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1.
Summary The actin-activated ATPase activityPhysarum myosin was shown to be inhibited of M levels of Ca2+. To determine if Ca2+ regulates ATP-dependent movement ofPhysarum myosin on actin, latex beads coated withPhysarum myosin were introduced intoChara cells by intracellular perfusion. In perfusion solution containing EGTA, the beads moved along the parallel arrays ofChara actin filaments at a rate of 1.0–1.8 m/sec; however, in perfusion solution containing Ca2+, the rate reduced to 0.0–0.7 m/sec. The movement of beads coated with scallop myosin, whose actin-activated ATPase activity is activated by Ca2+, was observed only in the perfusion solution containing Ca2+, indicating that myosin is responsible for the inhibitory effect of Ca2+ onPhysarum myosin movement. The involvement of this myosin-linked regulation in the inhibitory effect of Ca2+ on the cytoplasmic streaming observed inChara internodal cell andPhysarum plasmodium was discussed.Abbreviations ATP adenosine 5-triphosphate - DTT dithiothreitol - EDTA ethylenediaminetetraacetic acid - EGTA ethyleneglycolbis(-aminoethylether) N,N,N,N-tetraacetic acid - PIPES piperazine-N,N-bis(2-ethanesulfonic acid)  相似文献   

2.
Summary Normal human breast epithelial cells obtained from a reduction mammoplasty (S130) have been maintained in culture for up to a year in Ham's F12:Dulbecco's medium, with 5% equine serum and a low calcium concentration (0.04 mM). These cells undergo senescence and terminal differentiation if they are switched to high Ca2+ medium (1.05 mM). To clarify the mechanism by which Ca2+ regulates the growth of these cells, we studied the role of tubulin assembly-disassembly and the morphologic changes subsequent to high Ca2+ switch. An early Passage (9) of S130 breast epithelial cells growing in low Ca2+ medium was analyzed. Of a total of 785 counted cells, 720 (92%) were rounded and 65 (8%) were flat, elongated, and fibroblastlike. When the cells were switched to high Ca2+ medium, out of 553 cells, only 111 (20%) were rounded and the remaining 442 (80%) were elongated and fibroblastlike. Immunocytochemical localization of tubulin, using the immunogold silver enhancement technique, showed that the majority of low Ca2+-grown cells did not display a network of tubulin fibers, whereas high Ca2+-grown cells revealed extensive cytoplasmic network of polymerized tubulin, which seemed to stretch out the cells. Experiments designed to determine the mechanisms of tubulin polymerization in these cells revealed that: a) Cells grown in high Ca2+ medium containing 0.1 mM colchicine had a reduced proportion of elongated cells; b) treatement of the cells with the calcium ionophore A23187 in low calcium medium resulted in an increase in the number of elongated cells which had more polymerized tubulin; and d) treatment of the cells with cyclic-AMP in low Ca2+ medium had no observable effect on cell morphology. These results indicate that high levels of Ca2+ either favor tubulin polymerization or stabilize the polymerized state. This research was supported by NCI grant CA-38921 from the National Cancer Institute, Bethesda, MD, and by an institutional grant from the United Foundation of Greater Detroit.  相似文献   

3.
The relationship of cell to substrate and the organisation of the cellular contractile system has been studied using whole-cell mount transmission electron microscopy (TEM). The cellular response to trypsin is compared with that induced by treatment with the Ca2+-specific chelating agent EGTA. Trypsinisation results in a breakdown of the ordered contractile system and both cell-cell and cell-substrate adhesion. Studies with the respiratory inhibitor 2,4 dinitrophenol (DNP) have shown that cellular rounding mediated by trypsinisation is energy independent. The response to EGTA is confluence modulated. Confluent monolayers are induced to contract and detach as sheets, a response related here to the overlapping of the peripheral cytoplasm. Subconfluent cells contract centripetally withdrawing organelles to the perinuclear region. Withdrawal of organelles is accompanied by a redistribution of the contractile system. Contraction results in a rounded cell anchored to the substrate by numerous retraction fibrils. The response to EGTA is energy dependent. The observations suggest that a chelation of Ca2+ results in an active contraction of the actomyosin system. We propose a mechanism for this response based on ultrastructural and biochemical characterisation of the actomyosin system.  相似文献   

