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1.
An intensity/time study of the taste of selected amino acidswas carried out. Intensity, persistence and total gustatoryresponse were assessed at five concentrations. Ten amino acidswere assessed for sweetness and eleven amino acids were assessedfor bitterness, four amino acids being assessed for both sweetnessand bitterness. Both a linear function and a power function,I = Kcn (where I is taste intensity, c is concentration, K isa constant and n is the exponent of taste intensity), were fittedto the data. The accession efficiencies for taste recognitionand taste detection were found. Kinetic equations were usedto find Km, the affinity of the receptor site for the sapidmolecule. Limited relationships between chemical structure ofthe amino acids and their temporal properties were found.  相似文献   

2.
Methyl--D-mannopyranoside is a glycoside with a bitter-sweettaste. Adaptation to sucrose reduces the sweetness and adaptationto quinine sulphate reduces the bitterness of methyl--Dmannopyranoside.Application of Gymnema sylvestre reduces the sweetness of methyl--D-mannopyranosidewithout reducing its bitterness. These results, predicted byprevious studies, contradict a recent hypothesis and reportby Birch and Mylvaganam. 1Supported by NIH Grant 2-RO1-NS07873-9  相似文献   

3.
The tastes of salts to humans are complex. NaCl is the mostpurely salty of all salts, but even this stimulus tastes sweetat low concentrations and somewhat sour at mid-range intensities.Other salts taste significantly sour or bitter in addition tosalty. Previous studies have shown that the saltiness of simplehalide salts is reduced by adaptation to NaCl, suggesting thata single mechanism might be responsible for the salty tasteof these stimuli. In electrophysiological studies in rodents,the response to NaCl is reduced by application to the tongueof the Na+- channel blocker amiloride. Organic Na+ salts aremore heavily dependent on this amiloride-sensitive transductioncomponent than NaCl, and are generally less salty and more sour.In order to investigate the relationship between NaCl saltinessand that evoked by other salts, we adapted the tongue to distilledH2O and to 0.1 M NaCl and obtained direct magnitude estimatesof the taste intensity of 15 organic and inorganic Na+, Li+,K+ and Ca2+ salts, matched for total intensity. Subjects dividedthese magnitude estimates among the component taste qualities.Adaptation to NaCl abolished the taste of NaCl and LiCl, andeliminated the saltiness of all other salts. The magnitude estimatesof the bitterness and sourness of many salts increased afterNaCI adaptation. Since recent biophysical data suggest thatadaptation in taste receptors may involve whole-cell mechanisms,we propose that saltiness is reduced by NaCl adaptation becauseit originates in the subset of taste receptors responsive toNaCl. This implies that saltiness is coded within the CNS incells whose receptive fields include the NaCl-sensitive receptorcells and that the degree to which any salt tastes salty isdetermined by its ability to drive these receptors. This modelproposes, for example, that KCl has a salty component becauseit stimulates some of the same receptor cells as NaCl, eventhough the transduction mechanisms for KCl are different thanthose engaged by NaCl. Adaptation to NaCl blocks the saltinessof KCl and other salts because they stimulate NaCl-sensitivereceptor cells. Chem. Senses 20: 545–557, 1995.  相似文献   

