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1.
C V Rao 《Life sciences》1977,20(12):2013-2022
Pretreatment of membranes for 1 hr at 4° with up to 0.1% Triton X-100 (TX-100) and sodium desoxycholate (SDC), resulted in a greater loss of [3H] prostaglandin (PG)F2α binding compared to E1 binding. Lubrol WX (LWX) tended to cause a greater loss of [3H]PGF2α than E1 binding. However, the differential loss was not as marked as with TX-100 or SDC. Triton X-305 was relatively ineffective, but loss of [3H]PGE1 binding was greater than for PGF2α. Increasing concentrations of dimethylsulfoxide (DMSO) progressively inhibited PGF2α binding without affecting PGE1 binding. The detergent, but not DMSO, induced losses of membrane PG binding were due to solubilization of the receptors. Greater amounts of membrane protein and phospholipids were solubilized at detergent (TX-100 and SDC) concentrations that solubilized 100% of PGE1 receptors compared to 100% solubilization of F2α receptors. Neither the duration of preincubation nor the amount of membrane protein chosen were responsible for differential PGE1 and F2α receptor losses. These differential membrane PG receptor losses raise the possibility of differences in PGE1 and F2α receptors association with the membrane structure.  相似文献   

2.
The cell membranes isolated from bovine corpora lutea bound 3H-prostaglandin (PG) F2α with high affinity and specificity. The specific binding of 3H-PGF2α was detectable at 10?10M added 3H-PGF2α and reached saturation at 10?7M to 10?6M. Unlabeled PGF2α, as low as 10?9M, inhibited the binding of 3H-PGF2α with complete inhibition occurring at 10?6M. The Scatchard analysis of equilibrium binding data revealed that the PGF2α receptors are heterogeneous: Kd1?5.1 × 10?9M, n?289 fmoles/mg protein; Kd2?1.8 × 10?8M, n?780 fmoles/mg protein. The relative affinities of various other PGs for binding to PGF2α receptors were (PGF2α?100%): PGF1α?17.5; PGE1?0.8; PGE2?22.4; PGA1?0.007; PGB1?0.01. The specificity and affinity of 3H-PGF2α binding is consistent with the possibility that this receptor interaction may reflect an initial event in the action of PGF2α as a luteolytic agent.  相似文献   

3.
The specific binding of [3H] Prostaglandin (PG) F2α to bovine corpus luteum cell membranes prepared in homogenizing buffer containing either 1 mM EDTA (H-EDTA) or 1 mM Ca2+ (HCa2+) was examined. The membranes prepared in H-EDTA buffer bound less [3H] PGF2α and had a single class of PGF2α receptors with an apparent dissociation constant (Kd) of 2.7 × 10?8M. The addition of Ca2+ to these membranes resulted in increased binding with the appearance of new PGF2α receptors of Kd = 4.3 × 10?9M. The membranes prepared in HCa2+ buffer contained two classes of receptors with Kds = 2.9 × 10?9M and 2.9 × 10?8M. The removal of Ca2+ from these membranes resulted in lower binding as well as a complete disappearance of receptors of Kd = 2.9 × 10?9M. These results suggest the dependency of high affinity PGF2α receptors, in bovine corpus luteum cell membranes, on cations.  相似文献   

4.
Suspensions of dispersed bovine luteal cells prepared by collagenase digestion of luteal tissue specifically bound [3H]Prostaglandin (PG) E1 and [3H]PGF. While the number of sites per cell (~ 1.8 × 105) were about the same for both [3H]PGs, the apparent Kds were different: [3H]PGE1 ? 2.4 nM; [3H]PGF ? 11 nM. The [3H]PGs binding was inhibited in a dose-dependent manner in the presence of increasing concentrations of unlabeled PGs. Potency order for inhibition of [3H]PGE1 binding was: PGE2 > PGE1 > PGF > PGF. The corresponding data for [3H]PGF was: PGF > PGF > PGE2 > PGE1. While [3H]PGE1 and [3H]PGF bind to their own receptors with high affinity, their affinities for each other's binding were extremely low. Thus, these results demonstrate that luteal cells, like plasma membranes isolated from luteal tissue, contain receptors for PGEs and PGF which are discrete with respect to specificity and affinity.  相似文献   

