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1.
Florida's red tide organism, Gymnodinium breve, utilized exogenous glucose in the light for the synthesis of cellular components. Glucose was not taken up in the dark. Kinetic parameters for glucose uptake include a KFD of 11 μM and a Vmax of 1 × 10?10 mol of glucose taken up/mg cellular protein/hr. Glucose uptake was competitively inhibited by phloridzin (Ki = 40 μM), mannose (Ki = 12O μM), and 2-deoxy-d-glucose (Ki = 190 μM) and non-competitively inhibited by galactose (Ki = 125 μM). Kinetics and inhibition of glucose uptake are consistent with a facilitated diffusion transport system.  相似文献   

2.
《BBA》1986,849(1):121-130
The binding of 3′-O-(1-naphthoyl)adenosinetriphosphate (1-naphthoyl-ATP), ATP and ADP to TF1 and to the isolated α and β subunits was investigated by measuring changes of intrinsic protein fluorescence and of fluorescence anisotropy of 1-naphthoyl-ATP upon binding. The following results were obtained. (1) The isolated α and β subunits bind 1 mol 1-naphthoyl-ATP with a dissociation constant (KD(1-naphthoyl-ATP)) of 4.6 μM and 1.9 μM, respectively. (2) The KD(ATP) for α and β subunits is 8 μM and 11 μM, respectively. (3) The KD(ADP) for α and β subunits is 38 μM μM and 7 μM, respectively. (4) TF1 binds 2 mol 1-naphthoyl-ATP per mol enzyme with KD = 170 nM. (5) The rate constant for 1-naphthoyl-ATP binding to α and β subunit is more than 5 · 104 M−1s−1. (6) The rate constant for 1-naphthoyl-ATP binding to TF1 is 6.6 · 103 M−1 · s−1 (monophasic reaction); the rate constant for its dissociation in the presence of ATP is biphasic with a fast first phase (kA−1 = 3 · 10−3s−1) and a slower second phase (kA−2 < 0.2 · 10−3s−1). From the appearance of a second peak in the fluorescence emission spectrum of 1-naphthoyl-ATP upon binding it is concluded that the binding sites in TF1 are located in an environment more hydrophobic than the binding sites on isolated α and β subunits. The differences in kinetic and thermodynamic parameters for ligand binding to isolated versus integrated α and β subunits, respectively, are explained by interactions between these subunits in the enzyme complex.  相似文献   

3.
Adenine uptake into human blood platelets is a carrier-mediated process with a Km of 159±21 nM and a V of 100±10 pmoles/min per 109 platelets (in citrated platelet-rich plasma). The Q10 was 2.53±0.22. A pH optimum was found at 7.5. Washing of the platelets increased the Km to 453±33 nM and V to 397±38 pmoles/min per 109 platelets. The change in shape induced in platelets by ADP was accompanied by an increase in V (2 times) and Km (1.5 times).Guanine (Ki 50 μM), hypoxanthine (Ki 390 μM), adenine-N′-oxide (Ki 40 μM), adenosine (Ki 100 μM), RA 233 (Ki 75 μM) and papaverine (Ki 15 μM) acted as competitive inhibitors. Adenosine at low concentrations, and prostaglandin E1 gave inhibition at only high adenine levels. A similar inhibition was obtained with 2-deoxy-d-glucose. Sulfhydryl-group inhibitors, pyrimidines and ouabain had no effect.  相似文献   