4.
SPARC (secreted protein, acidic and rich in cysteine) is an extracellular, Ca(2+)-binding protein that inhibits the spreading of newly plated cells and elicits a rounded morphology in spread cells. In this study, I investigated whether the rounding effect of SPARC depends on the ability of the protein to chelate Ca2+ at the cell surface. Bovine aortic endothelial cells were plated in the presence of different concentrations of SPARC and Ca2+; control experiments were performed with 1 mM EGTA and with Mg2+. Quantitative estimates of cell rounding were calculated according to a rounding index. SPARC, at concentrations between 0.15 and 0.58 microM, elicited rounding (or prevented spreading) of cells cultured for 16-38 h in 0.5-2.0 mM Ca2+. Addition of 0.5-2.0 mM Mg2+ to cells previously rounded in the presence of SPARC did not abrogate the effect of SPARC. When the levels of extracellular Ca2+ were adjusted with 1 mM EGTA to maximum values ranging from 7.1 to 320 microM, cells displayed a rounded morphology in the presence of exogenous SPARC. Although the rounding induced by 1 mM EGTA was essentially reversed by the inclusion of 2 mM Ca2+, cultures containing these reagents together with SPARC maintained the rounded phenotype. These results do not support a mechanism that involves the abstraction of Ca2+ from proteins at the cell surface or the provision of Ca2+ from native extracellular SPARC to cells. Therefore, SPARC does not appear to act as a local chelator of extracellular Ca2+ and Mg2+ and presumably exerts its function as a modulator of cell shape via a different pathway.  相似文献   

5.
The present work describes the existence of a haemolytic activity in the serum of tench, Tinca tinca, against rabbit red blood cells (RRBC) which was identified as belonging to the alternative complement pathway from the following findings: haemolytic activity disappeared when the serum was heated to 45°C for 20 min; 10 mM EDTA, which chelates Ca2+ and Mg2+, induced a complete loss of haemolysis; Mg2+, but not Ca2+, was required for the activity, and the use of sheep red blood cells (SRBC), which have a high content of sialic acid, resulted in the serum activity falling to a very low degree of haemolysis. The ACH50 value (units ml-1 serum) was defined as the reciprocal of the serum dilution necessary to lyse 50% of 4 × 107 RRBC in a buffered medium of normal ionic strength (μ=0·15) containing 10 mM EGTA and optimum concentrations of Mg2+. The optimum conditions for the ACH50 assay were: pH 7·2-7-7; reaction temperature, 15°C; concentration of Mg2+, 5 mM; and reaction time, 90 min. Under these conditions, the values of ACH50 in spring, summer, autumn and winter for male tench were 69±13, 91±22, 90±36 and 137±41, and for female tench 100±11, 108±13, 82±12 and 145±17. The highest serum activity was found in the winter, suggesting the importance of this pathway during cold periods when the specific immune response is depressed in ectothermic vertebrates.  相似文献   

6.
Genes coding for sporamin and β-amylase of sweet potato are inducible not only by high levels of metabolizable sugars, such as sucrose, but also by a low concentration of polygalacturonic acid (PGA). Calmodulin inhibitors and EGTA inhibited both the PGA-inducible and the sucrose-inducible accumulation of mRNAs for sporamin and β-amylase in sweet potato. Calmodulin inhibitors, EGTA and La3+, also inhibited the sucrose-inducible expression, in leaves of transgenic tobacco, of a fusion gene, β-Amy:GUS, which consists of the promoter of the β-amylase gene and the coding sequence for β-glucuronidase. The sucrose-inducible expression of the β-Amy:GUS fusion gene was also inhibited by two inhibitors of Ca2+ channels, diltiazem and nicardipine. These results suggest that the sugar-inducible expression of genes for sporamin and β-amylase involves, at least in part, Ca2+-mediated signalling, and that the cytosolic free Ca2+ may mediate cross-talk between signals related to carbohydrate metabolism and other stimuli. Treatment of coelenterazine-loaded leaf discs of tobacco expressing a Ca2+-binding photoprotein, aequorin, with 0.2 M sucrose for 24 h significantly reduced the level of luminescence that could be induced by cold shock, as compared to cold shock-induced luminescence in coelenterazine-loaded leaf discs treated with water. Repression of cold shock-induced luminescence was due to the conversion of holoaequorin to apoaequorin during the treatment with sucrose. Treatment of coelenterazine-loaded leaf discs with a 0.2 M solution of glucose or fructose, but not of mannitol or sorbitol, also reduced the cold shock-induced luminescence. It is suggested that non-synchronous increases in cytosolic level of free Ca2+ occur in leaf discs during treatment with high levels of metabolizable sugars.  相似文献   

