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R Hilf

Publications and source records attributed to R Hilf.

At least 91 records · Page 5Linked to original sources

Effect of estradiol-17 beta on glucose and proline uptake in plasma membrane vesicles from the R3230AC rat mammary carcinoma.

Purified plasma membrane vesicles isolated from R3230AC rat mammary tumors displayed carrier-mediated and stereospecific uptake. Uptake was shown to be proportional to protein concentration, sensitive to increasing osmolarity, and inhibited only by substrates entering by the same carrier. Carrier-mediated glucose uptake was inhibited rapidly by estradiol-17 beta and phloretin in a dose-dependent manner, whereas proline uptake was not affected by estradiol-17 beta. The data suggest that the inhibition of glucose by estradiol and phloretin, originally observed in whole cells, occurs by an interaction of the steroid with a component on the plasma membrane. In contrast, the lack of effects of estradiol on proline transport into vesicles implies that intracellular components may have mediated the estrogen-induced effects observed in whole cells.

3-O-Methylglucose↗

An analysis of the decrease in the assayed level of charged bovine estrogen receptor observed at physiological ionic strength.

Lower assayed levels of heifer uterine estrogen receptor (ER) occur at physiologic ionic strength when ER is separated from [3H]estradiol by Dextran-coated charcoal treatments, or by gel filtration on Sephadex or polyacrylamide resins. The assayed level of charged ER in buffers containing 150-200 mM ionic strength is approximately one-half that of ER levels assayed in buffers either at 0-50 or 400-450 mM ionic strength. Treatment of ER with trypsin or molybdate eliminates this observed reduction. Evidence is presented that the decrease results from a preferential adsorption of ER to the assay resins at 150-200 mM ionic strength. This adsorption is likely to be mediated by a hydrophobic region of the ER, which is removed by trypsin cleavage.

Acrylic Resins↗

Effects of estradiol on insulin receptor distribution in primary cultures of R3230AC mammary adenocarcinoma of the rat.

The influence of 17 beta-estradiol on insulin receptor distribution was studied in primary cultures of R3230AC mammary tumors prepared from intact or ovariectomized Fischer rats. [125I] Insulin binding to plasma membrane (IRS) and to solubilized cells (IRt) was measured, and intracellular insulin binding (IRi) was calculated by the difference between the two; calculated IRi agreed well with measured IRi of solubilized cells that were pretreated with trypsin to remove IRs. Scatchard analysis of saturation studies on IRs and IRt displayed typical curvilinearity and were roughly parallel with comparable Ke and Kd values for high affinity sites, but tumors from ovariectomized rats displayed more sites per cell. Insulin receptors relative to time in culture showed an early decline in IRt and IRs for both types of cells, followed by a gradual return to similar IRt values; in both types of cells, however, the proportion of IRs was increased compared to their initial distribution. Cells from both types of host animals displayed an insulin dose-related down-regulation with both IRt and IRs decreased. Short exposure (24 h) to 17 beta-estradiol in vitro also reduced IRs and IRt, but to a lesser extent than insulin, whereas longer exposure to estradiol (48 h) caused a continued reduction in IRs but not IRt. Compared to cells exposed to estradiol for 24 h in vitro, cultured cells treated with progesterone demonstrated an increased IRs, a marginal effect upon exposure to higher doses of testosterone, and reduced IRt, IRs, and IRi in response to dexamethasone. Monohydroxytamoxifen, an antiestrogen, displayed an unusual pattern, inducing a reduction in IRt and IRs at the lower doses but not at the higher doses studied. Degradation of [125I]insulin was examined in cells that were insulin down-regulated in the absence or presence of various levels of estradiol; the steroid hormone appeared to reduce degradation of [125I]insulin when lower levels of insulin were employed. The presence of estradiol in the medium enhanced the reappearance of IRt during the first 10 h after removal of the insulin that caused down-regulation. In conjunction with our previous observations in vivo, we conclude that 1) estradiol in vitro can decrease (down-regulate) insulin receptors on the plasma membrane of R3230AC mammary tumors; 2) the steroid may reduce degradation of internalized [125I]insulin; and 3) the steroid may enhance insulin receptor reappearance after insulin down-regulation. These estrogen-insulin interactions could play a role in the regulation of growth and metabolism of this hormone-responsive experimental mammary carcinoma.

