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T Barka

Publications and source records attributed to T Barka.

At least 37 records · Page 2Linked to original sources

Immunocytochemical localization of a developmentally regulated, isoproterenol-inducible protein (LM protein) in rat submandibular gland.

Administration of the beta-adrenergic drug isoproterenol (IPR) produces hyperplastic and hypertrophic enlargements of the submandibular gland of the rat and induces the synthesis of specific proteins in this organ. One of these proteins, the LM (large mobile) protein, was demonstrated immunocytochemically in the submandibular glands of developing untreated and IPR-treated rats. Immunoreactive LM protein was absent in the glands of 20-day-old fetuses and 1- and 2-day-old rats. It was localized in the proacinar and immature acinar cells in the glands of 6- to 21-day-old animals, but it was undetectable at 28 days of age. In the glands of adult rats, secretory granules of the granular convoluted tubule cells showed immunostaining for the LM protein which was also present in trace amounts in the acinar cells. Daily administration of IPR for 5 days to newborn or 8- or 15-day-old rats caused an apparent acceleration of proacinar/acinar cell differentiation, and consequently it increased the frequency of cells immunostained for the LM protein as well as the amount of immunoreactive material in these cells. Thus, the expression of LM protein in the submandibular gland is developmentally regulated, and it is restricted to the stage of differentiation of proacinar cells from terminal tubule cells. IPR is capable of inducing this protein in fully differentiated acinar cells in 3-week-old or older animals.

Animals↗

Induction of a specific (LM) protein in the submandibular gland of the rat by repeated amputation of the lower incisor teeth.

Chronic administration of the beta-adrenergic agonist isoproterenol (IPR) leads to marked hyperplastic/hypertrophic enlargements of the parotid and submandibular glands in rats and mice with concomitant changes in the composition of both the glands and the saliva. Conspicuous among the alterations of the submandibular saliva is the appearance of a 13,000 Mr protein, termed LM (large mobile) protein. Repeated amputation of the lower incisor teeth also causes enlargements of the major salivary glands in rats. In this study, we have compared the enlargements of submandibular glands of rats produced by IPR administration or teeth amputation with respect to the relative levels of the LM protein in gland extracts and saliva. Administration of IPR-HCl (40 mg/kg) twice daily for 5 days or amputation of the lower incisor teeth 3 times a week for 3 weeks resulted in a 2.2-fold increase in the weight of the submandibular gland. Amputation for one week led to a 1.4-fold increase in gland weight. Double immunodiffusion in agar antibodies against the purified LM protein gave a single precipitin line with gland extracts and saliva of IPR-treated and teeth-amputated rats, indicating immunological identity of the reacting antigens. No precipitin lines were seen with gland extracts or saliva of untreated rats. Immunoblots of pooled saliva obtained from IPR-treated or teeth-amputated rats revealed a single protein band of the same electrophoretic mobility in SDS-polyacrylamide gels when stained using anti-LM antibodies. The relative concentrations of LM protein in gland extracts and saliva were measured by a solid-phase enzyme-linked immunoabsorption assay using antibodies against the purified LM protein.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Beta-adrenergic stimulation of c-fos gene expression in the mouse submandibular gland.

Isoproterenol (IPR), a beta-adrenergic agonist, induces division of acinar cells in the parotid and submandibular glands of adult rodents and produces hyperplastic and hypertrophic enlargements of these organs. We analyzed the effects of IPR on thymidine incorporation, c-fos mRNA levels, and the immunocytochemical localization of c-fos protein in the submandibular glands of adult and of 5- and 14-day-old mice. In the glands of untreated mice c-fos transcripts were not detectable. In all experimental groups, administration of IPR led to a rapid, transient increase in the c-fos mRNA level. Propranolol blocked the IPR effect, while treatment with IPR and cycloheximide led to superinduction. We observed no correlation between the effect of IPR on cell replication or organ growth and stimulation of c-fos expression, and conclude that the latter is the result of beta-adrenergic receptor-IPR interaction. The c-fos protein was localized immunocytochemically in both the cytoplasm and the nuclei of acinar cells and in the nuclei of duct cells.