7.
NRK rat cells infected with a transformation-defective, temperature-sensitive (ts) mutant of the avian sarcoma virus could not proliferate in Ca2+-deficient medium at a nonpermissive temperature (40 °C) that inactivated the viral pp60v-scr-transforming product and rendered the cells phenotypically untransformed. However, these arrested cells were stimulated to initiate DNA replication with little or no delay while still in the Ca2+-deficient medium, either by adding Ca2+ or calmodulin at 40 °C or by reducing the temperature to 36 °C which restored the transformed phenotype by rapidly reactivating pp60v-src. The G1/S transition triggered by restoring the transformed phenotype was suppressed by three different anticalmodulin drugs (R24571, trifluoperazine, W7). The suppression by one of these drugs, trifluoperazine, was overcome by adding calmodulin. Thus, neoplastic transformation by the avian sarcoma virus sharply reduces the extracellular Ca2+ requirement for the initiation of DNA replication without bypassing a calcical-modulin-dependent mechanism also needed for the G1/S transition.  相似文献   

8.
Escherichia coli mutants, (verA, dilA) specifically resistant to the Ca2+ channel inhibitors verapamil and diltiazem, respectively, are hypersensitive to EGTA and BAPTA. We have shown, using 1-D and 2-D gel electrophoresis, that the synthesis of at least 25 polypeptides in the mutants was enhanced by treatment with Ca2+ chelators and the synthesis of at least 11 polypeptides was repressed. This pattern of induction was not observed in heat- or SDS-treated cells and therefore does not appear to be a general stress response. The majority of the induced proteins are low molecular weight, extremely heat stable and acidic, characteristic properties of calmodulin. Moreover, of the major induced species, three with apparent molecular masses of 12, 18, and 34kDa all cross-reacted with polyclonal and monoclonal antibodies to eukaryote calmodulins or calerythrin, a heat-resistant Ca2+-binding protein from Saccharo-polyspora erythraea. The verA, dilA mutants. In being hypersensitive to EGTA and to the Ca2+ ionophore A23187 + Ca2+, may be defective in the regulation of the level of free intracellular Ca2+.  相似文献   

9.
A specific increase in the membrane content of 1,2-diacylglycerol occurred when erythorcytes were lysed at 20 °C in media which did not include a chelator of Ca2+ and also when Ca2+ was added to haemoglobin-free erythrocyte ghosts which had been prepared in the presence of ethyleneglycol-bis-(β-aminoethylether)-N,N′-tetraacetic acid (EGTA). The maximum increase was about 20-fold. The production of 1,2-diacylglycerol appeared to be caused by an endogenous membrane-bound phospholipase C which was half-maximally activated at less than 1 μM Ca2+ and which had access to only about 0.6–0.8% of the cells' glycerolipids. This activity was optimal at pH 7.0–7.2 in the presence of 0.1 mM Ca2+; under these conditions diacylglycerol production was complete within 5–10 min. Enzyme activity was markedly decreased at low temperatures, and was abolished by heating at 100 °C for 1 min.  相似文献   