Adenocarcinoma↗

Interactions of estrogen-receptor and antiestrogen-receptor complexes with nuclei in vitro.

Interactions of the estrogen-receptor complex (ER) with nuclei in vitro were shown to be dose, time, temperature, and tissue dependent. Specificity was demonstrated by the ability of ER charged with unlabeled 17 beta-estradiol to compete with [3H]ER for the nuclear acceptor sites. The ionic environment affected [3H]ER nuclear interactions; [3H]ER binding varied inversely with ionic strength, and apparent nuclear saturation was observed in the presence of 0.1 M KCl. Nuclear interactions of estrogen receptor charged with 17 beta-estradiol (ER) or monohydroxytamoxifen (AER) were compared. While both ER and AER (nonradiolabeled) were efficient competitors for [3H]ER nuclear binding, differences were observed when 3H-labeled ligands were used for saturation analysis of the nuclear acceptor sites. Scatchard analysis of the data revealed similar apparent Kd values for [3H]ER and [3H]AER binding to the nuclear sites (mean +/- SD, 1.2 +/- 0.5 X 10(-9) and 2.6 +/- 0.2 X 10(-9) M, respectively). However, the relative number of nuclear binding events consistently differed, with 28,000 +/- 7,300 sites/nucleus (mean +/- SD) for ER vs. 17,800 +/- 6,300 sites/nucleus for AER. Treatment of nuclei with 0-300 unit-min/ml DNAase I before incubation with receptor complexes resulted in a parallel percent decrease in the number of ER and AER nuclear binding sites. Saturation analysis performed with nuclei previously digested with 0-30 unit-min/ml DNAase I demonstrated that the apparent affinities of the receptor complexes for nuclear sites remained unchanged. Therefore, we suggest that both AER and ER bind to acceptor sites in the small portion of the chromatin hypersensitive to DNase I, but that fewer AER than ER can bind at least some of the ER nuclear acceptor sites. The lower binding capacity for AER may result in a pattern of gene expression that produces the agonist/antagonist effects observed with antiestrogens.

Animals↗

Effects of diabetes on the dietary lipid alteration of R3230AC mammary carcinoma growth in rats.

To examine the effects of diabetes on the alteration of R3230AC mammary tumor growth by dietary lipids, streptozotocin-induced diabetic rats were fed diets containing either 20% corn oil (HF), 20% hydrogenated cottonseed oil (HCTO), or 0% fat (FF). Diabetes resulted in lower tumor weights and body weights compared to those of intact animals. Unlike intact animals, relative tumor weight (g tumor/100 g body wt) of diabetic animals fed HF diets were not greater than those from animals fed FF diets. However, in these diabetic animals, growth of tumors in HF-fed rats was faster than in HCTO-fed rats, a relationship similar to that seen in intact rats. A surprising result was the almost twofold greater tumor weight/100 g body wt observed in diabetic FF-fed rats compared to those fed HCTO diets. Insulin binding to tumor plasma membranes from diabetic animals was higher in rats fed HF diets than in rats fed FF or HCTO diets. The tumor plasma membrane fatty acid composition of diabetic rats fed FF and HCTO diets displayed higher proportions of the monounsaturates (C18:1 and C21:1) and decreased amounts of the polyunsaturates (C18:2 and C20:4) compared to the levels observed in membranes from HF-fed rats. These results, as well as the insulin binding data, were similar to those obtained using intact animals. The data presented here indicate that the more rapid growth of the R3230AC mammary tumor seen in intact animals fed high polyunsaturated fat vs fat-free diets did not occur in diabetic animals.