5.
Preliminary characterization indicated the presence of separate prostaglandin (PG)E1 and (PG)F binding sites in membrane fractions prepared from bovine corpora lutea. These differ in the rate and temperature dependence of the specific binding. Equilibrium binding data indicate the apparent dissociation constants as 1.32 × 10−9M and 2.1 × 10−8M for PGE1 and PGF, respectively. Competition of several natural prostaglandins for the PGE1 and PGF bovine luteal specific binding sites indicates specificity for the 9-keto or 9α-hydroxyl moiety, respectively. Differences in relative ability to inhibit 3H-PG binding were found due to sensitivity to the absence or presence of the 5,6-cis-double bond as well.Bovine luteal function was affected following treatment of heifers with 25 mg PGF as measured by reduced estrous cycle length, decreased corpus luteum size and significantly decreased plasma progesterone levels. In contrast, treatment with 25 mg PGE1 resulted in cycle lengths comparable to those of non-treated herdmates with no apparent modification in corpus luteum size. However, plasma progesterone levels were increased significantly following PGE1 treatment compared to pretreatment values. In so far as data obtained on PGF relative binding affinity to the bovine CL can be compared to data obtained independently on PGF induced luteolysis in the bovine, PGF relative binding to the CL and luteolysis appeared to be associated. By similar reasoning, there was no apparent relationship between PGE1 relative binding affinity in the luteal fractions and luteolysis in estrous cyclic cattle.  相似文献   

6.
Myometrial low speed supernatant prepared from non-pregnant rhesus uteri was incubated with 3H-Prostaglandin (PG)E1 with or without addition of unlabelled prostaglandins. The uptake of 3H-PGE1 was inhibited in a dose dependent fashion by PGE2>PGE1>PGA1>PGF=PGA1>PGB1=PGB2≥PGD2. PGE1 metabolites inhibited 3H-PGE1 binding in the following order: 13,14-dihydro-PGE1>13,14-dihydro-15-keto-PGE1=15-keto-PGE1. The specific binding of 3H-PGE1 and 3H-PGF was similarly affected by the temperature and time of incubation. Equilibrium binding constants determined using rhesus uteri obtained during the luteal phase of the menstrual cycle indicate the presence of high affinity PGE1 binding sites with an average (n=3) apparent dissociation constant of 2.2 × 10−9M and a lower affinity PGE1 binding site with a Kd ≅ 1 × 10−8M. No high affinity — low capacity 3H-PGF sites could be demonstrated.Relative uterine stimulating potencies of some natural prostaglandins and prostaglandin analogs tested after acute intravenous administration in mid-pregnant rhesus monkeys corresponded with the PGE1 binding inhibition of the respective compound. The uterine stimulating potencies of the prostaglandin analogs tested were: (15S)-15-methyl-PGE2=16,16-dimethyl-PGE2>17-phenyl-18,19,20-trinor-PGE2>16 phenoxy-17,18,19,20-tetranor-PGF=PGE2=PGE1=(15S)-15-methyl-PGF>PGF.  相似文献   

7.
Preliminary characterization indicated the presence of separate prostaglandin (PG)E1 and (PG)F binding sites in membrane fractions prepared from bovine corpora lutea. These differ in the rate and temperature dependence of the specific binding. Equilibrium binding data indicate the apparent dissociation constants as 1.32 × 10−9M and 2.1 × 10−8M for PGE1 and PGF, respectively. Competition of several natural prostaglandins for the PGE1 and PGF bovine luteal specific binding sites indicates specificity for the 9-keto or 9α-hydroxyl moiety, respectively. Differences in relative ability to inhibit 3H-PG binding were found due to sensitivity to the absence or presence of the 5,6-cis-double bond as well.Bovine luteal function was affected following treatment of heifers with 25 mg PGF as measured by reduced estrous cycle length, decreased corpus luteum size and significantly decreased plasma progesterone levels. In contrast, treatment with 25 mg PGE1 resulted in cycle lengths comparable to those of non-treated herdmates with no apparent modification in corpus luteum size. However, plasma progesterone levels were increased significantly following PGE1 treatment compared to pretreatment values. In so far as data obtained in vitro on PGF relative binding affinity to the bovine CL can be compared to data obtained independently in vitro on PGF induced luteolysis in the bovine, PGF relative binding to the CL and luteolysis appeared to be associated. By similar reasoning, there was no apparent relationship between PGE1 relative binding affinity in the luteal fractions and luteolysis in estrous cyclic cattle.  相似文献   