Animals↗

Epidermal growth factor gene expression is regulated differently in mouse kidney and submandibular gland.

The concentration of the peptide mitogen epidermal growth factor (EGF) is hormonally and developmentally regulated in the granular convoluted tubule cells of the mouse submandibular gland. Using a labeled EGF nucleic acid probe, we have demonstrated that submandibular gland EGF mRNA concentrations increase during postnatal development of the gland and after the administration of testosterone or thyroid hormone. Recently, it was reported that EGF mRNA is present in kidney as well as a number of other mouse tissues. A comparison of EGF gene regulation in submandibular gland and kidney revealed that kidney EGF mRNA levels also increase during the postnatal period. Opposite sex differences were observed, with submandibular gland levels being about 16-fold higher in the male than in the female and kidney levels being 2- to 4-fold higher in the female than in the male. Renal EGF mRNA concentrations are less responsive to hormones than those in the submandibular gland. Renal EGF was localized immunocytochemically to the cells of distal convoluted tubules.

Adrenalectomy↗

Induction of the synthesis of a specific protein in rat submandibular gland by isoproterenol.

Prolonged treatment of rats with the beta-adrenergic agonist, isoproterenol (IPR), produces hypertrophy and hyperplasia of the parotid and submandibular glands. The drug induces the synthesis of several secretory proteins that are absent or occur at very low concentrations in the gland or saliva of the untreated rat. We have measured the relative concentrations of one of these proteins (termed "large mobile" (LM) protein, Menaker et al. (1974) Lab. Invest. 30, 341-349) by using a solid phase enzyme-linked immunoabsorption assay. LM protein was not measurable in gland extracts of 20-day-old fetuses or 2-day-old rats. Its concentration was very low in the glands of 6- and 13-day-old and adult rats. Administration of IPR for 4 to 7 days to adult or 6-day old rats increased the levels of the LM protein by 20 to 25-fold. The LM protein was localized immunocytochemically primarily in the acinar cells in the glands of control and IPR-treated adult rats. In vitro translation studies using a mRNA-dependent reticulocyte lysate system and labeling with [35S]methionine showed: little synthesis of pro-LM from poly(A+) RNA from glands of adult rats and none from 13-day-old animals, and that, in comparison, poly(A+) RNA from glands of adult or 13-day-old IPR-treated rats directed the synthesis of a much greater concentration of pro-LM. The in vitro precursor of the LM protein migrated electrophoretically as a single band in anti-LM immunoprecipitates, and had a molecular weight of 14,000. The LM protein, which appears to be a single, unique polypeptide induced by IPR in the submandibular glands of developing and adult rats, will be useful in studies examining the effects of catecholamine beta-agonists on gene expression in an exocrine cell.

Animals↗

In situ localization of mRNA for epidermal growth factor in the submandibular gland of the mouse.

Epidermal growth factor (EGF) is a polypeptide originally isolated from the mouse submandibular gland, where it is localized immunocytochemically in cells of the granular convoluted tubules (GCT). cDNAs encoding the precursor of mouse submandibular EGF have been cloned (Scott et al. Science 221:236, 1983; Gray et al. Nature 303:722, 1983). A fragment of one of these clones, pmegf10, containing the EGF coding region, was tritium-labeled by nick-translation and used as a probe for in situ hybridization to EGF mRNA. A specific hybridization signal for EGF mRNA was seen only in mature or developing GCT cells. The intensity of the signal was stronger in glands of intact males than in females or in castrated males. In glands of castrates treated with testosterone, or of intact females treated with triiodothyronine (T3), the signal was comparable to that in intact males. In glands of males treated with T3 the intensity of the signal was stronger than in untreated males. A weak to moderate signal was seen in developing GCT cells of 20-day-old males but not females. Hybridization for 3 days gave a stronger signal than that for 1 day. No signal was seen in either sex at 10 days of age, or in control preparations exposed to labeled DNA of pBR322. The presence of EGF mRNA exclusively in GCT cells provides strong evidence that these cells are the only site of synthesis of EGF in the submandibular gland. In situ hybridization with this cDNA probe will provide a sensitive method to determine possible cellular sites of EGF production outside of the submandibular gland.