Animals↗

Effects of photosensitization by hematoporphyrin derivative on mitochondrial adenosine triphosphatase-mediated proton transport and membrane integrity of R3230AC mammary adenocarcinoma.

Photodynamic therapy, which consists of treatment with hematoporphyrin derivative (HPD) followed by photoradiation with visible light, is a promising approach to treatment of various cancers. To gain further understanding of the mechanisms whereby this therapy produces cytotoxicity, we undertook a study of the mitochondrial proton-translocating adenosine triphosphatase, an enzyme performing the critical role of coupling electrochemical proton gradients to the formation of adenosine triphosphate. Exposure of submitochondrial particles to HPD and photoradiation in vitro caused a marked inhibition of proton transport; inhibition displayed both drug-dose and light-dose relationships. Inhibition of proton transport was correlated with inhibition of adenosine triphosphate hydrolysis, both demonstrating an inhibition rate of 2% min-1. Investigation of effects of HPD plus light on membrane integrity, measured by [3H]sucrose leakage from submitochondrial particles and by K+ leakage from asolectin phospholipid vesicles, indicated that discrete membrane alterations were not the likely cause of initial loss of pH gradient formation. Likewise, photosensitization by HPD to inhibit adenosine triphosphate hydrolysis and proton transport was not coincident with cross-linking of the major subunits of the enzyme. We conclude that mitochondrial function is severely impaired by photodynamic therapy and offers a potentially important target site leading to cytotoxicity.

Adenosine Triphosphate↗

A role of estrogens and insulin binding in the dietary lipid alteration of R3230AC mammary carcinoma growth in rats.

The importance of estrogens in the dietary lipid alteration of R3230AC mammary carcinoma growth and insulin binding was studied. Animals were divided into three groups [intact, ovariectomized, and ovariectomized treated with estradiol valerate (EV)] and were fed diets containing either 0% fat (fat free), 0.5% corn oil (low fat), or 20% corn oil (high fat). An alteration of tumor burden between animals fed high-fat versus either low-fat or fat-free diets was observed and appeared to be influenced by the estrogen status of the animal. The difference in tumor burden attributed to dietary lipid seen in intact rats was less in ovariectomized rats and greater in ovariectomized rats treated with EV, despite the fact that absolute tumor burden was reduced by this treatment. A similar relationship was observed for dietary lipid-induced differences in insulin binding to plasma membranes from these tumors. Reduction of tumor growth resulting from estrogen treatment was greater in low-fat- and fat-free-fed animals than in high-fat-fed rats. Again, tumor growth behavior appeared to be related to the reduction of insulin binding induced by estrogen treatment; insulin binding to plasma membranes from animals fed a low unsaturated lipid diet was decreased to a greater extent by EV treatment than in membranes from high-fat-fed rats. Altered tumor growth and membrane insulin binding, resulting from dietary perturbations and/or EV treatment, were not invariably related to serum insulin levels, nor to differences in membrane preparation, as reflected by 5'-nucleotidase activity, nor to membrane fatty acid composition or uptake of proline. Taken together, these results suggest a potential role of estrogens and insulin receptors as mediators of the dietary lipid alterations of growth of the R3230AC mammary carcinoma.

Animals↗

Effects of streptozotocin-induced diabetes and insulin on phospholipid content of R3230AC mammary tumor cells.

