ca2+]c increase. By contrast, no inhibitory effect was seen with the potassium and chloride channel blockers tested. Unlike systemin, other inducers of proteinase inhibitor (PI) and of wound-induced protein synthesis, such as jasmonic acid (JA) and bestatin, did not trigger an increase of cytoplasmic Ca2+. The systemin-induced elevation of cytoplasmic Ca2+ which might be an early step in the systemin signalling pathway, appears to involve an influx of extracellular Ca2+ simultaneously through several types of Ca2+ permeable channels, and a release of Ca2+ from intracellular stores sensitive to blockers of inositol 1,4,5-triphosphate (IP3)- and cyclic adenasine 5'-diphosphoribose (cADPR)-mediated Ca2+ release.  相似文献   

12.
Suspension-cultured carrot ( Daucus carota L. cv. Kintoki) cells were grown in calcium (Ca2+)-deficient and normal liquid media. Cell growth was limited by the Ca2+ deficiency. Similar amounts of pectic fractions were extracted from the walls of control and Ca2+-deprived cells, but the fractions from the walls of Ca2+-deprived cells showed a substantial decrease in galacturonic acid content. However, after 15 days of culture, Ca2+-deprived cells released galacturonic acid-rich extracellular polysaccharides at twice the rate of control cells. The polysaccharides consisted of a mixture of several polymers containing predominantly arabinose, galactose and galacturonic acid. Ca2+-deprived cells also secreted three times more extracellular proteins, containing many glycan-hydrolytic enzymes, into the medium than did normal cells. SDS-PAGE analysis revealed several distinct changes in the polypeptide pattern in the medium of control and Ca2+-deprived cells. Activities of α -galactosidase, β -glucosidase and exo- polygalacturonase increased considerably during Ca2+ deficiency, whereas α - l -arabinofuranosidase and β -galactosidase activities were much reduced.  相似文献   

13.
Abstract: Inositol phosphate accumulation on carbachol stimulation of rat cerebellar granule cells shows a marked dependence on factors affecting cytosolic Ca2+ concentration ([Ca2+]c). After 5 min, potassium depolarisation caused a modest accumulation of inositol phosphates but augmented the response to carbachol by a factor of 2–3. These effects of potassium were dependent on an extracellular source of calcium and could be partially blocked by specific (nifedipine) and nonspecific (verapamil) calcium channel blockers. Measurements of [Ca2+]c under a range of stimulatory conditions demonstrated a close correlation between the elevation of [Ca2+]c and agonist-stimulated phospholipase C (PLC) activity. The maximal potentiation of carbachol-stimulated inositol phosphate accumulation was achieved using 20 m M KCl, which increased [Ca2+]c from ∼20 to ∼75 n M , indicating the involvement of relatively low threshold Ca2+ channels and the high sensitivity of the relevant PLC to small changes in [Ca2+]c. By contrast, increases in [Ca2+]c induced by the Ca2+ ionophore ionomycin were associated with more modest and less potent effects on agonist-stimulated PLC. These results demonstrate a cooperative interaction between a receptor/G protein-regulated PLC and voltage-stimulated elevations of [Ca2+]c, which may function to integrate ionotropic and metabotropic signalling mechanisms in cerebellar granule cells.  相似文献   

14.
Abstract: An increase in extracellular Ca2+ concentration from 0.25 to 10 m M enhanced secretion of norepinephrine and epinephrine induced by a high extracellular K+ concentration (75 m M ). The increment in extracellular Ca2+ concentration also increased the observed peak inward Ca2+ current in response to long (10-s) depolarizing pulses from a holding potential of −55 mV to +5 mV, from about −26 to −400 pA. However, the total amount of Ca2+ influx into the cell only increased when the extracellular Ca2+ concentration was raised from 0.25 to 1 m M and then remained constant up to 10 m M extracellular Ca2+. ATP is cosecreted with catecholamines following a depolarizing stimulus. Kinetic studies indicated that ATP secretion had two components with time constants, in the presence of 2.5 m M extracellular Ca2+, of ∼4 and 41 s, being the fast component of secretion produced by the exocytosis of ∼220 chromaffin granules. The results suggest that, for a given depolarizing stimulus, the size and rate of release for the fast and slow components of secretion are dependent on extracellular Ca2+ concentration.  相似文献   

15.
Abstract In the present study we compared the intracellular level of free calcium ([Ca2+]i) and monomeric (G)/total (G + F) actin ratio in HeLa cells infected with diffuse (DAEC) and localised adherent Escherichia coli (LAEC). The level of [Ca2+]i was increased in both DAEC- and LAEC-infected HeLa cells. However, studies with EGTA- and dantrolene-treated cells and also suspension of cells in Ca2+-free buffer suggested that the rise of [Ca2+]i in DAEC-infected cells was due to the influx of Ca2+ from extracellular medium, whereas Ca2+ mobilisation from the intracellular stores was responsible for the enhancement of [Ca2+]i in LAEC-infected cells. It was also evident that the infection of HeLa cells with DAEC and LAEC caused alteration of G / G + F actin ratio as compared to that of control cells. The ratio was much lower in LAEC-infected cells than that of DAEC-infected ones. Moreover, cytochalasin B inhibited both DAEC and LAEC invasion to HeLa cells, suggesting further the role of microfilaments in the invasion process.  相似文献   