Animals↗

Monoclonal antibodies against rat saliva and salivary gland antigens.

Hybridomas were produced by the fusion of NS1 myeloma cells with spleen cells of a BALB/c mouse immunized with rat submandibular saliva. Growth of hybridomas was evident in 60/96 wells, and colonies secreting antibodies against saliva components were identified in 20 wells by using a solid phase enzyme-linked immunoassay. Cloning of cells from 12 wells yielded originally 43 hybridoma cell lines secreting anti-saliva antibodies. After recloning, one hybridoma (4Cl3) was selected for further studies. The hybridoma (4Cl3) cells were grown as ascites tumors, and the antibodies were purified from the ascitic fluid by diethylaminoethyl Affi-gel Blue chromatography. The purified antibody (MA4), immunoglobulin G1, immunoprecipitated a 39K dalton protein from submandibular saliva, and also reacted with a protein of the same electrophoretic mobility on immunoblots. From extracts of submandibular gland slices, incubated with [3H]leucine, the antibody again immunoprecipitated a 39K protein, indicating that this protein is synthesized in the gland. MA4 was used for immunocytochemical stainings of submandibular glands of rats of different ages. In general, immunostaining was seen only in acinar cells. Thus, there was no staining in the glands of 1-day-old rats that lack differentiated acinar cells. In the glands of 1- to 4-week-old rats the number of immunoreactive cells and the extent of immunostaining paralleled the differentiation of the acinar cells. In the glands of adult rats a uniform staining of the secretory granules of the acinar cells was observed. The immunoreactive 39K protein seemed to be restricted to the acinar cells in the submandibular gland; there was no immunostaining in the parotid, sublingual, or lingual salivary glands, or in the pancreas, colon, and duodenum. Stimulation of saliva secretion by isoproterenol resulted in a virtual depletion of the antigen from the acinar cells. These results indicate the feasibility of producing mouse hybridomas that secrete antibodies against rat saliva components. The monoclonal antibody at hand will be useful in analyzing the differentiation of the acinar cells, and the factors that influence this differentiation process.

Aging↗

Histochemical localization of ouabain-sensitive, K+-dependent p-nitrophenylphosphatase (Na+-K+-ATPase) activity in the submandibular gland of the mouse: effect of androgen, thyroid hormone, or postnatal age.

Ouabain-sensitive Na+-K+-ATPase activity was localized histochemically in the submandibular gland of the mouse under various conditions using p-nitrophenylphosphate as substrate at pH 9. In untreated adult males and females, intense staining was seen in the basally striated portions of the epithelial cells lining the excretory and striated ducts. The region of the lateral cell membranes, but not of the apical plasmalemma, also stained. In granular convoluted tubules (GCTs), strong staining was seen only in a narrow band of the basalmost region of the cells; in males this stained region was thinner than in females, and frequently was absent. The baso-lateral margins of acinar and intercalated duct cells gave a very weak reaction. In untreated males, or in females that were treated with dihydrotestosterone, overall staining for the enzyme was always less than in untreated females, due to the diminished reactivity of androgen-stimulated GCT cells and the decreased number of striated ducts. However, in females treated with triiodothyronine, enhanced activity of Na+-K+-ATPase was indicated by stronger staining in all cell types, including the hypertrophied GCT cells. Na+-K+-ATPase activity was undetected in the submandibular glands at birth, but moderate staining was seen in the larger excretory and striated ducts by 5 days of age. From 10 days of age onward, intense staining was seen in the excretory and striated portions of the ramifying duct system. Developing GCT cells could not be distinguished from their precursor cells in the striated ducts until 25 days of age. These data indicate that the salt-handling capacity of the submandibular gland of the mouse varies with both endocrine status and age.

Aging↗

Transport of 125I-EGF into milk and effect of sialoadenectomy on milk EGF in mice.