10.
The sensitivity of rat osteoclasts to increased extracellular calcium concentrations ([Ca2+]e) was investigated by single cell measurements of free cytosolic calcium concentrations ([Ca2+]i), by changes in microfilament organization of resorbing osteoclasts, and by in vitro bone resorption assays. Osteoclasts cultured on glass and on bone showed clear differences in their responses, as in 44% and 52% of osteoclasts on glass but in only 21% and 25% of osteoclasts on bone [Ca2+]i increased when [Ca2+]e was increased from 2 mM to 6 or 10 mM via perfusion, respectively. Bone resorption was inhibited without changes in the osteoclast numbers only by 10 mM [Ca2+]e in 2 day cultures. Furthermore, there were no changes in the organization of microfilament structures in resorbing osteoclasts after increased [Ca2+]e (up to 20 mM [Ca2+]e, 30 min incubation). These results suggest that the sensitivity of osteoclasts to increased [Ca2+]e is dependent on their activation phase (resting/migrating vs. resorbing) and that resorbing osteoclasts are not sensitive to increased [Ca2+]e or that the sensing system cannot be reached in polarized resorbing osteoclasts. In contrast, increasing [Ca2+]i through the use of calcium ionophores dispersed specific microfilament structures at the sealing zone transiently in a few minutes. This shows that [Ca2+]i is used as a signaling mechanism to inactivate osteoclasts, with a similar end result on microfilament structures at the sealing zone as caused by increased concentration of cAMP and activation of protein kinase C. © 1996 Wiley-Liss, Inc.  相似文献   

11.
We show here that both salinity and osmotic stress trigger transient increases in intracellular free Ca2+ concentration ([Ca2+]i) in cells of the nitrogen‐fixing filamentous cyanobacterium Anabaena sp. PCC7120, which constitutively expresses apoaequorin. Isoosmolar concentrations of salt (NaCl) and osmoticum (sucrose) induced calcium transients of similar magnitude and shape, suggesting that cells sense, via Ca2+ signalling, mostly osmotic stress. The Ca2+ transients induced by NaCl and sucrose were completely blocked by the calcium chelator ethylene glycol‐bis(b‐aminoethylether)N,N,N¢,N¢‐tetraacetic acid (EGTA) and were partially inhibited by the calcium channel blocker verapamil. Increased external Ca2+ and the Ca2+ ionophore calcimycin (compound A23187) enhanced Ca2+ influx further, suggesting the involvement of extracellular Ca2+ in the observed response to salinity and osmotic stress. However, the plant hormone abscisic acid (ABA) did not provoke any effect on the Ca2+ transients induced by both stresses, indicating that it may not be acting upstream of Ca2+ in the signalling of salinity and/or osmotic stress in Anabaena sp. PCC7120.  相似文献   

12.
Calcium efflux has been studied in barnacle muscle fibres under internal dialysis conditions. Prolonged dialysis of these fibres, with a medium free of ATP and containing 2 mM cyanide and 1 mM iodoacetate, causes the ATP in the perfusion effluent to fall to less than 20 μM. The mean calcium efflux from fibres dialyzed with EGTA buffered solution containing 0.3 μM ionized Ca and no ATP is 0.6 pmol · cm−2 · s−1. A two-fold stimulation of the calcium efflux is observed when ATP is added to fibres previously dialyzed with an ATP-free medium. Withdrawal of Na+ and Ca2+ from the external medium causes a marked drop in the Ca2+ efflux in the presence of internal ATP.  相似文献   

