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Biomedical subjects

M Edery

Publications and source records attributed to M Edery.

At least 73 records · Page 4Linked to original sources

Influence of neonatal diethylstilbestrol treatment on prolactin receptor levels in the mouse male reproductive system.

Neonatal exposure to the synthetic estrogen, diethylstilbestrol, is known to affect the structure of the male reproductive system; thus, changes may also occur in the levels of hormone receptors. Prolactin receptor levels from the reproductive systems of male BALB/c mice exposed neonatally to diethylstilbestrol were analyzed. Neonatal exposure to diethylstilbestrol caused significant decreases (i) in prolactin receptor levels in the seminal vesicle, ductus deferens, and anterior and ventral prostates and (ii) in tissue weight and protein content in reproductive organs other than the ventral prostate.

Animals↗

Influence of neonatal diethylstilbestrol treatment on androgen and estrogen receptor levels in the mouse anterior prostate, ventral prostate and seminal vesicle.

Perinatal exposure to the synthetic estrogen, diethylstilbestrol (DES), affects the structure of both male and female reproductive systems. Changes may also occur in the levels of steroid hormone receptors. Cytosolic and nuclear androgen and estrogen receptor levels (expressed per mg DNA) from the sex accessory glands of male BALB/c mice exposed neonatally to DES were analyzed by exchange assays. Neonatal DES exposure caused significant decreases in: (1) cytosolic androgen and cytosolic and nuclear estrogen receptor levels in the anterior prostate and (2) cytosolic estrogen receptor levels in the ventral prostate. A significant increase was seen in the cytosolic estrogen receptor levels in the seminal vesicle. Significant decreases in cytosolic protein levels occurred in all DES-exposed glands.

Animals↗

Turnover of epidermal growth factor binding sites in mouse mammary epithelial cells.

An in vitro method of studying epidermal growth factor (EGF) receptors in mouse mammary epithelial cells in serum-free collagen gel culture has been developed. Binding of EGF averaged 108 +/- 19 fmol/mg DNA in cells isolated from freshly dissociated virgin mammary tissue. Initial binding values were maintained in cells cultured in the presence of 0.1 ng/ml EGF, but decreased in either 0 ng/ml or 10 ng/ml EGF. Addition of either chloroquine (100 microM) or ammonium chloride (10 mM) to the culture medium increased receptor levels 10-fold. Cycloheximide (0.1 microgram/ml), ouabain (3 mM), and actinomycin D (5 x 10(-2) micrograms/ml) each decreased receptor levels, in some cases by as much as 80%. Both methylamine (10 mM) and dinitrophenol (0.1 mM) had no significant effect. These studies suggest that the net level of EGF receptors in these target cells is the result of an equilibrium between synthesis and degradation. The difference between the effects of the compounds tested on either receptor degradation or synthesis in comparison to cell growth, may be indicative that receptor degradation is not linked to cell proliferation.

Animals↗

Identification and sequence analysis of a second form of prolactin receptor by molecular cloning of complementary DNA from rabbit mammary gland.

Two lambda gt11 clones containing fragments of cDNA encoding the prolactin receptor from rabbit mammary gland were isolated using a rat liver prolactin receptor cDNA probe. An 1848-base-pair open reading frame encodes a mature prolactin-binding protein of 592 amino acids that contains three domains: (i) the extracellular, amino-terminal, prolactin-binding region of 210 residues; (ii) the transmembrane region of 24 residues; and (iii) the intracellular, carboxyl-terminal domain of 358 residues. This latter domain is much longer than the cytoplasmic domain (57 residues) previously described for the rat liver prolactin receptor. In addition, the sequence identity of this form of prolactin receptor with the growth hormone receptor is extended in the cytoplasmic domain.

Amino Acid Sequence↗

Purification, cloning, and expression of the prolactin receptor.

The rat liver prolactin receptor has been purified to homogeneity, and partial amino acid sequences have been obtained. The structure of the receptor has been deduced from a single complementary DNA clone. The mature protein of 291 amino acids has a relatively long extracellular region, a single transmembrane segment, and a short (57 amino acids) cytoplasmic domain. With the rat cDNA used as a probe, the prolactin receptor in rabbit mammary gland and human hepatoma cells has also been isolated. These tissues contain a second, longer form of the receptor (592 and 598 amino acids, respectively). Both the short and long forms of the prolactin receptor show regions of strong sequence identity with the human and rabbit growth hormone receptors, suggesting that the prolactin and growth hormone receptors originate from a common ancestor.

Amino Acid Sequence↗

Effects of testosterone on morphology and on progestin and estrogen receptor levels in the mouse uterus and mammary gland.