Epidermal growth factor (EGF) (urogastrone) is found in high concentrations in mouse and human milk. The origin of milk EGF is unknown. Milk samples were collected from lactating mice 2-6 h after the intravenous administration of a tracer dose of 125I-labeled EGF. The milk contained relatively high levels of radioactivity of which 35-46% was precipitated by trichloroacetic acid-phosphotungstic acid (TCA-PTA) and 26% by a specific antimouse EGF antiserum. Part of the radioactivity in milk was eluted from a Bio-Gel P-10 column at the point at which pure standard 125I-EGF was eluted. These data indicate that the mammary gland of the lactating mouse is capable of sequestering and transporting 125I-EGF into milk. Administration of a thousand-fold excess of unlabeled EGF caused no reduction in TCA-PTA-precipitable radioactivity in milk samples of mice given 125I-EGF. When mice were given 10 micrograms of unlabeled EGF and milk was collected 4 h later, compared with controls the EGF level in milk was doubled. Administration of EGF had no effect on lactose and protein concentrations in the milk, and sodium dodecyl sulfate-polyacrylamide gel electrophoresis revealed no qualitative or quantitative changes in the major milk proteins. Milk collected from lactating mice that were sialoadenectomized 6 mo earlier contained about 50% less EGF compared with controls. After the administration of 125I-EGF high concentrations of radioactivity were also found in the mammary and submandibular glands and in the stomach. In the latter organs, however, 95-96% of the radioactivity was in the acid-soluble fraction.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Epidermal growth factor, renin, and protease in hormonally responsive duct cells of the mouse sublingual gland.

In the striated ducts of the sublingual glands of normal adult male, but not female, Swiss-Webster mice a few scattered cells have apical secretion granules. These sublingual duct cells resemble the granular convoluted tubule (GCT) cells of the submandibular glands of adult female mice, in that they are smaller than submandibular GCT cells of adult males, and contain fewer apical granules, and prominent basal striations. These cells stain immunocytochemically for epidermal growth factor (EGF), renin, and protease A. Such granular striated duct cells could be induced in the sublingual glands of adult female mice by treatment with either testosterone propionate or thyroxine; the two hormones given simultaneously acted synergistically in this induction.

Animals↗

Culture of A-431 human epidermoid carcinoma cells in serum-free medium: effect of culture conditions on the binding of [125I]-epidermal growth factor.

Serum-free culture conditions that permit the continuous growth of A-431 human epidermoid carcinoma cells were developed. In Dulbecco's modified Eagle's synthetic nutritional medium (DME) supplemented with fetuin, insulin, transferrin, biotin, and oleic acid-fatty acid-free bovine serum albumin complex A-431 cells grew at a rate comparable to that observed in the presence of calf or fetal calf serum. Of the factors tested, oleic acid had the most pronounced stimulatory effect on the growth and [3H]-thymidine incorporation of A-431 cells in serum-free medium. A-431 cells have a high number of receptors for epidermal growth factor (EGF); they bind and rapidly internalize EGF. Nevertheless, EGF did not stimulate either the growth or the [3H]-thymidine incorporation of these cells. Analyses of [125I]-EGF binding data indicated that A-431 cells grown in the presence of calf serum had about 3.2-3.9 X 10(6) specific, saturable EGF receptor sites on their surface. Linear Scatchard plots indicated a single class of noninteracting receptors with an apparent equilibrium dissociation constant of about 2.8 X 10(-9) M. The average number of receptors of A-431 cells maintained in DME supplemented with only fetuin, insulin, and transferrin for several months was significantly less, 1.54 X 10(6), than that of A-431 stock cells cultured in the same medium for 2 days only (2.68 X 10(6)). The apparent dissociation constants for the same cell populations were, however, similar, 4.5 X 10(-9) M and 4.1 X 10(-9) M, respectively. Stimulation of growth by oleic acid resulted in about 20% decrease in the average number of receptor sites, with an increase in the apparent equilibrium dissociation constant.

Biotin↗

Effects of isoproterenol on mammary gland tumors induced by N-nitroso-N-methylurea and salivary gland tumors induced by 7,12-dimethylbenz[a]anthracene.