13.
We have studied the modulation by intracellular Ca2+of the epithelial Ca2+channel, ECaC, heterologously expressed in HEK 293 cells. Whole-cell and inside-out patch clamp current recordings were combined with FuraII-Ca2+measurements:1. Currents through ECaC were dramatically inhibited if Ca2+was the charge carrier. This inhibition was dependent on the extracellular Ca2+concentration and occurred also in cells buffered intracellularly with 10 mM BAPTA.2. Application of 30 mM [Ca2]einduced in non-Ca2] buffered HEK 293 cells at −80 m V an increase in intracellular Ca2+([Ca2]i) with a maximum rate of rise of 241 ±15nM/s (n= 18 cells) and a peak value of 891 ± 106 nM. The peak of the concomitant current with a density of 12.3 ± 2.6 pA/pF was closely correlated with the peak of the first-time derivative of the Ca2+transient, as expected if the Ca2+transient is due to influx of Ca2+. Consequently, no Ca2+] signal was observed in cells transfected with the Ca2+impermeable ECaC mutant, D542A, in which an aspartate in the pore region was neutralized.3. Increasing [Ca2+]iby dialyzing the cell with pipette solutions containing various Ca2+] concentrations, all buffered with 10 mM BAPTA, inhibited currents through ECaC carried by either Na+or Ca2+] ions. Half maximal inhibition of Ca2+currents in the absence of monovalent cations occurred at 67 nM (n between 6 and 8), whereas Na+currents in the absence of Ca2+] and Mg2+were inhibited with an IC50of 89 nM (n between 6 and 10). Currents through ECaC in the presence of 1 mM Ca2+and Na+, which are mainly carried by Ca2+, are inhibited by [Ca2]iwith an IC50of 82 nM (n between 6 and 8). Monovalent cation currents through the Ca2+impermeable D542A ECaC mutant were also inhibited by an elevation of [Ca2]i(IC50= 123 nM, n between 7 and 18).4. The sensitivity of ECaC currents in inside-out patches for [Ca2]iwas slightly shifted to higher concentrations as compared with whole cell measurements. Half-maximal inhibition occurred at 169 nM if Na+was the charge carrier (n between 4 and 11) and 228 nM at 1 mM [Ca2]e(n between 4 and 8).5. Recovery from inhibition upon washout of extracellular Ca2+(whole-cell configuration) or removal of Ca2+from the inner side of the channel (inside-out patches) was slow in both conditions. Half-maximal recovery was reached after 96 ± 34 s (n= 15) in whole-cell mode and after 135 ± 23 s (n= 17) in inside-out patches.6. We conclude that influx of Ca2+through ECaC and [Ca2]iinduce feedback inhibition of ECaC currents, which is controlled by the concentration of Ca2+in a micro domain near the inner mouth of the channel. Slow recovery seems to depend on dissociation of Ca2+from an internal Ca2+binding site at ECaC.  相似文献   

14.
Functions involved in the determination of the morphology of mouse embryo fibroblasts have been studied using as a system the cell rounding and reflattening related to the presence or absence of a protein component of the cell surface [18]. Cells that had undergone rounding following the removal of the surface protein gradually reflattened if their protein synthesis was not impaired but could rapidly revert to the flattened state if a fraction containing the surface protein was returned to the cells. Studies with sodium azide and potassium cyanide showed that both the rounding and reflattening were energy-dependent. When the rounded state was induced the organised appearance of the microfilaments present in the cortical layer adjacent to the plasma membrane was lost. However, microfilament structures reappeared when rounded cells respread over the glass substrate. On the other hand no reflattening occurred if microfilament function was impaired by treatment with cytochalasin B (CB), showing a requirement of microfilament integrity for the flattened form to be manifest. Microtubules also were shown to be involved in shape determination as their integrity was necessary for cells to progress from the flattened form to the rounded state, but they did not appear to be primarily involved in the process of reflattening. The distribution of macromolecular components of the plasma membrane was also shown to affect changes of cell shape as cross-linking of surface receptors by concanavalin A (ConA) or specific anti-cell immunoglobulins prevented cells from acquiring the rounded form and treatment of cells with media of low pH, which causes aggregation of intra-membrane particles, also prevented rounding. A comparison between quiescent cells and cells in S phase showed the changes of morphology to be similar in nature, but more prompt and marked in the S population. The indication of the studies presented is that determination of cell form requires the cooperative interaction between the protein component of the cell surface, integral constituents of the plasma membrane and cytokinetic organelles.  相似文献   