4.
Although there is compelling evidence that amiloride reducesthe intensity of Na+ and Li+ salts in humans, its effects onsaltiness are conflicting. Many salts elicit not only a saltytaste but also one or more side tastes (sweetness, sournessor bitterness). Some studies have shown a suppression of saltinessby amiloride; others show no effect on saltiness but a significantreduction in sourness. In the experiments demonstrating a reductionof saltiness, subjects estimated only saltiness; in those showingan amiloride effect on sourness and not saltiness, subjectsestimated all qualities on each trial. The present study examinesthe role of the psychophysical method in these conflicting results.We have investigated the effects of amiloride on taste qualityby modifying only the instructions to the subjects, keepingall other variables constant. One group of subjects (intensity-only)gave magnitude estimates of the overall intensity of a LiCIconcentration series. A second group (salty-only) was instructedto estimate the saltiness of the stimuli, and a third group(sour-only) estimated their sourness. Finally, a fourth group(profile) rated all of the taste qualities on each stimuluspresentation, using a modified taste profile method. The ratingsof all groups were made comparable by the use of 0.1 mM quinine-HCIas a modulus. When subjects used only one response category,amiloride reduced their estimates (of intensity, saltiness orsourness), but if subjects attended to all four qualities, amiloridespecifically reduced the sourness of LJCI and had no significanteffect on its saltiness. Comparison of the saltiness estimatesof the salty-only group to the sum of the salty and sour estimatesof the profile group demonstrated that subjects combined thesesensations when presented with only one response alternative.To reveal the effect of amiloride on a specific quality of asalt, the psychophysical method must allow subjects to attendto all qualities on each trial. These data and previous resultssuggest that apical Na+ channels on the taste receptor cellmembrane mediate the sourness but not the saltiness of Na+ andLi+ salts. Chem. Senses 22: 267–275, 1997.  相似文献   

5.
The herbicide D5 (N-n-pentyl-N-methyl-N'-(3, 4-dichlorophenyl)-ureacan uncouple oxidative phosphorylation in isolated plant mitochondria.This paper confirms that D5 is an uncoupler that catalyzes thecollapse of the transmembrane potential gradient by inducinga movement of protons across the membrane. However, D5 is notitself capable of transporting protons. D5 gives complete uncouplingat 40 µM, a lower concentration than that required foruncoupling by the n-butyl homologue ‘neburon’. Analysisof the shape of the state 4 stimulation curve suggests thatD5 might act as a dimer in the membrane. Attempts to demonstrate binding of D5 to a membrane target gaveambiguous results, binding is not evident at 10 °C and 25°C but might occur at 15 °C and 20 °C. The calculatedherbicide concentration in the membrane (40 µM of which4–0 µM is as the dimer) is high and similar to thatof the major phospholipids. The calculated partition coefficientbetween medium and membrane (3.8 x 103) is in agreement withthe lipophilicity of the substituted urea herbicides. In the presence of a substrate, D3 blocks both influx and effluxcalcium movement through the mitochondrial membrane but in theabsence of substrate, D5 induces binding of calcium. Bindingrequires Mg++ but not K+ or phosphate and leads to a releaseof H+. Ruthenium Red causes a partial inhibition of bindingbut no other reagent or ionophore tested had any effect. Sincebinding does not occur in turnip mitochondria which are unableto transport Ca++ it is concluded that the effect is not directlylinked to the uncoupling action. The mechanism of action of D5 is discussed and it is concludedthat D5 probably acts as a dimer and perturbs membrane structure.The site of action is probably the lipid components of the membrane. Key words: Plant mitochondria, Herbicide, Substituted ureas, Calcium, Uncoupling  相似文献   

6.
The ionophores benzo-18-crown-6 (18-C-6), t-butylbenzo-18-crown-6(TBB) and di-t-butyldibenzo-30-crown-10 (30-C-10) were testedfor their effects on potassium ion absorption in onion rootsegments, and in wheat and mung bean seedlings. Potassium uptake,efflux and transport were progressively reduced in onion rootsegments and seedlings by 18-C-6 over the range 0.1–1.0mM. The effects of TBB (up to 0.3 mM) were more severe but otherwisegenerally similar to those of 18-C-6 in seedlings. Both ionophoresreduced growth, and at the highest concentrations, resultedin root potassium ion content falling below initial values after48 h treatment. The effects of 30-C-10 were evident at muchlower concentrations, inhibition of net potassium uptake occurringabove 10–4 M. Between 10–4 and 10–4 M 30-C-10,however, a modest but significant stimulation of potassium uptakewas observed in onion roots and seedlings; growth of seedlingswas largely unaffected. The reductions in potassium absorptionwere attributed to the promotion, by the ionophores, of facilitateddiffusion down the electrochemical diffusion gradient, counteringthe efficiency of the potassium ion influx pump. Stimulationof uptake at certain concentrations of 30-C-10 was consideredmore likely to be due to an inhibition of passive potassiumefflux, rather than a stimulation of active influx. The importanceof stability constants, bonding and lipophilicity, in determiningthe relative effectiveness of the ionophores, is discussed. Allium cepa L, onion, Triticum aestivum L, wheat, Phaseolus aureus L, mung bean, cyclic ‘crown’ polyethers, potassium fluxes, ion transport  相似文献   