4.
O E Brodde  G Engel  D Hoyer  K D Bock  F Weber 《Life sciences》1981,29(21):2189-2198
(±)?125Iodocyanopindolol (ICYP), a new radio-ligand with high affinity and specificity to β-adrenoceptors was used to identify and characterized β-adrenergic receptors in human lymphocytes. Binding of ICYP was saturable with 1.56 ± 0.2 fmol ICYP specifically bound/106 cells at maximal occupancy of the sites and of high affinity (KD=57 ± 7.1pM, N=4. In contrast to 125Iodohydroxybenzylpindolol ICYP-binding was not affected by phentolamine (up to 10?4M) or serotin (up to 10?5M). Analysis of inhibition of ICYP-binding via a pseudo-Scatchard-plot (“Hofstee-plot”) by β1-selective (practocol, metaprolol) and β2-selective (IPS 339, zinterol) adrenergic drugs resulted in linear plots suggesting the existence of a homogeneous population of β-adrenergic receptorsin human lymphocytes. From the resulting KD-values for practolol (16.8 μM), metoprolol (4.11 μM), zinterol (0.08 μM) and IPS 339 (0.002 μM) is concluded that the β-adrenergic receptor present in human lymphocytes is of the β2-subtype. According to its low non-specific binding and its high specificity to β-adrenergic receptors ICYP appears to be an ideal ligand for long-term studies on the regulation of β-adrenergic receptors of human lymphocytes.  相似文献   

5.
We evaluated the vasorelaxation effects of formononetin, an isoflavone/phytoestrogen found abundantly in Astragalus mongholicus Bunge, on rat isolated aorta and the underlying mechanisms involved. Cumulative administration of formononetin, genistein, daidzein and biochanin A relaxed phenylephrine-preconstricted aorta. Formononetin and biochanin A caused a similar magnitude of relaxation whereas daidzein was least potent. Mechanical removal of endothelium, L-NAME (100 μM) and methylene blue (10 μM) suppressed formononetin-induced relaxation. Formononetin increased endothelial nitric oxide (NO) synthase (eNOS), but not inducible NO synthase, activity with an up-regulation of eNOS mRNA and p-eNOSSer1177 protein expression. In endothelium-denuded preparations, formononetin-induced vasorelaxation was significantly reduced by glibenclamide (3 μM) and iberiotoxin (100 nM), and a combination of glibenclamide (3 μM) plus iberiotoxin (100 nM) abolished the relaxation. In contrast, formononetin-elicited endothelium-independent relaxation was not altered by ICI 182,780 (10 μM, an estrogen receptor (ERα/ERβ) antagonist) or mifepristone (10 μM, a progesterone receptor antagonist). In single aortic smooth muscle cells, formononetin caused opening of iberiotoxin-sensitive Ca2+-activated K+ (BKCa) channels and glibenclamide-sensitive adenosine triphosphate (ATP)-dependent K+ (KATP) channels. Thus, our results suggest that formononetin caused vascular relaxation via endothelium/NO-dependent mechanism and endothelium-independent mechanism which involves the activation of BKCa and KATP channels.  相似文献   

6.
The effects of fluphenazine (FLU) on the noradrenaline (NA) induced cAMP-synthesis in intact rat retinae were studied as a function of extracellular K+- and Ca2+-ions. Thus NA-induced cAMP levels were measured after incubating intact rat retinae with 50 μM NA in the presence or absence of FLU and in the presence of 1 or 10 mM theophylline. Results were: (1) Experimental condition a: standard NA-responses were measured after incubating retinae at 0.75 mM Ca2+, at 10 mM theophylline, at 10 μM FLU and at 2 and 0 mM K+. FLU does not affect the NA-response at 2 mM K+ significantly; however, it inhibits the NA-response at 0 mM K+ in this condition. (2) Experimental condition b: NA-responses were measured after incubating retinae at 0.125 mM Ca2+, 10 mM theophylline, 10 μM FLU and at 2 and 0 mM K+. At 2 mM K+ FLU replaces a Ca2+ function probably connected with the synthesis part of the NA-cAMP system and NA-responses in this low Ca2+ condition are consequently enhanced by FLU; however, FLU inhibits the NA-response at 0 mM K+ in this condition. (3) Experimental condition c: NA-responses were measured after incubating retinae at 0.75 mM Ca2+, 1 mM theophylline, 10 μM FLU and at 2 and 0 mM K+. At 2 mM K+ FLU enhances the NA-response by further inhibition of the degradation part of the NA-cAMP system; FLU inhibits the NA-response at 0 mM K+ in this condition. (4) The inhibitions of the NA-responses by FLU at 0 mM K+ in all three conditions a, b and c showed an apparent Km of 1 μM. (5) Low concentrations of K+ (0.4–0.8 mM) maintain the property of FLU to enhance the NA-responses at condition b (0.125 mM Ca2+) and at condition c (1 mM theophylline). Results suggest that the activation of NA-receptor coupled adenylate cyclases (NA-AC-ases) by NA, resulting in activation of phosphodiesterase activity by the NA-elevated cAMP-levels, is sustained by (a) membraneous factor(s) connected to the NA-receptor. This (these) factor(s) is (are) switched off in the absence of K+. Evidence has been presented, that Ca2+ and FLU do not have access to this intramembraneous factor-enzyme activating moiety of the NA-cAMP system at 0 mM K+. Between 0.4 and 0.8 mM K+ the factor-enzyme-NA-receptor complex is still intact.  相似文献   