The influence of diabetes and insulin treatment on the phospholipid content of R3230AC mammary tumors, a hormonally responsive neoplasm, was studied. Diabetes was induced by administration of streptozotocin 3 days prior to tumor implantation. Protamine zinc insulin, 3 IU/rat twice daily, was administered to tumor-bearing rats for 3 days. Enzymatically dissociated tumor cells from diabetic animals showed significant increases in phosphatidyl choline, lysophosphatidyl choline, phosphatidyl ethanolamine, phosphatidyl serine, phosphatidyl inositol, and phosphatidic acid, compared to controls. Diabetic animals treated with insulin displayed reductions in phosphatidyl choline, lysophosphatidyl choline, phosphatidyl ethanolamine, phosphatidyl serine, phosphatidyl inositol, and phosphatidic acid to levels approximating those found in intact (control) animals. However, neither diabetes nor insulin treatment altered sphingomyelin levels. Mammary tumor cells from diabetic animals showed a 21% increase in DNA content compared to that in intact controls and treatment of diabetic animals with insulin lowered DNA level significantly. The responsiveness of both phospholipids and DNA content to changes in the insulin milieu of the host suggest that phospholipids may play an important role in mediating the effects of insulin on growth of R3230AC tumors.

Adenocarcinoma↗

Failure of indomethacin to inhibit growth of the R3230AC mammary tumor in rats.

The relationship between the dietary lipid-induced growth of the R3230AC mammary tumor and prostaglandin E2 (PGE2) levels as well as the effect of the prostaglandin synthetase inhibitor indomethacin (Ind) on these parameters was examined. F344 rats fed a high-fat (HF) diet containing 20% corn oil demonstrated more rapid tumor growth and higher tumor and plasma PGE2 levels than rats fed a 20% hydrogenated cottonseed oil (HCTO) diet. Addition of 0.004% Ind to the HF diet markedly reduced tumor and plasma PGE2 levels. However, Ind had no effect on tumor growth. Neither the fatty acid composition nor the insulin-binding capacity of the tumor plasma membranes was affected by Ind. Membranes from animals fed HF diets with or without Ind bound more 125I-labeled insulin than membranes from HCTO-fed rats. The results suggest that, for the R3230AC mammary tumor, reduction in both tumor and plasma PGE2 levels by Ind did not result in reduced tumor growth in animals fed diets high in polyunsaturated fatty acids.

Animals↗

Analysis of the mechanism of ATP stimulation of calf thymus DNA alpha-polymerase.

Biochemical kinetic analyses of the ATP stimulation of the A2 form of calf DNA alpha-polymerase show that when DNA or primer termini are the variable substrates, maximum reaction velocity is independent of ATP concentration. When dNTP concentration is the variable substrate, the apparent Km is invariant with ATP. Such results indicate that the increase in the synthetic rate caused by ATP results from an improvement in synthesis initiation at primer termini. The effect of ATP on the DNA binding affinity of alpha-A2-polymerase was examined by using column chromatography. Passage of the polymerase through native DNA-cellulose at 70 mM ionic strength resulted in 40% binding of the enzyme. In the presence of 4 mM ATP, binding increased to 80%. In both cases, the bound polymerase could be eluted by a 370 mM ionic strength wash. An elution profile similar to that observed in the absence of ATP was obtained with 0.1 mM ATP, 4 mM GTP, or 4 mM each of the nonhydrolyzable ATP analogues adenyl-5'-yl imidodiphosphate or adenosine 5'-O-(3-thiotriphosphate). These results suggest that hydrolysis of the gamma-phosphate occurs at millimolar levels of ATP and leads to a higher affinity of polymerase for DNA. To distinguish the effects of ATP on RNA priming from those on DNA synthesis, products synthesized processively by alpha-A2-polymerase were sized by gel filtration. Results indicate that essentially all products made on a gapped fd replicative form template in the presence of four dNTPs and 4 mM ATP result from the extension of preexisting DNA primers.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate↗

Bovine estrogen receptor binds chromatin at pre-existing nuclease hypersensitive sites.