7.
In order to investigate the steric requirement of the C-terminal hydrophobic amino acid of the bitter peptide, Arg-Arg-Pro-Pro-Phe-Phe, for the production of bitterness, we prepared analogs of it containing d-phenylalanine. in place of l-phenylalanine. The analogs with l-phenylalanine at the C-terminal exhibited stronger bitterness than those with d-phenylalanine at the C-terminal. We confirmed that the configuration of the C-terminal hydrophobic amino acid is important for the increase in bitterness.  相似文献   

8.
Net and Steady-state Cation Fluxes in Chlorella pyrenoidosa   总被引:2,自引:0,他引:2  
The addition of K+ to Chlorella cells grown so as to be abnormallyrich in Na+ induces a net Na+ efflux and a concomitant uptakeof K+. The net Na+ extrusion shows first-order kinetics withtime constants of about 10 min for illuminated cells, and occursat rates in the region of 10 to 15 pmol cm12 s. The correspondingtime course for the net K+ influx also approximates to first-orderkinetics but is more complicated because it not only involvesa K+/Na+ component but also a K+/H+ exchange. The H+ extrusionusually represents less than 20 per cent of the net cation movementand may account both in magnitude and in rate for the differencebetween K+ and Na+ movements. The magnitudes of the net K+ andNa+ fluxes differed from steady-state flux rates in normal highK+-containing cells being as much as 20 times greater for K+and over 100 times greater for Na+. There is some indicationthat K+ competes for Na+ entry into Na+-rich cells, suggestingthat both the Na+/Na+ and K+/Na+ exchanges may share the sameentry site. The K+/Na+ exchange rates saturate at low externalK+ concentrations; the half-maximum rate was at about 0.2 mMK+. The Na+/K+ exchange is sensitive to temperature and between0 and 25 °C an activation energy of about 25 k cal/molewas calculated from the Arrhenius equation.  相似文献   

9.
In manynonexcitable cells, hormones and neurotransmitters activateNa+ influx and mobilizeCa2+ from intracellular stores.The stores are replenished by Ca2+influx via "store-operated"Ca2+ channels (SOC). The mainroutes of Na+ entry in these cellsare unresolved, and no role forNa+ in signaling has beenrecognized. We demonstrate that the SOC are a majorNa+ entry route in arterialmyocytes. Unloading of the Ca2+stores with cyclopiazonic acid (a sarcoplasmic reticulumCa2+ pump inhibitor) and caffeineinduces a large externalNa+-dependent rise in thecytosolic Na+ concentration. Onecomponent of this rise in cytosolicNa+ concentration is likely due toNa+/Ca2+exchange; it depends on elevation of cytosolicCa2+ and is insensitive to 10 mMMg2+ and 10 µMLa3+. Another component isinhibited by Mg2+ andLa3+, blockers of SOC; thiscomponent persists in cells preloaded with1,2-bis(2-aminophenoxy)ethane-N,N,N',N'-tetraaceticacid to buffer Ca2+ transients andpreventNa+/Ca2+exchange-mediated Na+ entry. ThisNa+ entry apparently is mediatedby SOC. The Na+ entry influencesNa+ pump activity andNa+/Ca2+exchange and has unexpectedly large effects on cell-wideCa2+ signaling. The SOC pathwaymay be a general mechanism by which Na+ participates in signaling inmany types of cells.