7.
In order to investigate the enzymatic mechanism of tomato alcohol dehydrogenase, kinetic studies were carried out at pH 5.8 and 9.4 for the forward and reverse reactions, respectively. Primary double reciprocal plots for several fixed concentrations of the associated substrate in all cases intersect, suggesting a sequential mechanism. Exploitation of secondary plots (slope-intercept values on the primary plots versus the reciprocals of the non-varied substrates) gives the following values: Kms 500 μM for MeCHO, 30 μM for NADH, 2700 μM for EtOH, 12 μM for NAD+; Kis 40 μM for MeCHO, 3 μM for NADH, 104 μM for EtOH and 45 μM for NAD+. The results obtained in product inhibition studies agree with an ordered bi-bi mechanism for both forward and reverse reactions. Application of Cleland's rules shows that the coenzyme was the first substrate to complex with the enzyme in both cases.  相似文献   

8.
Tissue kallikrein may play a role in processing precursor polypeptide hormones. We investigated whether hydrolysis of natural enkephalin precursors, peptide F and bovine adrenal medulla docosapeptide (BAM-22P), by hog pancreatic kallikrein is consistent with this concept. Incubation of peptide F with this tissue kallikrein resulted in the release of Met5-enkephalin and Met5-Lys6-enkephalin. Met5-Lys6-enkephalin was the main peptide released, indicating that the major cleavage site was between two lysine residues. At 37°C and pH 8.5, the KM values for formation of Met5-enkephalin and Met5-Lys6-enkephalin were 129 and 191 μM, respectively. Corresponding kcat values were 0.001 and 0.03 s−1 and kcat/KM ratios were 8 and 1.6·102 M−1 · s−1, respectively. Cleavage of peptide F at acidic pH (5.5) was negligible. When BAM-22P was used as a substrate, Met5-Arg6-enkephalin was released, thus indicating cleavage between two arginine residues. At pH 8.5, KM was 64 μM, kcat was 4.5 s−1, and the kcat/KM ratio was 7 · 104 M−1 · s−1. At 5.5, the pH of the secretory granules, KM, kcat and kcat/KM were 184 μM, 1.9 s−1 and 104 M−1 · s−1, respectively. It is unlikely that peptide F could be a substrate for kallikrein in vivo; however, tissue kallikrein could aid in processing proenkephalin precursors such as BAM-22P by cleaving Arg-Arg peptide bonds.  相似文献   