16.
Abstract— 45Ca2+ uptake by cerebral cortex synaptosomes was determined by gel filtration, glass fibre disc filtration under suction and by centrifugation with EGTA present. The filtration methods gave comparable results which were higher than values obtained by the centrifugation method. Uptake was increased by 25mM-K+ at all times investigated. The accumulated 45Ca2+ was bound within the synaptosome. 45Ca2+-ionophore A23187 stimulated uptake only during the first min; levels of intra-synaptosomal 45Ca2+ then returned to control values. A23187 also increased intra-synaptosomal Na+ and Cl contents. Botulinum toxin inhibits the K.+-stimulated release of [14C]ACh from synaptosomes but the ionophore released [14C]ACh from both normal and botulinum-treated preparations in a Ca2+-dependent manner. However, it also elicited Ca2+-dependent release of [choline. Increased extracellular Ca2+ (10 mM and 20 mM) released [14C]ACh (but not [14C]choline) from both normal and botulinum-treated synaptosomes. It is concluded that botulinum toxin interferes with the provision of Ca2+ essential for the mechanism of ACh release.  相似文献   

17.
ABSTRACT. Inhibitors of SERCA (sarcoplasmic/endoplasmic reticulum Ca2+-dependent ATPase) calcium pumps were used to investigate the involvement of internal Ca2+ stores in the GTP response in Paramecium . External application of these inhibitors was found to dramatically alter the typical behavioral and electrophysiological responses of Paramecium to extracellular chemical stimulation. In particular, 2.5-di-tert-butylhydroquinone (BHQ) strongly inhibited the backward swimming response of paramecia to externally applied GTP, though it did not inhibit the associated whirling response. BHQ also prolonged the normally brief electrophysiological response of these cells to GTP. BHQ completely blocked the behavioral and electrophysiological responses of Paramecium to extracellular Ba2+, but had no measurable effect on the behavioral or electrophysiological responses of these cells to another depolarizing stimulus, elevated external K+ concentration. These results suggest the involvement of nonciliary Ca2+ ions in the GTP and Ba2+ responses.  相似文献   

18.
The protein kinase inhibitor K-252a induces a rapid, transient decrease of extracellular pH and [K+], and a concomitant increase in extracellular [Ca2+] in suspensions of cultured parsley cells. These effects are subsequently reversed. As with K-252a, fusicoccin also induces similar changes in pH and extracellular [Ca2+], but reversion does not occur. Acidification by HCI also leads to an increase in external [Ca2+], suggesting that the changes in extracellular [Ca2+] are mainly due to a pH-dependent displacement of Ca2+ ionically bound to the cell wall. The artificial acidification by HCI is rapidly followed by cell-mediated alkalinization, a process associated with K2 release and rebinding of Ca2+. Any change in external pH or [K+] induced by K-252a, fusicoccin, or HCI is followed by an uptake of 45Ca2+ into cellular pools. The results show that K-252a may be a valuable tool for studying the complex regulation of ion transport which may involve changes in the phosphorylation of unknown proteins.  相似文献   

19.
Abstract: Increasing extracellular pH from 7.4 to 8.5 caused a dramatic increase in the time required to recover from a glutamate (3 µ M , for 15 s)-induced increase in intracellular Ca2+ concentration ([Ca2+]i) in indo-1-loaded cultured cortical neurons. Recovery time in pH 7.4 HEPES-buffered saline solution (HBSS) was 126 ± 30 s, whereas recovery time was 216 ± 19 s when the pH was increased to 8.5. Removal of extracellular Ca2+ did not inhibit the prolongation of recovery caused by increasing pH. Extracellular alkalinization caused rapid intracellular alkalinization following glutamate exposure, suggesting that pH 8.5 HBSS may delay Ca2+ recovery by affecting intraneuronal Ca2+ buffering mechanisms, rather than an exclusively extracellular effect. The effect of pH 8.5 HBSS on Ca2+ recovery was similar to the effect of the mitochondrial uncoupler carbonyl cyanide p -(trifluoromethoxyphenyl)hydrazone (FCCP; 750 n M ). However, pH 8.5 HBSS did not have a quantitative effect on mitochondrial membrane potential comparable to that of FCCP in neurons loaded with a potential-sensitive fluorescent indicator, 5,5',6,6'-tetrachloro-1,1',3,3'-tetraethylbenzimidazolocarbocyanine iodide (JC-1). We found that the effect of pH 8.5 HBSS on Ca2+ recovery was completely inhibited by the mitochondrial Na+/Ca2+ exchange inhibitor CGP-37157 (25 µ M ). This suggests that increased mitochondrial Ca2+ efflux via the mitochondrial Na2+/Ca2+ exchanger is responsible for the prolongation of [Ca2+]i recovery caused by alkaline pH following glutamate exposure.  相似文献   

20.
The Ca++ and Mg++ contents of embryonic chick heart were studied by atomic absorption spectrophotometry during a period from 48 h of foetal development until 2-3 days post-hatching. The hearts were isolated and incubated for 40 min at 22°C in three different media aerated with 95% 02-5% C02. The media included: normal Ringer's; Ca+-free Ringer's with 3 mM EGTA; and Ca++-free Ringer's with 3 mM EDTA. At 48 h, the tubular myocardium contained 7-3 mM Ca++ per wet weight which decreased rapidly to 1-2 mM by 10 days of development and remained between 0-9 and 1-1 mM until hatching. The Ca++ content paralleled the changes in Na+ content reported earlier. Treatment with excess chelators, EGTA or EDTA, resulted in removal of 65-75% of the Ca++ content throughout development until the time of hatching, when 50% of the Ca++ became firmly bound. In contrast to the results with Ca++, myocardial Mg++ content rose rapidly from an initial value of 3.2 mM at 48 h to 6.7 mM by the 5th day of development, and then gradually declined throughout the remaining foetal development to 4.8 mM 2-3 days post-hatching. The Mg++ contents closely paralleled changes in K+ content during development, which were reported earlier. Treatment with EGTA and EDTA removed 13-22% and 19-28% of the myocardial Mg++, respectively, during development until just prior to hatching, when only 10-12% could be removed by chelation.  相似文献   

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