Partially purified estrogen receptor prepared from heifer uterine cytosol, and labeled in vitro with tritiated estradiol, was used to locate receptor binding sites in target and non-target nuclei from various bovine tissues. Nuclei were digested to various extents with bovine pancreatic deoxyribonuclease I, micrococcal nuclease or endogenous nuclease and then assessed for their ability to bind charged estrogen receptor. After very brief digestion with DNAase I, such that only hypersensitive sites were cleaved, calf uterus nuclei were no longer able to bind estrogen receptor. Brief digests with micrococcal nuclease or endogenous nuclease, such that most DNA was still of polynucleosomal length, eliminated the binding ability of both calf and heifer uterus nuclei. These results suggest that estrogen receptor binds to pre-existing nuclease hypersensitive sites. Interestingly, nuclei digested by HaeIII restriction endonuclease, which cleaves at specific sequences, demonstrated no loss of labeled estrogen receptor binding, even though digestion products were of similar size to those obtained from nuclei after treatment with the other nucleases. Since nuclease hypersensitive sites occur in regulatory regions of actively transcribed genes, including estrogen-inducible genes, binding of estrogen receptor at these sites, in vivo, may be part of the mechanism by which transcription is induced.

Animals↗

Photodynamic inactivation of selected intracellular enzymes by hematoporphyrin derivative and their relationship to tumor cell viability in vitro.

The photosensitivity of freshly dissociated R3230AC mammary adenocarcinoma cells was examined by measurement of the activities of selected intracellular enzymes after treatment with hematoporphyrin derivative (Hpd) and exposure to light in vitro. Enzymes selected as representative of the cytosolic cell compartment showed no loss in activity, whereas malate dehydrogenase, located in the mitochondrial matrix, displayed a modest decrease (approximately 15%) in activity. In contrast, cytochrome c oxidase and succinate dehydrogenase, enzymes associated with the mitochondrial membrane, demonstrated a very rapid and more marked inhibition of activities, approximately 45% and 25%, respectively. The time-course of inhibition of these mitochondrial membrane enzymes preceded the loss of cell viability, which displayed slower kinetics as seen by a more gradual and progressive pattern of loss in viability. These data suggest that the mitochondria are an early-affected and important intracellular site for Hpd photosensitization.

Adenocarcinoma↗

Hematoporphyrin derivative-induced photosensitivity of mitochondrial succinate dehydrogenase and selected cytosolic enzymes of R3230AC mammary adenocarcinomas of rats.

The photosensitizing activity of hematoporphyrin derivative (HPD) was investigated by studying selected enzymes localized to mitochondria and cytosol of R3230AC mammary adenocarcinomas. Experiments in vitro demonstrated that mitochondrial succinate dehydrogenase was inhibited in a drug dose- and light exposure time-related manner; at 7.0 micrograms of HPD per ml or higher, enzyme activity was inhibited greater than 50% after 15 min of photoradiation. The three cytosol enzymes studied under the same conditions in vitro demonstrated different photosensitivities. Pyruvate kinase activity was significantly inhibited in a dose- and time-related fashion, whereas lactate dehydrogenase was inhibited to a lesser extent, and glucose phosphate isomerase activity was inhibited only at the highest dose (70 micrograms of HPD per ml) used. The time-course of these responses was examined with an in vivo-in vitro protocol, consisting of photoradiation of mitochondria and cytosol prepared from tumors obtained at various times (up to 1 week) after a single injection of HPD (80 mg/kg). Pyruvate kinase activity was markedly inhibited at early times returning to initial levels by 48 hr; neither lactate dehydrogenase nor glucose phosphate isomerase was inhibited by this treatment. Mitochondrial succinate dehydrogenase and cytochrome c oxidase activities displayed significant photoradiation-induced inhibitions, with greatest inhibition occurring between 24 and 96 hr after injection of HPD; at 1 week, succinate dehydrogenase activity had returned to its initial level, but cytochrome c oxidase activity remained significantly inhibited. These data suggest that HPD-induced photosensitization of mitochondria may be an important site of action contributing to tumor cell cytotoxicity and regression as a result of photoradiation therapy.

Adenocarcinoma↗