8.
Endometrial concentrations of prostaglandins F2α (PGF2α) and E2 (PGE2) were measured by specific radioimmunoassay in sheep, on day 14 of estrous cycle or pregnancy, during luteolysis (Day 16 of the cycle), and after implantation (Day 23 of pregnancy) : concentrations observed on day 14 of cycle and pregnancy were similar. During luteolysis, on day 16 of cycle, a consistent drop was noticed. If luteal regression did not occur, as a consequence of the presence of an embryo, endometrial concentrations of PGF2α on day 23, were twice those of day 14, and PGE2 remained unchanged. In vitro 2 hour incubations of endometrial caruncular tissue from 14 days cyclic or pregnant ewes resulted in de novo synthesis of PG which could be increased by Arachidonic Acid and inhibited by Indomethacin; during the first 30 min of incubation, the PGF2α synthesis was comparable for both endometrial tissues, whereas PGE2 synthesis was twice as great in pregnant endometrium. Fourteen and 23 day conceptuses had high PGF2α and PGE2 concentrations which were not due to maternal PG sequestration : de novo PG synthesis which could be inhibited by Indomethacin was observed in incubated 14 day old embryos. Treatment of pregnant ewes from day 7 to day 22 after mating, either with Indomethacin (300 mg s.c. daily) or with Acetylsalicylic Acid (1 g I.V. daily) resulted in a sharp diminution of endometrial PG concentration and release, with no apparent effect on the establishment of pregnancy. These results tend to ascribe a less important role to PG during early pregnancy in sheep as compared with rodents, in terms of embryonic growth and implantation.  相似文献   

9.
PROSTAGLANDIN is known to affect concentrations of cyclic AMP in some cells1. Dibutyryl cyclic AMP induces irreversible differentiation of mouse neuroblastoma cells in vitro2, which raises the question of whether prostaglandin would mimic this effect. I report here that prostaglandins (PG)E1 and PGE2 induce irreversible morphological differentiation of mouse neuroblastoma cells in culture as shown by axon formation, whereas PGF2α does not.  相似文献   

10.
Bovine articular chondrocytes, cultured as cell suspensions and monolayers, produced prostaglandin (PG) E2 and PGI2 (assayed as 6 keto PGF1α), rather less PGF2α and irregular quantities of thromboxane (Tx) B2. Addition of foetal calf serum to the medium greatly stimulated PG production (a sixfold increase in PGE2 and a twofold increase in 6 keto PGF1α).Prostanoid production by cell suspension grown in serum-free medium generally plateaued after 24 hours. In the presence of 20% foetal calf serum, prostanoid production in long-term monolayer cultures increased during the first 6 days of culture. Levels of PGE2α levels remained high. Indomethacin (10-6M) inhibited chondrocyte PG production both in the presence and absence of added arachidonic acid (10-4M). Prostanoids produced by chondrocytes may play a role in the modulation of cartilage metabolism in vivo.  相似文献   

11.
The cell membranes exhibited specific binding to 3H-prostaglandin E1 (3H-PGE1) and 125I-human chorionic gonadotropin (125I-HCG). Unlabeled PGE1,PGE2 (1.4 × 10?7M), PGF and PGF (1.4 × 10?5M) decreased 3H-PGE1 binding by more than 80%. The binding of 125I-HCG was completely inhibited by 5 × 10?8M unlabeled HCG. However, the unlabeled PGE1 (1.15 × 10?6M) and HCG (8.4 × 10?7M) had no effect on 125I-HCG and 3H-PGE1 binding respectively. A PG antagonist, 7-oxa-13-prostynoic acid, inhibited only 3H-PGE1 binding but not 125I-HCG binding. These results suggest the presence of specific receptors for PGE1 and HCG in the cell membranes and that the binding occurs either at two different sites on the same receptor or that each binds to a “different” receptor molecule.  相似文献   