15.
Isolated protoplasts from pulvinar motor cells of Mimosa pudica were studied using conventional whole-cell patch clamp techniques. With internal solutions weakly buffered for Ca2+ (0.2 mm EGTA), a run-down of the outward delayed rectifier K+ current was induced by hyperpolarizing the holding potential, and this effect was strongly promoted by high external Ca2+ concentrations. This rundown could be reversed by coming back to less hyperpolarized holding potentials or by lowering the external [Ca2+]. Such rundown was absent when pipette internal solutions strongly buffered (10 mm EGTA) for Ca2+ were used. Ionomycin induced run-down of the K+ current with internal solutions containing 0.2 mm but not 10 mm EGTA. The hyperpolarization-associated rundown was reversibly blocked by Gd3+ and La3+.We thank Christophe Untereiner and Denis Wagner for expert technical assistance in facilitating the experiments and data acquisition and analysis.  相似文献   

16.
Abstract: The toxicity of thapsigargin, a selective inhibitor of endoplasmic reticular Ca2+-ATPase, was investigated in GT1-7 cells, a murine hypothalamic cell line. Treatment of these cells with 50 or 100 nM thapsigargin greatly reduced cell viability at 24 and 48 h. These doses of thapsigargin induced a rapid rise in free cytosolic Ca2+ ([Ca2+]i), followed by a sustained increase. Addition of EGTA to chelate extracellular Ca2+ diminished somewhat the size of the initial increase of [Ca2+]i caused by thapsigargin, and abolished the sustained increase. The sustained increase could also be abolished by addition of La3+ and by SKF 96365, a drug selective for receptor-mediated calcium entry, but not by verapamil or flunarizine. Pretreatment with 50 µM BAPTA/AM, a cytosolic Ca2+ chelator, inhibited the peak [Ca2+]i caused by thapsigargin but did not inhibit the sustained elevation of [Ca2+]i. Neither EGTA nor BAPTA/AM inhibited the cell death induced by thapsigargin. The cell death was characterized by DNA fragmentation (“laddering”), nuclear condensation and fragmentation, and was inhibited by protein synthesis inhibitor cycloheximide, all characteristic of apoptotic cell death. Overexpression of the proto-oncogene bcl-2 in GT1-7 cells inhibited significantly DNA fragmentation, nuclear condensation and fragmentation, and cell death induced by thapsigargin. However, Bcl-2 did not alter either basal [Ca2+]i or the elevation of [Ca2+]i induced by thapsigargin. Our results suggest that abnormal Ca2+ release from endoplasmic reticulum caused by thapsigargin induces GT1-7 death by apoptosis and that this effect does not depend on Ca2+ influx from the extracellular space. Bcl-2 inhibited apoptosis induced by thapsigargin, but the mechanism is unlikely to be inhibition of endoplasmic reticular Ca2+ release in GT1-7 neuronal cells.  相似文献   

17.
ABSTRACT. The phorbol ester TPA (phorbol 12-myristate 13-acetate) substitutes for CO2 as an agonist for transforming Trypanosoma cruzi epimastigotes to the metacyclic trypomastigote stage in a starvation medium consisting of phosphate buffered saline + 10 mM proline, 10 mM sodium acetate and 0.035% NaHCO3. Since TPA is thought to stimulate protein kinase C by mimicking the activity of the secondary messenger diacylglycerol, the above result suggested that T. cruzi metacyclogenesis could be activated by a Ca2+-dependent protein kinase C signal induction pathway. Accordingly, cytosolic calcium flux ([Ca2+]i) in epimastigotes, activated with 5% CO2 or TPA (10-7 M), was measured with the Ca2+ molecular probe, fluo-3AM. In addition, [Ca2+]i was measured in cells incubated with putative metacyclogenic agonists (e.g. proline, glutamate, bioamines, ionophores and catecholamines). None of the compounds studied, except for EGTA, affected cytosolic Ca2+ levels. Control assays with 11 μM thapsigargin, which mobilizes noncytoplasmic Ca2+ stores by inhibiting endoplasmic reticulum Ca2+-ATPase. validated our fluorometric assay procedure. Although thapsigargin significantly increases cytoplasmic Ca2+ fluorescence, it has no effect on transformation. The protein kinase C inhibitors staurosporine, H-7 and HA 1004 were tested for their effect on T. cruzi metacyclogenesis. Low concentrations of staurosporine and HA 1004 significantly elevated Pent strain transformation while H-7 had no effect on Peru strain metacyclogenesis. Inhibitor H-7 did significantly depress CL transformation. the results indicate that induction of T. cruzi metacyclic trypomastigote formation by CO2 and TPA is not accompanied by changes in cytosolic Ca2+ and do not provide supporting evidence for participation of a protein kinase C-mediated phosphoinositide cascade in metacyclogenesis.  相似文献   