9.
Free ribulose bisphosphate (RuBP4?) rather than its magnesium complex (RuBP-Mg2?) was the apparent substrate for spinach ribulose bisphosphate carboxylase/oxygenase. The apparent Km for total RuBP (pH 8.0 at 30° C) increased with increasing Mg2+ concentrations from 11.6 μM at 13.33 mM Mg2+ to 32.6 μM at 40.33 mM Mg2+. Similarly the apparent Km for RuBP-Mg2? complex increased with increasing Mg2+ from 9.4 μM at 13.33 mM Mg2+ to 29.7 μM at 40.33 mM Mg2+. However, the Km values for uncomplexed RuBP4? were independent of the (saturating) concentration of Mg2+ (Km=2.2 μM). The Vmax did not vary with the changing concentrations of Mg2+. In contrast, the Km for total RuBP remained constant with varying Mg2+ concentrations (Km=59.5 μM) for the enzyme from R. rubrum. The apparent Km for the RuBP-Mg2? complex decreased with increasing Mg2+ concentrations from 16.0 μM at 7.5 mM Mg2+ to 5.9 μM at 27.5 mM Mg2+. The initial velocity for the C. vinosum enzyme was also found to be independent of the (saturating) concentration of Mg2+ when total RuBP was varied in the assay. Thus the response to total RuBP by these two bacterial enzymes, which markedly differ in structure, was closely similar.  相似文献   

10.
Flemingia philippinensis has been used throughout history to cure rheumatism associated with neutrophil elastase (NE). In this study, we isolated sixteen NE inhibitory flavonoids (116), including the most potent and abundant prenyl isoflavones (19), from the F. philippinensis plant. These prenyl isoflavones (2, 3, 5, 7, and 9) competitively inhibited NE, with IC50 values of 1.3–12.0 μM. In addition, they were reversible, simple, slow-binding inhibitors according to their respective parameters. Representative compound 3 had an IC50 = 1.3 μM, k3 = 0.04172 μM−1 min−1, k4 = 0.0064 min−1, and Kiapp = 0.1534 μM. The Kik/Kiv ratios (18.5 ∼ 24.6) for compound 3 were consistent with typical competitive inhibitors. The prenyl functionality of isoflavones significantly affected inhibitory potencies and mechanistic behavior by shifting the competitive mode to a noncompetitive one. The remaining flavonoids (1016) were confirmed as mixed type I inhibitors that preferred to bind free enzyme rather than the enzyme-substrate complex. Fluorescence quenching analyses indicated that the inhibitory potency (IC50) closely followed the binding affinity (KSV).  相似文献   

11.
Influences of dithiothreitol (DTT), p-chloromercuriphenyl sulfonate (PCMPS) and ascorbate on CuCl2-induced elevation of [3H]cimetidine binding were investigated in brain membranes of rats. CuCl2 (10–500 μM) elevated specific [3H]cimetidine binding in a concentration-dependent manner. There were two types of [3H]cimetidine binding in the presence of 50 μM CuCl2: high affinity binding with Kd = 1.97 nM and low affinity with Kd = 21.6 nM. PCMPS (10 and 100 μM) reduced the binding in both media with and without CuCl2. DTT (1–30 μM) or ascorbate (0.1 and 1.0 mM) markedly elevated the binding in the presence of CuCl2 but showed no effect and ascorbate rather inhibited the binding in the absence of CuCl2. DTT (0.1 mM) diminished the binding in the presence and absence of CuCl2. CuCl2 (50 μM) significantly (P < 0.01) increased the IC50 of histamine for [3H]cimetidine binding and the effect was greater than that from 100 μM GTP. It is suggested that sulfhydryl groups sensitive to PCMPS could interact with Cu2+ and thus be involved in an elevation of cimetidine binding. Cu2+ seems to regulate affinity of agonist binding for cimetidine binding sites presumably by acting on cimetidine binding sites and/or GTP binding regulatory proteins.  相似文献   