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10.
叶片水H218O富集的研究进展   总被引:1,自引:0,他引:1       下载免费PDF全文
 植物叶片水H218O富集对大气中O2和CO218O收支有着重要影响。蒸腾作用使植物叶片水H218O富集, 而植物叶片水H218O富集的程度主 要受大气水汽δ18O和植物蒸腾水汽δ18O的影响。过去, 通过引入稳态假设(蒸腾δ18O等于茎水δ18O)得到Craig-Gordon模型的闭合形式, 或 将植物整个叶片水δ18O经过Péclet效应校正后得到植物叶片水δ18O的富集程度。然而, 在几分钟到几小时的短时间尺度上, 植物叶片蒸腾 δ18O是变化的, 稳态假设是无法满足的。最近成功地实现了对大气水汽δ18O和δD的原位连续观测, 观测精度(小时尺度)可达到甚至优于稳定 同位素质谱仪的观测精度。在非破坏性条件下, 高时间分辨率和连续的大气水汽δ18O和蒸腾δ18O的动态观测, 将提高植物叶片水H218O富集的 预测能力。该文综述了植物叶片水H218O富集的理论研究的新进展、研究焦点和观测方法所存在的问题, 旨在进一步加深理解植物叶片水H218O 富集的过程及其机制。  相似文献   

11.
Genetic variation in the ability to taste the bitterness of 6-n-propylthiouracil (PROP) is a complex trait that has been used to predict food preferences and eating habits. PROP tasting is primarily controlled by polymorphisms in the TAS2R38 gene. However, a variety of factors are known to modify the phenotype. Principle among them is the salivary protein Ps-1 belonging to the basic proline-rich protein family (bPRP). Recently, we showed that oral supplementation with Ps-1 as well as its related free amino acids (L-Arg and L-Lys) enhances PROP bitterness perception, especially for PROP non-tasters who have low salivary levels of Ps-1. Here, we show that salivary L-Arg levels are higher in PROP super-tasters compared to medium tasters and non-tasters, and that oral supplementation with free L-Arg enhances PROP bitterness intensity as well as reduces bitterness latency in a dose-dependent manner, particularly in individuals with low salivary levels of both free L-Arg and Ps-1 protein. Supplementation with L-Arg also enhanced the bitterness of caffeine. We also used 1H-NMR spectroscopy and quantum-mechanical calculations carried out by Density Functional Theory (DFT) to characterize the chemical interaction between free L-Arg and the PROP molecule. Results showed that the –NH2 terminal group of the L-ArgH+ side chain interacts with the carbonyl or thiocarbonyl groups of PROP by forming two hydrogen bonds with the resulting charged adduct. The formation of this PROP•ArgH+ hydrogen-bonded adduct could enhance bitterness intensity by increasing the solubility of PROP in saliva and its availability to receptor sites. Our data suggest that L-Arg could act as a ‘carrier’ of various bitter molecules in saliva.  相似文献   

12.
Caloxin: a novel plasma membrane Ca2+ pump inhibitor   总被引:1,自引:0,他引:1  
Plasma membrane (PM) Ca2+ pump is aCa2+-Mg2+-ATPase that expels Ca2+from cells to help them maintain low concentrations of cytosolic Ca2+. There are no known extracellularly acting PMCa2+ pump inhibitors, as digoxin and ouabain are forNa+ pump. In analogy with digoxin, we define caloxins asextracellular PM Ca2+ pump inhibitors and describe caloxin2A1. Caloxin 2A1 is a peptide obtained by screening a random peptidephage display library for binding to the second extracellular domain(residues 401-413) sequence of PM Ca2+ pump isoform1b. Caloxin 2A1 inhibits Ca2+-Mg2+-ATPase inhuman erythrocyte leaky ghosts, but it does not affect basalMg2+-ATPase or Na+-K+-ATPase in theghosts or Ca2+-Mg2+-ATPase in the skeletalmuscle sarcoplasmic reticulum. Caloxin 2A1 also inhibitsCa2+-dependent formation of the 140-kDa acid-stableacylphosphate, which is a partial reaction of this enzyme. Consistentwith inhibition of the PM Ca2+ pump in vascularendothelium, caloxin 2A1 produces an endothelium-dependent relaxationthat is reversed byNG-nitro-L-arginine methyl ester.Thus caloxin 2A1 is a novel PM Ca2+ pump inhibitor selectedfor binding to an extracellular domain.