18.
The changes of cytosolic Ca2+ fluorescence intensity and the activities of calcium channel of primary maize root tip cells induced by PEG6000 or abscisic acid(ABA) were studied by both confocal techniques and the whole-cell patch clamping in this study. The Ca2+ fluorescence intensity increased while treated with PEG or ABA within 10 min, illuminating that Ca2+ participated in the process of ABA signal transduction. For further proving the mechanism and origin of cytosolic Ca2+ increase induced by PEG treatments, N,N,N′,N′-tetraacetic acid (EGTA), Verapamil (VP) and Trifluoperazine (TFP) were added to the PEG solution in the experiments separately. The results showed that Ca2+ fluorescence intensity induced by PEG was suppressed by both EGTA and VP obviously in the root tip cells. The Ca2+ fluorescence intensity of plants changed after the addition of CaM inhibitor TFP while subjected to osmotic stress, which seemed to show that CaM participated in the process of signal transduction of osmotic stress too. The mechanism about it is unknown today. Further, a hyperpolarization-activated calcium permeable channel was recorded in plasma membrane of maize root tip cells. The Ca2+ current (ICa) intensity increased remarkably after PEG treatment, and the open voltage of the calcium conductance increased. Similar changes could be observed after ABA treatment, but the channel opened earlier and the current intensity was stronger than that of PEG treatment. The activation of calcium channel initiated by PEG strongly was inhibited by EGTA, VP or TFP respectively. The results revealed that Ca2+ participated in the signals transduction process of osmotic stress, and the cytosolic free Ca2+ increase by osmotic stress mainly came from the extracellular, and some came from the release of cytoplasmic calcium pool.  相似文献   

19.
Considering the resemblances between Eu3+ and Ca2+ in their atomic radius and structures of the valence electron, the effects of Eu3+ on amaramthin synthesis in Amarathus caudatus seedling were studied. Eu3+ had both promoting and inhibiting effects on amaramthin synthesis. The optimum promoting concentration and half inhibiting concentration of Eu3+ to synthesis of amaranthin were 0.4 mmol/L and 2.5 mmol/L, respectively. In the dark, A23187 (ions carrier) could carry Eu3+ into cells through the Ca2+ channel. When Ca2+ was chelated with EGTA, the synthesis of amaranthin could be partly retrieved by Eu3+. Eu3+ treatment could also activate Ca2+-ATPase on plasma membrane. Moreover, the sodium dodecyl sulfate-polyacrylamide gel electrophoresis patterns of total proteins from the plants treated by Eu3+ and Ca2+ were similar but slightly different in the contents. It suggested that the effects of Eu3+ and Ca2+ on amaranthin synthesis were similar. After being treated by Eu3+ or Ca2+, the outside Ca2+ could enter into cells to promote synthesis of amaranthin. The results above indicated that Eu3+ might replace Ca2+ in the calcium/calmidulin-dependent phytochrome signal transduction system and play important roles in plant development by promoting calcium transportation across plasma membrane.  相似文献   

20.

Background  

Mitochondria are dynamic organelles that move along actin filaments, and serve as calcium stores in plant cells. The positioning and dynamics of mitochondria depend on membrane-cytoskeleton interactions, but it is not clear whether microfilament cytoskeleton has a direct effect on mitochondrial function and Ca2+ storage. Therefore, we designed a series of experiments to clarify the effects of actin filaments on mitochondrial Ca2+ storage, cytoplasmic Ca2+ concentration ([Ca2+]c), and the interaction between mitochondrial Ca2+ and cytoplasmic Ca2+ in Arabidopsis root hairs.  相似文献   

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