12.
Free ribulose hisphosphate (RuBP4?) rather than its magnesium complex (RuBP-Mg2?) was the apparent substrate for spinach ribulose bisphosphate carboxylase/oxygenase. The apparent Km for total RuBP (pH 8.0 at 30° C) increased with increasing Mg2+ concentrations from 11.6 μM at 13.33 mM Mg2+ to 32.6 μM at 40.33 mM Mg2+. Similarly the apparent Km for RuBP-Mg2? complex increased with increasing Mg2+ from 9.4 μM at 13.33 mM Mg2+ to 29.7 μM at 40.33 mM Mg2+. However, the Km values for uncomplexed RuBP4? were independent of the (saturating) concentration of Mg2+ (Km=2.2 μM). The Vmax did not vary with the changing concentrations of Mg2+. In contrast, the Km for total RuBP remained constant with varying Mg2+ concentrations (Km=59.5 μM) for the enzyme from R. rubrum. The apparent Km for the RuBP-Mg2? complex decreased with increasing Mg2+ concentrations from 16.0 μM at 7.5 mM Mg2+ to 5.9 μM at 27.5 mM Mg2+. The initial velocity for the C. vinosum enzyme was also found to be independent of the (saturating) concentration of Mg2+ when total RuBP was varied in the assay. Thus the response to total RuBP by these two bacterial enzymes, which markedly differ in structure, was closely similar.  相似文献   

13.
The tumor promoter 20-3H-phorbol 12,13-dibutyrate bound in a specific manner to particulate preparations from both whole mouse skin and mouse epidermis. The binding, which was comparable in both whole skin and epidermal preparations, occurred rapidly, was reversible upon addition of non-radioactive ligand and showed high affinity (KD = 2.4 × 10?8 M). The potencies of phorbol esters for inhibiting binding of 3H-PDBu corresponded to their biological and tumor-promoting activities: phorbol 12-myristate 13-acetate, KI = 0.74 nM; phorbol 12,13-didecanoate, KI = 16 nM; phorbol 12,13-dibenzoate, KI = 82 nM; mezerein, KI = 98 nM; phorbol 12,13-diacetate, KI = 3 μM; phorbol 12,13,20-triacetate, KI = 5.6 μM; phorbol 13-acetate, KI = 64 μM. The biologically inactive derivatives phorbol (0.88 mM) and 4α-phorbol 12,13-didecanoate (15 μM) did not inhibit binding. Likewise, 3H-PDBu binding was only weakly inhibited by phorbol-related diterpenes which are highly inflammatory but nonpromoting. These structure-activity relationships suggest that the 3H-PDBu binding activity mediates phorbol ester tumor promotion. 3H-PDBu binding was not inhibited by the nonphorbol promoters examined. Similarly, it was not blocked by compounds which antagonize (dexamethasone acetate, 2 μM; retinoic acid, 10 μM) or mimic (epidermal growth factor, 100 ng/ml; melittin, 25 μg/ml; PGE2, 1 μM) some of the effects of the phorbol esters in vivo or in vitro.  相似文献   

14.
A laccase from the culture filtrate of Phellinus linteus MTCC-1175 has been purified to homogeneity. The method involved concentration of the culture filtrate by ammonium sulphate precipitation and an anion exchange chromatography on DEAE-cellulose. The SDS-PAGE and native-PAGE gave single protein band indicating that the enzyme preparation was pure. The molecular mass of the enzyme determined from SDS-PAGE analysis was 70 kDa. Using 2.6-dimethoxyphenol, 2.2′[azino-bis-(3-ethylbonzthiazoline-6-sulphonic acid) diammonium salt] (ABTS) and 4-hydroxy-3,5-dimethoxybenzaldehyde azine as the substrates, the K m, k cat and k cat/K m values of the laccase were found to be 160 μM, 6.85 s?1, 4.28 × 104 M?1 s?1, 42 μM, 6.85 s?1, 16.3 × 104 M?1 s?1 and 92 μM, 6.85 s?1, 7.44 × 104 M?1 s?1, respectively. The pH and the temperature optima of the P. linteus MTCC-1175 laccase were 5.0 and 45°C, respectively. The activation energy for thermal denaturation of the enzyme was 38.20 kJ/mole/K. The enzyme was the most stable at pH 5.0 after 1 h reaction. In the presence of ABTS as the mediator, the enzyme transformed toluene, 3-nitrotoluene and 4-chlorotoluene to benzaldehyde, 3-nitrobenzaldehyde and 4-chlorobenzaldehyde, respectively.  相似文献   

