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951.
We examine how a variety of cationic channels discriminate between ions of differing charge. We construct models of the KcsA potassium channel, voltage gated sodium channel and L-type calcium channel, and show that they all conduct monovalent cations, but that only the calcium channel conducts divalent cations. In the KcsA and sodium channels divalent ions block the channel and prevent any further conduction. We demonstrate that in each case, this discrimination and some of the more complex conductance properties of the channels is a consequence of the electrostatic interaction of the ions with the charges in the channel protein. The KcsA and sodium channels bind divalent ions strongly enough that they cannot be displaced by other ions and thereby block the channel. On the other hand, the calcium channel binds them less strongly such that they can be destabilized by the repulsion of another incoming divalent ion, but not by the lesser repulsion from monovalent ions.  相似文献   
952.
The aim of the current study was to evaluate the impact of chitosan derivatives, namely N-octyl-chitosan and N-octyl-O-sulfate chitosan, incorporated in calcium phosphate implants to the release profiles of model drugs. The rate and extent of calcein (on M.W. 650 Da) ED, and FITC-dextran (M.W. 40 kDa) on in vitro release were monitored by fluorescence spectroscopy. Results show that calcein release is affected by the type of chitosan derivative used. A higher percentage of model drug was released when the hydrophilic polymer N-octyl-sulfated chitosan was present in the tablets compared with the tablets containing the hydrophobic polymer N-octyl-chitosan. The release profiles of calcein or FD from tablets containing N-octyl-O-sulfate revealed a complete release for FD after 120 h compared with calcein where 20% of the drug was released over the same time period. These results suggest that the difference in the release profiles observed from the implants is dependent on the molecular weight of the model drugs. These data indicate the potential of chitosan derivatives in controlling the release profile of active compounds from calcium phosphate implants.  相似文献   
953.
The neuritogenic effect of exogenous ganglioside has been documented with a variety of neuronal and neuroblastoma systems, but the mechanism is not understood. Involvement of Ca2+ is suggested by this study which demonstrates that treatment of Neuro-2A cells with bovine brain gangliosides (BBG) in Ca2(+)-depleted medium failed to produce neurite outgrowth. This was in contrast to treatment with retinoic acid or dibutyryl cyclic AMP which induced differentiation under the same conditions. Addition of BBG to Neuro-2A cells caused small, but significant, increases in both influx and efflux of Ca2+. It thus appears that although neuritogenesis can proceed by more than one mechanism, that induced by BBG requires exogenous Ca2+ and involves stimulation of Ca2+ flux.  相似文献   
954.
Inositol uptake was studied in the rat CNS neuroblastoma B50 cell line. Eadie-Hofstee analysis of the uptake pattern reveals two defined modes of inositol entry into the cell. The high-affinity uptake component requires the presence of extracellular sodium and is inhibited by phloridzin. Analysis of the uptake velocities of the high-affinity uptake component provided the following apparent kinetic parameters: Km = 13.7 microM and Vmax = 14.7 pmol/mg of protein/min (without correcting for residual diffusion) and Km = 12.9 microM and Vmax = 12.3 pmol/mg of protein/min (with correction). At physiological concentrations, the high-affinity transport process contributes approximately 70% to total uptake; the remainder is due to a low-affinity diffusion-like process. Uptake inhibition studies reveal that the uptake process is sensitive to ouabain, amiloride, and dichlorobenzamil inhibition but relatively insensitive to cytochalasin B or phloretin. When neuroblastoma B50 cells are induced to differentiate morphologically with high extracellular calcium or with dibutyryl cyclic AMP, a significant decrease in inositol uptake is observed. The dibutyryl cyclic AMP-mediated inhibition of uptake affects only the high-affinity uptake component and is noncompetitive in nature. The high extracellular calcium-mediated inhibition is less specific; it involves "disappearance" of the high-affinity process, some inhibition of the low-affinity process, and an increase of inositol efflux. The significance of these observations is discussed in the context of neuroblastoma B50 cell differentiation.  相似文献   
955.
Regulation of photosynthetic sucrose synthesis: a role for calcium?   总被引:6,自引:0,他引:6  
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956.
M. Tester  E. A. C. MacRobbie 《Planta》1990,180(4):569-581
The action of a wide range of drugs effective on Ca2+ channels in animal tissues has been measured on Ca2+ channels open during the action potential of the giant-celled green alga,Chara corallina. Of the organic effectors used, only the 1,4-dihydropyridines were found to inhibit reversibly Ca2+ influx, including, unexpectedly, Bay K 8644 and both isomers of 202–791. Methoxyverapamil (D-600), diltiazem, and the diphenylbutylpiperidines, fluspirilene and pimozide were found not to affect the Ca2+ influx. Conversely, bepridil greatly and irreversibly stimulated Ca2+ influx, and with time, stopped cytoplasmic streaming (which is sensitive to increases in cytoplasmic Ca2+). By apparently altering the cytoplasmic Ca2+ levels with various drugs, it was found that (with the exception of the inorganic cation, La3+) treatments likely to lead to an increase in cytoplasmic Ca2+ levels caused an increase in the rate of closure of the K+ channels. Similarly, treatments likely to lead to a decrease in cytoplasmic Ca2+ decreased the rate of K+ channel closure. The main effect of bepridil on the K+ channels was to increase the rate of voltage-dependent channel closure. The same effect was obtained upon increasing the external concentration of Ca2+, but it is likely that this was due to effects on the external face of the K+ channel. Addition of any of the 1,4-dihydropyridines had the opposite effect on the K+ channels, slowing the rate of channel closure. They sometimes also reduced K+ conductance, but this could well be a direct effect on the K+ channel; high concentrations (50 to 100 μM) of bepridil also reduced K+ conductance. No effect of photon irradiance or of abscisic acid could be consistently shown on the K+ channels. These results indicate a control of the gating of K+ channels by cytoplasmic Ca2+, with increased free Ca2+ levels leading to an increased rate of K+-channel closure. As well as inhibiting Ca2+ channels, it is suggested that La3+ acts on a Ca2+-binding site of the K+ channel, mimicking the effect of Ca2+ and increasing the rate of channel closure.  相似文献   
957.