12.
Studies were carried out to investigate the effects of prostaglandins (PG) in vitro on adrenal microsomal steroid and drug metabolism in the guinea pig. The addition of PGE1, PGE2, PGA1, PGF or PGF to isolated adrenal microsomes produced typical type I difference spectra. The sizes of the spectra (ΔA385–420) produced by prostaglandins were smaller than those produced by various steroids including progesterone, 17-hydroxyprogesterone and 11β-hydroxyprogesterone. However, the affinities of prostaglandins and steroids for adrenal microsomal cytochrome P-450, as estimated by the spectral dissociation constants, were similar. Prior addition of prostaglandins to isolated adrenal microsomes did not affect steroid binding to cytochrome P-450 or the rate of steroid 21-hydroxylation. In contrast, prostaglandins inhibited adrenal metabolism of ethylmorphine and diminished the magnitude of the ethylmorphine-induced spectral change in adrenal microsomes. The results indicate that prostaglandins inhibit adrenal drug metabolism by interfering with substrate binding to cytochrome P-450. Since 21-hydroxylation was unaffected by PG, different cytochrome P-450 moieties are probably involved in adrenal drug and steroid metabolism.  相似文献   

13.
IN view of the possibility that prostaglandins (PG) regulate local blood flow1, we are investigating this activity in the pancreas. We have already found that PGE2 reduces vascular resistance in the perfused rat pancreas whereas PGF has the opposite effect2. These effects were seen at low doses (0.1 µg/ml.) and with good reproducibility.  相似文献   

14.
The subcellular distribution of prostaglandin (PG) E1, F2α and gonadotropin receptors in bovine corpora lutea was critically examined by preparing various subcellular fractions, assaying for various marker enzymes to assess the purity and examining 3H-PGE1, 3H-PGF2α and 125I-human lutropin (hLH) specific binding. The marker enzyme data suggested that subcellular fractions were relatively pure with little or no cross contamination. The binding of 3H-PGs and 125I-hLH was markedly enriched in plasma membranes with respect to homogenate. The other subcellular fractions also exhibited binding despite very little or no detectable 5′-nucleotidase activity. If 5′-nucleotidase was assumed to lack sensitivity and reliability to detect minor contamination with plasma membranes and 3H-PGs or 125I-hLH binding were used as sensitive plasma membrane markers, it was still difficult to explain binding in other fractions based on plasma membrane contamination. Therefore, these results lead to the inevitable conclusion that plasma membranes were primary (or one of the primary) but not exclusive sites for PGE1, PGF2α and gonadotropin receptors.  相似文献   

15.
Transformed cells from human lung carcinoma (Line A549), resembling type II pneumocytes, were cultured in monolayer at 37°C and incubated for five hours with 3H-choline and 14C-palmitate in the presence of various concentrations of prostaglandins (PGs) E2 and F. In the control (no PG) the level of % palmitate incorporation was 13.5 × as high as that of choline, after taking isotope dilution into account. Between the concentrations studied, 0.1 and 10 μM, both prostaglandins stimulated markedly the incorporation of both precursors, though choline up to 3 × better than palmitate. This was indicated by a change in the palmitate/choline incorporation ratio from 13.5 to as low as 4.2. At the lowest PG concentration, 0.1 μM, PGE2 was much more effective than PGF in stimulating the incorporation of both precursors.  相似文献   

16.
[3H]Prostaglandin (PG) E2 bound specifically to several subcellular fractions from bovine myometrium. The binding was temperature dependent, rapid, and reversible. PGE2 and PGE1 competed for the [3H]PGE2 binding site. The PGs inhibited in the following decreasing order: PGE2 = PGE1 ? PGF > PGA2 > PGF > PGB2. No competitive effect could be found for oxytocin. Scatchard analysis of the binding data were interpreted as showing a single high-affinity binding constant. There was no difference in the binding constant between the various fractions. The average molar dissociation constant was 2.74 ± 0.14 × 10?9. Quantitative differences in the maximum number of binding sites were observed between fractions. One plasma membrane fraction contained 21.4 ± 2.3 × 10?11 and the sarcoplasmic reticulum contained 11.2 ± 0.8 × 10?11 mol binding sites/g. The results suggest that there is a high-affinity PGE2 receptor present in both plasma membrane and sarcoplasmic reticulum.  相似文献   