The effects of androgen on the morphology and levels of cytosolic estrogen and progestin receptors (ER and PR) were studied in the mouse uterus and mammary gland. Testosterone neonatally and/or continuously in the adult lowers ER and PR levels particularly at early ages (40-60 days of age) in both the uterus and mammary gland. At older ages, less prominent changes in ER and PR levels are observed. Neonatal androgen treatment appears to exert both direct effects on the uterus and mammary gland and indirect effects (via the hypothalamo-hypophysio-ovarian axis). At all ages, neonatal testosterone in combination with continuous adult testosterone consistently depressed PR levels in both uterus and mammary gland, indicating that testosterone is a negative modulator of PR in these tissues.

Animals↗

Identification of a cDNA encoding a long form of prolactin receptor in human hepatoma and breast cancer cells.

Human PRL receptor cDNA clones from hepatoma (Hep G2) and breast cancer (T-47D) libraries were isolated by using a rat PRL receptor cDNA probe. The nucleotide sequence predicts a mature protein of 598 amino acids with a much longer cytoplasmic domain than the rat liver PRL receptor. Although this extended region has additional segments of localized sequence identity with the human GH receptor, there is no identity with any consensus sequences known to be involved in hormonal signal transduction. This cDNA will be a valuable tool to better understand the role of PRL in the development and growth of human breast cancer.

Amino Acid Sequence↗

[Prolactin receptor: characterization by monoclonal antibodies and cloning of complementary DNA].

Rat liver prolactin receptor has been partially characterized and purified to homogeneity using monoclonal antibodies. Pure receptor was digested with trypsin and amino acid sequence of receptor fragments determined. This allowed us to clone the prolactin receptor cDNA. Our approach to clone the receptor cDNA consisted of synthesizing oligonucleotides corresponding to the amino acid sequence of receptor fragments, and to screen a cDNA library. Sequencing reveals that prolactin receptor is a 291 amino acid protein, containing an extracellular domain of 210 residues, a single transmembrane segment of 24 amino acids and a cytoplasmic domain of 57 amino acids. Introduction of the prolactin receptor cDNA into various cell types demonstrates that the single protein is sufficient to bind prolactin with the same affinity and specificity reported for the prolactin receptor.

Animals↗

Cloning and expression of the rat prolactin receptor, a member of the growth hormone/prolactin receptor gene family.

The primary structure of the rat liver prolactin receptor has been deduced from a single complementary DNA clone. The sequence begins with a putative 19 amino acid signal peptide followed by the 291 amino acid receptor that includes a single 24 amino acid transmembrane segment. In spite of the fact that the prolactin receptor has a much shorter cytoplasmic region than the growth hormone receptor, there is strong localized sequence identity between these two receptors in both the extracellular and cytoplasmic domains, suggesting that the two receptors originated from a common ancestor.

Amino Acid Sequence↗

The lack of effect of phenol red or estradiol on the growth response of human, rat, and mouse mammary cells in primary culture.

Normal and neoplastic mammary cells from both human and rodent sources grow in culture in response to a number of hormones and growth factors. However, with the exception of a few human tumor lines, a consistent growth-promoting effect of estrogens on mammary cells has not been observed. Mammary cells can be shown to respond to other hormones and factors, such as PRL, hydrocortisone, and epidermal growth factor. Recent observations suggest that the pH indicator dye phenol red, found in most media, may be masking any exogenous estrogenic effects by acting as a weak estrogen. To test this possibility, we reexamined the effects of estradiol (E2) and the antiestrogen keoxifene on the growth of normal human, mouse, and rat mammary cells in the absence of phenol red. Primary cultures of these mammary cells were grown within a rat tail collagen gel matrix in a serum-free medium made up of Ham's F-12 and Dulbecco's Modified Eagles' medium (1:1) with and without phenol red. The medium was supplemented with various hormones and growth factors. These supplements were selected for each cell type to produce a variety of conditions from nongrowing to rapidly growing. The effects of E2 (10(-10)-10(-8) M, keoxifene (10(-9)-10(-6) M), and phenol red on growth under these various conditions were examined. Phenol red had no effect on growth, and its absence did not restore a response to E2. Keoxifene, in the presence or absence of E2, also had no effect on growth. Although E2 had no effect on growth, it was able to induce a 150% increase in the progesterone receptor levels in normal mouse mammary cells in culture, indicating that the cells retain their capacity to respond to E2. This work supports the idea that the effect of estrogens on growth in vivo may be mediated through some other factor(s).

Animals↗

Long-term alterations in histology and steroid receptor levels of the genital tract and mammary gland following neonatal exposure of female BALB/cCrgl mice to various doses of diethylstilbestrol.