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13.
A rise in cytosolic Ca2+ concentration ([Ca2+]cyt) in pulmonary artery smooth muscle cells (PASMC) is a trigger for pulmonary vasoconstriction and a stimulus for PASMC proliferation and migration. Multiple mechanisms are involved in regulating [Ca2+]cyt in human PASMC. The resting [Ca2+]cyt and Ca2+ entry are both increased in PASMC from patients with idiopathic pulmonary arterial hypertension (IPAH), which is believed to be a critical mechanism for sustained pulmonary vasoconstriction and excessive pulmonary vascular remodeling in these patients. Here we report that protein expression of NCX1, an NCX family member of Na+/Ca2+ exchanger proteins is upregulated in PASMC from IPAH patients compared with PASMC from normal subjects and patients with other cardiopulmonary diseases. The Na+/Ca2+ exchanger operates in a forward (Ca2+ exit) and reverse (Ca2+ entry) mode. By activating the reverse mode of Na+/Ca2+ exchange, removal of extracellular Na+ caused a rapid increase in [Ca2+]cyt, which was significantly enhanced in IPAH PASMC compared with normal PASMC. Furthermore, passive depletion of intracellular Ca2+ stores using cyclopiazonic acid (10 µM) not only caused a rise in [Ca2+]cyt due to Ca2+ influx through store-operated Ca2+ channels but also mediated a rise in [Ca2+]cyt via the reverse mode of Na+/Ca2+ exchange. The upregulated NCX1 in IPAH PASMC led to an enhanced Ca2+ entry via the reverse mode of Na+/Ca2+ exchange, but did not accelerate Ca2+ extrusion via the forward mode of Na+/Ca2+ exchange. These observations indicate that the upregulated NCX1 and enhanced Ca2+ entry via the reverse mode of Na+/Ca2+ exchange are an additional mechanism responsible for the elevated [Ca2+]cyt in PASMC from IPAH patients. transient receptor potential channel; reverse and forward mode; proliferation  相似文献   

14.
Caesium (Cs+) is a potentially toxic mineral element that isreleased into the environment and taken up by plants. AlthoughCs+ is chemically similar to potassium (K+), and much is knownabout K+ transport mechanisms, it is not clear through whichK+ transport mechanisms Cs+ is taken up by plant roots. In thisstudy, the role of AtHAK5 in high affinity K+ and Cs+ uptakewas characterized. It is demonstrated that AtHAK5 is localizedto the plasma membrane under conditions of K+ deprivation, whenit is expressed. Growth analysis showed that AtHAK5 plays arole during severe K+ deprivation. Under K+-deficient conditionsin the presence of Cs+, Arabidopsis seedlings lacking AtHAK5had increased inhibition of root growth and lower Cs+ accumulation,and significantly higher leaf chlorophyll concentrations thanwild type. These data indicate that, in addition to transportingK+ in planta, AtHAK5 also transports Cs+. Further experimentsshowed that AtHAK5 mediated Cs+ uptake into yeast cells andthat, although the K+ deficiency-induced expression of AtHAK5was inhibited by low concentrations of NH  相似文献   