17.
Pretreatment of membranes for 1 hr at 4° with up to 0.1% Triton X-100 (TX-100) and sodium desoxycholate (SDC), resulted in a greater loss of [3H] prostaglandin (PG)F2α binding compared to E1 binding. Lubrol WX (LWX) tended to cause a greater loss of [3H]PGF2α than E1 binding. However, the differential loss was not as marked as with TX-100 or SDC. Triton X-305 was relatively ineffective, but loss of [3H]PGE1 binding was greater than for PGF2α. Increasing concentrations of dimethylsulfoxide (DMSO) progressively inhibited PGF2α binding without affecting PGE1 binding. The detergent, but not DMSO, induced losses of membrane PG binding were due to solubilization of the receptors. Greater amounts of membrane protein and phospholipids were solubilized at detergent (TX-100 and SDC) concentrations that solubilized 100% of PGE1 receptors compared to 100% solubilization of F2α receptors. Neither the duration of preincubation nor the amount of membrane protein chosen were responsible for differential PGE1 and F2α receptor losses. These differential membrane PG receptor losses raise the possibility of differences in PGE1 and F2α receptors association with the membrane structure.  相似文献   

18.
The interaction between interleukin IL-1α and PGE2 on P388D2 on cells has been investigated. Preincubation of murine macrophage-like cells, P388D1, with IL-1α (0–73 pM) reduced the binding of PGE2 to these cells in a concentration-dependent manner. Scatchard analysis showed that IL-1α decreased the PGE2 binding by lowering both the high and low affinity receptor binding capacities (from 0.31 ± 0.02 to 0.12 ± 0.01 fmol/106 cells for the high affinity receptor binding sites and from 2.41 ± 0.12 to 1.51 ± 0.21 fmol/106 cells for the low affinity receptor binding sites). However, the dissociation constants of the receptor of the IL-1α-treated cells remained unchanged. Inhibition of PGE2 binding IL-1α did not involve changes in either protein phosphorylation or intracellular cyclic AMP levels. Our data clearly show that IL-1α inhibits the binding of PGE2 to monocytes/macrophages and may thereby counter the immunosuppressive actions of PGE2.  相似文献   

19.
Quantitative assays for prostaglandins (PG) E1 and PGF are described using [3,3,4,4,5,6-2H6]labeled prostaglandins as carriers and methyl ester-O-methyloxime-acetate (PGE1) and methyl ester-acetate (PGF) derivatives for gas - liquid chromatography/mass spectrometric analysis. Thin-layer argentation chromatography was used to separate PGE1 from PGE2 and 13, 14-dihydro-PGE2. These latter compounds, which do not separate from PGE1 using conventional thin-layer chromatography or under the gas - liquid chromatographic conditions used, can significantly interfere with the quantitative analysis of PGE1. The method described prevents this interference and is therefore suitable for the accurate analysis of PGE1 in biological samples containing a high concentration of PGE2 and/or 13, 14-dihydro-PGE2.  相似文献   

20.
While no significant effects on the in vitro production of PGF2α by homogenates of rat estrous uteri were observed in the presence of 10−3 and 10−6M Cu2+, the presence of Cu2+ at 10−4 and 10−5M was found to stimulate production with maximal synthesis of PGF2α occurring with 10−4M Cu2+. By contrast, the synthesis of PGE2 and PGI2 (determined as 6-keto PGF1α) were unaffected at all of the different Cu2+ concentrations used. When indomethacin and salicylic acid were tested for their effects on the Cu2+-mediated levels of PG synthesis by the homogenates, indomethacin (at 20μM) was found to cause similar pronounced decreases in PGF2α, PGE2 and 6-keto PGF1α whereas salicylic acid (400μM) showed preference towards suppressing PGE2 and 6-keto PGF1α production.  相似文献   

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