The relation of the dosage of diethylstilbestrol (DES) administered neonatally to the incidence and severity of genital tract and mammary gland lesions and to the levels of sex hormone receptors was examined using a mouse model for human intrauterine DES exposure. Female BALB/cCrgl mice received various doses of DES (ranging from 5 X 10(-1)-10(-5) micrograms daily for the first 5 days of life) or the sesame oil vehicle alone. In the vagina, at all ages examined (1, 2, 6, and 12 months) cytosolic estrogen receptors are consistently decreased after high doses of neonatal DES (10(-1) and 1 microgram). In contrast, at the same ages, vaginal cytosolic progestin receptors increase after identical doses. In the uterus, the 1-microgram dose of neonatal DES also consistently decreases cytosolic estrogen receptors while increasing cytosolic progestin receptors at 1, 2, and 6 months of age. Histologically, neonatal doses of 5 X 10(-2) micrograms DES result in vaginal lesions at 2 months. With age, this threshold level decreases, implying interaction with an altered hormonal milieu. The uterus shows a sensitivity similar to that of the vagina in regard to the histopathological effects of neonatal DES. The ovary and mammary glands are 10- to 100-fold more sensitive to neonatal DES exposure.

Age Factors↗

Growth of mouse vaginal epithelial cells in culture: functional integrity of the estrogen receptor system and failure of estrogen to induce proliferation.

Normal mouse vaginal epithelial cells isolated from ovariectomized ca. 40-day-old BALB/cCrg1 mice were purified by Percoll density gradient centrifugation and grown in primary culture using a collagen gel matrix and a serum-free complete medium. During the 9-day culture period, a 6-fold increase in cell number was observed. Addition of estrogen to the medium did not enhance epithelial cell proliferation. In fact, all doses of estrogen (180 fM to 18 nM) were inhibitory, resulting in only a 3- to 4-fold increase in cell number by day 9 of culture. Continuous exposure to estradiol (1.8 nM) for 9 days in the serum-free complete medium resulted in a decrease in cytosolic estrogen receptors with associated nuclear accumulation of estrogen receptors. A corresponding increase of cytosolic progestin receptors was also observed, indicating that no qualitative modification of the estrogen receptor system had occurred. Thus, despite its effectiveness in specific product synthesis (progestin receptors), estrogen does not stimulate proliferation of vaginal cells in this culture system, but rather inhibits epithelial cell proliferation.

Animals↗

The human insulin receptor cDNA: a new tool to study the function of this receptor.

The human insulin receptor (hIR) is an integral transmembrane glycoprotein comprised of two alpha and two beta subunits. An immediate consequence of insulin binding to the extracellular alpha subunit is the autophosphorylation of tyrosine residues on the intracellular domain of the beta subunit. The placental hIR cDNA has been cloned and sequenced, providing the primary structural features of the protein. In order to investigate the functions of the beta subunit and particularly the role of autophosphorylation and tyrosine phosphokinase (TPK) activity (a feature shared by other receptors and oncogene proteins) in transmembrane signalling, we designed an expression system of the hIR cDNA in eucaryotic cells. Superexpressing CHO cell lines that contain about 10(6) functional hIR/cell have been developed. In these cells half maximum stimulation of glucose uptake occurs at 5 X 10(-10)M insulin, whereas normal CHO cells require 5 X 10(-12)M insulin. In this expression system we have carried out site-directed mutagenesis experiments in which domains of the molecule have been deleted or particular amino acids have been replaced by others. The replacement of either or both the tyrosine residues 1162 and 1163 compromise an autophosphorylated site that is important for kinase function and the insulin response. Expression of an isolated membrane-bound form of the beta-subunit produces a 6 fold increase in glucose uptake. This insulin-independent effect disappears if the twin tyrosines are mutated or if the beta subunit is expressed in the cytoplasm. These studies also show that the C terminal 112 amino acid portion of the beta subunit is important for the stability of this protein.

Amino Acid Sequence↗

Replacement of insulin receptor tyrosine residues 1162 and 1163 compromises insulin-stimulated kinase activity and uptake of 2-deoxyglucose.

Insulin stimulates the autophosphorylation of tyrosine residues of the beta subunit of the insulin receptor (IR); this modified insulin-independent kinase has increased activity toward exogenous substrates in vitro. We show here that replacement of one or both of the twin tyrosines (residues 1162 and 1163) with phenylalanine results in a dramatic reduction in or loss of insulin-activated autophosphorylation and kinase activity in vitro. In vivo, these mutations not only result in a substantial decrease in insulin-stimulated IR autophosphorylation but also in a parallel decrease in the insulin-activated uptake of 2-deoxyglucose. Furthermore, a truncated IR protein (lacking the last 112 amino acids) has an unstable beta subunit; this mutant has no kinase activity in vitro or in vivo and does not mediate insulin-stimulated uptake of 2-deoxyglucose. IR autophosphorylation is thus implicated in the regulation of IR activities, with tyrosines 1162 and 1163 as major sites of this regulation.