15.
  1. In silicic acid-starved cells of the diatom Nitzschia alba, 68Ge(OH)4 is transported against a concentration gradient, leading to intracellular concentrations of germanic acid up to 3500 times greater than the exogenous concentrations. The accumulated substrate is osmotically active, as determined by its efflux into germanic acid-free medium.
  2. Metabolic energy is required for Ge(OH)4 transport, since uptake is completely inhibited by 1 mM DNP, 5×10-2 M sodium azide or 1 mM iodacetamide, and is strongly inhibited by CCCP and antimycin A. Inhibition of protein synthesis with 20 μg/ml cycloheximide does not affect the initial velocity of transport, but strongly reduces the steady state intracellular concentration.
  3. A double reciprocal plot of uptake velocity versus substrate concentration yields a biphasic curve. The kinetic data are consistent with the interpretation that N. alba has two transport systems for germanic acid; a high affinity-low capacity (K s=0.36 μM; V max 1.2 μmoles/108 cells/min) system and a low affinity-high capacity (K s=5 μM; V max 6.2 μmoles/108 cells/min) system.
  4. The implications of these findings for silicic acid transport and metabolism in N. alba are discussed.
  相似文献   

16.
Intracellular products of peptide transport were analyzed after thin layer chromatography separation by a fluorescamine labeling procedure. Dipeptides penetrated Pseudomonas aeruginosa via 2 transport systems, one of high affinity with KT values from 1–2 μM, and another one of low affinity (KT about 30 μM). A single transport system assumed tripeptide uptake with KT varying from 10–30 μM, depending on the tripeptide used. Peptides entering the cells were rapidly hydrolyzed into their constitutive amino acids.  相似文献   

17.
Insulin (0.1 μM) and 1 μM epinephrine each increased the uptake and phosphorylation of 2-deoxyglucose by the perfused rat heart by increasing the apparent Vmax without altering the Km. Isoproterenol (10 μM), 50 μM methoxamine and 10 mM CaCl2 also increased uptake. Lowering of the perfusate Ca2+ concentration from 1.27 to 0.1 mM Ca2+, addition of the Ca2+ channel blocker nifedipine (1 μM) or addition of 1.7 mM EGTA decreased the basal rate of uptake of 2-deoxyglucose and prevented the stimulation due to 1 μM epinephrine. Stimulation of 2-deoxyglucose uptake by 0.1 μM insulin was only partly inhibited by Ca2+ omission, nifedipine or 1 mM EGTA. Half-maximal stimulation of 2-deoxyglucose uptake by insulin occurred at 2 nM and 0.4 nM for medium containing 1.27 and 0.1 mM Ca2+, respectively. Maximal concentrations of insulin (0.1 μM) and epinephrine (1 μM) were additive for glucose uptake and lactate output but were not additive for uptake of 2-deoxyglucose. Half-maximal stimulation of 2-deoxyglucose uptake by epinephrine occurred at 0.2 μM but maximal concentrations of epinephrine (e.g., 1 μM) gave lower rates of 2-deoxyglucose uptake than that attained by maximal concentrations of insulin. The addition of insulin increased uptake of 2-deoxyglucose at all concentrations of epinephrine but epinephrine only increased uptake at sub-maximal concentrations of insulin. The role of Ca2+ in signal reversal was also studied. Removal of 1 μM epinephrine after a 10 min exposure period resulted in a rapid return of contractility to basal values but the rate of 2-deoxyglucose uptake increased further and remained elevated at 20 min unless the Ca2+ concentration was lowered to 0.1 mM or nifedipine (1 μM) was added. Similarly, removal of 0.1 μM insulin after a 10 min exposure period did not affect the rate of 2-deoxyglucose uptake, which did not return to basal values within 20 min unless the concentration of Ca2+ was decreased to 0.1 mM. Insulin-mediated increase in 2-deoxyglucose uptake at 0.1 mM Ca2+ reversed upon hormone removal. It is concluded that catecholamines mediate a Ca2+-dependent increase in 2-deoxyglucose transport from either α or β receptors. Insulin has both a Ca2+-dependent and a Ca2+-independent component. Reversal studies suggest an additional role for Ca2+ in maintaining the activated transport state when activated by either epinephrine or insulin.  相似文献   