15.
The kinetics of 3H-acetate assimilation by Chlorella pyrenoidosain the light were examined. The primary products of assimilationwere glycollate and succinate. After 10 sec glycollate contained45 per cent and succinate 25 per cent of the tritium incorporatedby the cells. The percentage of the total tritium in glycollateand succinate fell with time while that in citrate increased.Initially the specific activities (µc of 3H per µmoleof acid) of succinate and glycollate were greater than citrate.When 3H-14C-2-acetate was added to the cells, total dpm for3H and 14C in glycollate rapidly reached a steady state andgave a 3H/14C ratio of 10, compared with a 3H/14C ratio of 4in the acetate. This 3H/14C ratio in glycollate is found because3H is derived from 3H-14C-2-acetate and because the 14C is dilutedwith cold carbon from elsewhere. The addition of 14CO2 at thesame time as 3H-14C acetate decreased the 3H/14C ratio in glycollatebut incorporation of 14C from 14CO2 into glycollate was slowerthan incorporation from 14C-2-acetate. Although 14C from acetaterapidly appeared in glycollate, 14C-labelled glyoxylate wasnot detected. The 3H/14C ratio observed in glycollate rulesout formation of glycollate from acetate via glycoaldehyde.The available evidence did not support glycollate formationvia the Calvin cycle. 14C from 14C-Z-acetate appeared in glycollatebefore it did in phosphoglyceric acid. Total dpm for 3H, 14C,and 3H/l4C ratio in Calvin cycle intermediates were not in equilibriumwith glycollic acid.  相似文献   

16.
The germinating wheat embryo contains two mineral ion pumps.One is a H+/K+ antiport system located in the scutellum andthe other is a H+/anion symport, or possibly an anion/OH+ antiportsystem located in the embryo axis. The scutellum pump closelyresembles that found in other plant tissues; its affinity constantfor K+ is about 0.03 mM and its activity is energy dependentThe embryo axis pump is able to transport K+ in place of H+and appears to be a general monovalent cation/anion symportsystem. The scutellum pumping activity is stimulated by GA and the GAaction is inhibited by ABA. GA stimulates H+ more than K+ transport,electrochemical neutrality always being maintained by aniontransport. In contrast to reports about IAA-stimulated ion transportin other plant tissues, there is no evidence that the GA actionin the scutellum is dependent upon active protein synthesis.  相似文献   

17.
K+Nutrition and Na+Toxicity: The Basis of Cellular K+/Na+Ratios   总被引:38,自引:0,他引:38  
The capacity of plants to maintain a high cytosolic K+/Na+ratiois likely to be one of the key determinants of plant salt tolerance.Important progress has been made in recent years regarding theidentification and characterization of genes and transportersthat contribute to the cytosolic K+/Na+ratio. For K+uptake,K+efflux and K+translocation to the shoot, genes have been isolatedthat encode K+uptake and K+release ion channels and K+carriersthat are coupled to either a H+or Na+gradient. Although thepicture is less clear for the movement of Na+, one pathway,in the form of non-selective ion channels, is likely to playa role in Na+uptake, whereas Na+efflux and compartmentationare likely to be mediated by H+-coupled antiport. In addition,several proteins have been characterized that play prominentroles in the regulation of K+and/or Na+fluxes. In this BotanicalBriefing we will discuss the functions and interactions of thesegenes and transporters in the broader context of K+nutritionand Na+toxicity. Copyright 1999 Annals of Botany Company Salinty, K+/N+ratio, transporter, membrane.  相似文献   

18.
The effects of a new, potent, and selective inhibitor of the Na+/Ca2+ exchange, SEA-0400 (SEA), on steady-state outward (forward exchange), inward (reverse exchange), and Ca2+/Ca2+ transport exchange modes were studied in internally dialyzed squid giant axons from both the extra- and intracellular sides. Inhibition by SEA takes place preferentially from the intracellular side of the membrane. Its inhibition has the following characteristics: it increases synergic intracellular Na+ (Nai+) + intracellular H+ (Hi+) inactivation, is antagonized by ATP and intracellular alkalinization, and is enhanced by intracellular acidification even in the absence of Na+. Inhibition by SEA is still present even after 1 h of its removal from the experimental solutions, whereas removal of the cointeracting agents of inhibition, Nai+ and Hi+, even in the continuous presence of SEA, releases inhibition, indicating that SEA facilitates the reversible attachment of the natural Hi+ and Nai+ synergic inhibitors. On the basis of a recent model of squid Na+/Ca2+ exchange regulation (DiPolo R and Beaugé L. J Physiol 539: 791–803, 2002), we suggest that SEA acts on the Hi+ + Nai+ inactivation process and can interact with the Na+-free and Na+-bound protonized carrier. Protection by ATP concurs with the antagonism of the nucleotide by Hi+ + Nai+ synergic inhibition. ionic-metabolic interactions  相似文献   