Amino Acid Sequence↗

Effect of hormones and epidermal growth factor on the growth of the hormone-responsive 13762NF rat mammary tumor in collagen gel culture.

The hormone-responsive mammary tumor 13762NF of the F344 rat was cultured in a collagen gel matrix with the use of a serum-free medium supplemented with hormones and epidermal growth factor (EGF). Hydrocortisone (F) had the greatest effect on cell growth. EGF had no growth-promoting activity when used alone, but it had a significant effect when used with F. There was also a population of cells responsive to progesterone (P) and prolactin (PRL). P synergized with EGF as well as with PRL to promote growth. 17 beta-Estradiol alone or in combination with other hormones had no growth-promoting activity. Receptor levels in the tumor were high for glucocorticoids, intermediate for P and EGF, and low for estrogens. Metastasis in the lung and lymph node showed the same basic hormonal responses as the parent tumor. Cultured cells produced tumors with the same histopathology as the parent tumor when transplanted back into female rats; they had the same receptor levels and when placed back in culture showed a growth response to the same set of hormones. The tumor cells formed colonies that were spherical, which was different from the branching structures formed by normal mammary cells in collagen gel.

Animals↗

Mechanisms of receptor-mediated transmembrane communication.

Our experiments with the hIR protein have been designed to address a very general question of transmembrane receptor structure and function: What are the roles and interactions of the various deduced structural domains of such molecules in the initiation of the response of cells to extracellular signals? All of the evidence to date supports the previous hypothesis based on biochemical data that the IR requires ligand-activated TPK functions to initiate the insulin response by cells (for review, see Kahn 1985). Thus, mutations that compromise hIR TPK activity (site-directed point mutations or deletions) result in a concomitant decrease in at least one aspect of insulin action (glucose uptake; Ellis et al. 1986a). Other studies utilizing microinjection of antibodies to inhibit the receptor kinase have extended this conclusion to include a critical role for the receptor kinase in insulin's ability to stimulate ribosomal protein S6 phosphorylation in CHO cells, glycogen synthetase in hepatoma cells, glucose uptake in adipocytes (Morgan and Roth 1987), and frog oocyte maturation (Morgan et al. 1986). Second, analyses of cell lines that express experimentally truncated hIR TPKs demonstrate that, when membrane-anchored, this TPK domain is in fact capable of autonomous hormone-independent IR function: Such cells exhibit a constitutively elevated, insulin-independent uptake of 2-deoxyglucose (Ellis et al. 1987). Finally, by substitution of a homologous TPK for that of hIR, we find that although such a hybrid is capable of insulin-dependent transmembrane signaling (phosphorylation of the hybrid beta-subunit on tyrosine residues), the hybrid IR.ros molecule does not function as an IR in such cells: It mediates neither short-term (uptake of 2-deoxyglucose) nor long-term (incorporation of [3H]thymidine) effects of insulin (L. Ellis et al., in prep.). Together, these results suggest that (1) the hIR TPK domain conveys a substrate specificity for the insulin response and (2) that a functional hIR extracellular domain alone is not sufficient for generation of the insulin response (e.g., ligand-induced aggregation, or simple delivery of insulin into the cell). With the linking of the extracellular and cytoplasmic domains of the hIR molecule has evolved a cellular mechanism for the control of hIR TPK activity; the result is that cells which express the IR are now insulin responsive, and the physiological responses associated with the hormone are ligand-activated. Thus, the uncontrolled state of autonomous TPK activity, with the associated constitutive physiological response (e.g., as exhibited by the spBam hIR mutant), is circumvented.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Heterogeneity in the hormonal responsiveness of clones derived from the 13762NF rat mammary tumor.

The transplantable hormone-responsive rat mammary adenocarcinoma 13762NF was dissociated with collagenase and hyaluronidase. Cells were cloned directly or lines were established from mass cultures and cells from these lines were cloned. Clones differed in cellular morphology, colony morphology on plastic or in collagen gel, growth rate, growth response to hormones, and hormone receptor levels. Growth response to prolactin, estradiol, progesterone, cortisol, and epidermal growth factor (EGF) was determined by culturing the cells within collagen gel and using a serum-free medium base of DME/F12 (1:1) with insulin, linoleic acid, and BSA. The clones varied in their hormone responses, with all 20 of the clones tested responding to cortisol in combination with EGF. Some clones would respond to EGF, cortisol, or progesterone when used alone. None of the clones tested could be stimulated by prolactin or estradiol. Receptor levels for estradiol, progesterone, glucocorticoids, and EGF were assessed in 3 selected clones differing in their hormone responsiveness. Receptor levels appeared to correlate with hormonal sensitivity. Selected clones transplanted into female F344 rats produced carcinomas with histopathologies similar to the original tumor.

Adenocarcinoma↗