Tracheary-element (TE) differentiation in suspension cultures ofZinnia elegans L. mesophyll cells was inhibited by blocking calcium uptake in three ways: 1) reducing the [Ca2+] of the culture medium, 2) blocking calcium channels with the non-permeant cation La3+, and 3) blocking calcium channels with permeant dihydropyridine calcium-channel blockers. Calcium-channel blockers were effective when added at any time between 0 and 48 h after culture initiation; after 48h, calcium sequestration and secondary cell-wall deposition began. In contrast, calmodulin antagonists inhibited TE differentiation when added at the beginning of culture, but not when added after 24h. These results indicate that TE differentiation involves at least two calcium-regulated events: one calmodulin-dependent and occurring shortly after exposure to inductive conditions, and the other calmodulin-independent and occurring just prior to secondary cell-wall deposition.  相似文献   
958.
Summary Recent fluorescence, AVEC-DIC, and confocal laser scanning microscopic studies have revealed the dynamic nature and structural extent of a calcium-sequestering endoplasmic reticulum (ER) in plant cells. Various investigators have proposed different roles for the ER in cell motility. One, the ER plays a direct role in the generation of intracellular particle motions or two, the ER regulates particle motions indirectly. We show that the ER can be extruded fromAcetabularia cells, stains brightly with the fluorescent dye DiOC6(3), and small (ca. 100 nm diameter) fluorescent vesicles are observed to move in or along the ER tubules. Intracellular particle movements in the giant algal cellAcetabularia can be transiently inhibited by IP4, IP3, and IP2, compounds which in animal cells are known to cause the release of free calcium ions. A model is proposed which clarifies the possible relationships between the ER, calciosomes, calcium ions, and the microfilament-generated intracellular particle movements observed in plant cells.Abbreviations AVEC-DIC video microscopy in differential interference contrast - CFLSM confocal laser scanning microscope - DiOC6(3) 3,3-dihexyloxacarbocyanine iodide - ER endoplasmic reticulum - IP3 inositol triphosphate - N.A. numerical aperture - SIT silicon intensified target video camera - SR sarcoplasmic reticulum  相似文献   
959.
Rat liver mitochondria are able to temporarily lower the steady-state concentration of external Ca2+ after having accumulated a pulse of added Ca2+. This has been attributed to inhibition of a putative -modulated efflux pathway [Bernardi, P. (1984)Biochim. Biophys. Acta 766, 277–282]. On the other hand, the rebounding could be due to stimulation of the uniporter by Ca2+ [Kröner, H. (1987)Biol. Chem. Hoppe-Seyler 369, 149–155]. By measuring unidirectional Ca2+ fluxes, it was found that the uniporter was stimulated during the rebounding peak both under Bernardi's and Kröner's conditions, while no effects on the efflux could be demonstrated. The rate of unidirectional efflux of Ca2+ was not affected by inhibition of the uniporter. It appears likely that the rebounding is due to stimulation of the uniporter rather than inhibition of efflux.  相似文献   
960.
The kinetics of the changes in the cytoplasmic Ca2+ concentration (Cai2+) and amylase release were measured in fura-2-loaded pancreatic acinar cells and perifused pancreatic acini, respectively. Cholecystokinin octapeptide (CCK-8) and its amphibian analogue caerulein induced similar dose-related increases of Cai2+ and amylase secretion with threshold concentrations of 2–6·10−12 M, and maximal effects at 2·10−10 M. The action of CCK/caerulein on Cai2+ was complex and similar to that of carbachol and bombesin with a prompt several-fold increase within seconds followed by a gradual decline over more than 5 min to a new sustained suprabasal level. The kinetics of amylase release in response to CCK and carbachol correlated with the changes in Cai2+. Additions of the antagonists N2,O2-dibutyrylguanosine 3′:5′-cyclic monophosphate and atropine after 30 min of CCK-8 and carbachol stimulation, respectively, were associated with prompt lowerings of Cai2+ and inhibitions of amylase secretion. The patterns observed with substance P (SP) and eledoisin were different with high concentrations (10−8–10−7 M) giving monophasic increases of Cai2+ and amylase release. An initial stimulation of cells with a high dose of CCK eliminated the Cai2+ response to further stimulation with CCK, carbachol, bombesin and SP, whereas cells subjected to initial stimulation with SP responded to subsequent exposure to CCK with prolonged elevation of Cai2+. The data indicate that stimulation with CCK, carbachol and bombesin may be associated with intracellular mobilization of calcium from more than one pool, and that an increase of Cai2+ is involved even in threshold stimulation of amylase release.  相似文献   
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