18.
The tyrosyl-tRNA synthetases located in cytoplasm and chloroplasts of soybean cotyledons were purified to near homogeneity by ammonium sulfate precipitation, DEAE-cellulose chromatography, hydroxylapatite chromatography, and DEAE-Sephadex A-25 chromatography. Purified cytoplasmic tyrosyl-tRNA synthetase shows only a single band in acrylamide gel electrophoresis which corresponds to a MW of 126000. In SDS-acrylamide gel electrophoresis the enzyme again shows only a single band which corresponds to a MW of 61 000. Chloroplast tyrosyl-tRNA synthetase shows only one band in both acrylamide and SDS-acrylamide gel electrophoresis with MWs being 98 000 and 43 000, respectively. For cytoplasmic tyrosyl-tRNA synthetase the apparent Kms determined are 6.8 μM L-tyrosine, 49 μM ATP, and 8.9 × 10?8 M tRNA (as total tRNA). Apparent Kms for chloroplast tyrosyl-tRNA synthetase are 4.9 μM L-tyrosine, 214 μM ATP and 2.2 × 10?8 M tRNA (as BDC-ethanol fraction tRNA). Fractionation of soybean cotyledon-tRNA on RPC-5 columns gives 4 tyrosyl-tRNA species, the first two species (tRNA1 and 2Tyr) are acylated only by cytoplasmic tyrosyl-tRNA synthetase while the last two species (tRNA3 and 4Tyr) are acylated only by chloroplast tyrosyl-tRNA synthetase.  相似文献   

19.
Cultured Ehrlich ascites tumor cells equilibrate d-glucose via a carrier mechanism with a Km and V of 14 mM and 3 μmol/s per ml cells, respectively. Cytochalasin B competitively inhibits this carrier-mediated glycose transport with an inhibition constant (Ki) of approx. 5·10?7 M. Cytochalasin E does not inhibit this carrier function. With cytochalasin B concentrations up to 1·10?5 M, the range where the inhibition develops to practical completion, three discrete cytochalasin B binding sites, namely L, M and H, are distinguished. The cytochalasin B binding at L site shows a dissociation constant (Kd) of approx. 1·10-6 M, represents about 30% of the total cytochalasin B binding of the cell (8·106 molecules/cell), is sensitively displaced by cytochalasin E but not by d-glucose, and is located in cytosol. The cytochalasin B binding to M site shows a Kd of 4–6·10?7 M, represents approx. 60% of the total saturable binding (14·106 molecules/cell), is specifically displaced by d-glucose with a displacement constant of 15 mM, but not by l-glucose, and is insensitive to cytochalasin E. The sites are membrane-bound and extractable with Triton X-100 but not by EDTA in alkaline pH. The cytochalasin B binding at H site shows a Kd of 2–6 · 10?8 M, represents less than 10% of the total sites (2 · 106 molecules/cell), is not affected by either glucose or cytochalasin E and is of non-cytosol origin. It is concluded that the cytochalasin B binding at M site is responsible for the glucose carrier inhibition by cytochalasin B and the Ehrlich ascites cell is unique among other animal cells in its high content of this site. Approx. 16-fold purification of this site has been achieved.  相似文献   

20.
15-Hydroxyprostaglandin dehydrogenase from bovine lung was purified 7.4 times to a specific activity of 1.4 mU/mg of protein. The isoelectric point was estimated to 5.4 and the molecular weight by gelfiltration to 40,000. Km for prostaglandin E1 and for NAD+ were found to be 3.4 μM and 1.1 × 10?4M respectively. The enzyme was inhibited by indomethacin and aspirin. The indomethacin inhibition was found to be non-competitive to prostaglandin E1 having a Ki=1.4 × 10?4M and a Ki=1.6 × 10?5M.  相似文献   

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