19.
In Elodea densa leaves light strongly stimulates electrogenic,K +-dependent, vanadate- and erythrosin B-sensitive H+ extrusionand hyperpolarizes the transmembrane electrical potential. Theseeffects of light are suppressed by treatment with DCMU, an inhibitorof photosynthesis, which has no effect on H+ extrusion in thedark. Light-induced H+ extrusion requires the presence of K+in the medium and is associated with increased K+ uptake andalkalinization of the cell sap. Light-induced H+ extrusion increaseswith increased CO2 concentration. At constant CO2 concentration(104 parts 10–6) the rate of H+ extrusion is stronglyenhanced by an increased light intensity up to 30 W m–2.Different wavelengths, between 400 and 730 nm, induce a significantstimulation of both proton secretion and transmembrane potentialhyperpolarization. The stimulating effects of light on H+ extrusion, K+ uptakeand cell sap pH are very similar to those induced in the darkby fusicoccin, a toxin known to stimulate strongly ATP-driven,vanadate- and erythrosin B-sensitive H+ transport. In the light,the effects of fusicoccin are only partially additive to thoseof light, thus suggesting that the two factors influence thesame system. The identification of this system with the plasmamembrane H+-ATPase is indicated by the observed inhibition ofthe effects of either light or fusicoccin by the H+-ATPase inhibitorsvanadate and erythrosin B. These data indicate that the activation of electrogenic H+ extrusionand of K+ uptake by light is mediated by some products of photosynthesis.The mechanism and the possible physiological implications ofthis phenomenon are discussed. Key words: Photosynthesis, H+ pump, K+ uptake, Elodea densa  相似文献   

20.
To clarify whether activity of the ryanodine receptor type 2 (RyR2) is reduced in the sarcoplasmic reticulum (SR) of cardiac muscle, as is the case with the ryanodine receptor type 1 (RyR1), Ca2+-dependent [3H]ryanodine binding, a biochemical measure of Ca2+-induced Ca2+ release (CICR), was determined using SR vesicle fractions isolated from rabbit and rat cardiac muscles. In the absence of an adenine nucleotide or caffeine, the rat SR showed a complicated Ca2+ dependence, instead of the well-documented biphasic dependence of the rabbit SR. In the rat SR, [3H]ryanodine binding initially increased as [Ca2+] increased, with a plateau in the range of 10–100 µM Ca2+, and thereafter further increased to an apparent peak around 1 mM Ca2+, followed by a decrease. In the presence of these modulators, this complicated dependence prevailed, irrespective of the source. Addition of 0.3–1 mM Mg2+ unexpectedly increased the binding two- to threefold and enhanced the affinity for [3H]ryanodine at 10–100 µM Ca2+, resulting in the well-known biphasic dependence. In other words, the partial suppression of RyR2 is relieved by Mg2+. Ca2+ could be a substitute for Mg2+. Mg2+ also amplifies the responses of RyR2 to inhibitory and stimulatory modulators. This stimulating effect of Mg2+ on RyR2 is entirely new, and is referred to as the third effect, in addition to the well-known dual inhibitory effects. This effect is critical to describe the role of RyR2 in excitation-contraction coupling of cardiac muscle, in view of the intracellular Mg2+ concentration. [3H]ryanodine binding; CICR; stimulation by physiological Mg2+, excitation-contraction coupling in the heart  相似文献   

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