The effect of isoproterenol (IPR) (20 mg/kg, twice per wk) on mammary gland tumors induced by N-nitroso-N-methylurea (NMU) (40 or 77 mg/kg, iv) was studied. Within 18 weeks 50--60% of the noninbred female Sprague-Dawley rats that received a single injection of NMU developed carcinomas of the mammary gland. In addition, a malignant lymphoma was observed. There was no change in the incidence of tumors if NMU was administered at the time that DNA synthesis was stimulated in the submandibular glands by two injections of IPR (160 mg/kg, ip) given 24 hours apart. Tumors of unequivocal salivary gland origin were not observed, irrespective of whether NMU was given at the peak of stimulated DNA synthesis or without pretreatment with IPR. However, in 10% of the tumor-bearing rats, tumors were found in the neck region. These tumors could be separated from the salivary glands by dissection and were of mammary gland origin. Chronic treatment with IPR caused marked enlargements of the parotid and submandibular glands with hypertrophy of the acinar cells and degeneration of the duct system. Such a treatment caused a high death rate but no change in the incidence of the tumors. The effect of chronic IPR treatment (10 mg/kg twice per wk or 5 mg/kg three times per wk) on submandibular gland tumors induced by 7,12-dimethylbenz[a]anthracene (DMBA) was also studied. With the intraglandular injection of 100 or 200 micrograms of DMBA, the incidences of squamous cell carcinomas in the glands were 6.8 and 38.6%, respectively. Chronic administration of IPR after the instillation of DMBA caused a high death rate but no statistically significant change in the incidence of salivary gland tumors.

9,10-Dimethyl-1,2-benzanthracene↗

Epidermal growth factor in the submandibular glands of inbred mice.

Epidermal growth factor (EGF), and androgen-dependent polypeptide, occurs in high concentration in male mouse submandibular gland. Glands of adult male and female mice of six inbred strains (129/J, C57BL/6J, C58/J, SWR/J, RF/J, A/J) were assayed for EGF by radioimmunoassay. In all strains, the glands of males contained 30 to 500-fold more EGF than those of females. Furthermore, significant differences in EGF content were found among the various strains in both sexes, the highest amount of EGF was present in RF/J and the lowest in C57BL/6J, with a ratio of three in the males and four in the females of the two strains, respectively. Factors that effect EGF levels were analyzed further, using these two strains. EGF was measurable in the glands of mice of both strains at 21 days of age and increased rapidly thereafter, up to 14 weeks of age. Throughout postnatal development, the level of EGF was greater in the glands of RF/J mice than in those of the C57BL/6J animals. Thirty days after castration, the EGF levels were reduced by about 98% in both strains, but the strain difference was not abolished. Testosterone implants (1 mg in Silastic tube) in castrated mice induced EGF levels six- to ten-fold compared to castrates. Even in induced animals, which had similar plasma testosterone levels, as measured by radioimmunoassays, the difference in EGF levels between the two strains was manifest. Such a difference, however, was not seen after the daily administration of 5-alpha-dihydrotestosterone for 3-14 days. Immunocytochemical straining for EGF also indicated a higher concentration of the polypeptide in the glands of RF/J mice than in those of C57BL/6J animals, and confirmed the exclusive localization of EGF in the cells of the granular convoluted tubules (GCT). According to our morphometric analysis, in the glands of male RF/J mice the GCT compartment occupied a greater portion (8% greater, P less than 0.001) of the gland volume than in C57BL/6J mice. The difference in the relative GCT volumes in the glands of female mice of the two strains was, however, statistically not significant. There was no direct correlation between the amount of EGF and the relative volume of the GCTs in the two strains. The evidence obtained implies that strain difference in submandibular-gland EGF levels are determined genetically.

Aging↗

Hypertrophic and hyperplastic effects of thyroxine on the submandibular gland of the mouse.

The nature of the trophic response of the mouse submandibular gland to thyroxine (T4) was examined. Adult female Swiss-Webster mice were given daily subcutaneous injections of T4 (1 microgram/gm body weight) for two or four days; two injections of tritiated thymidine (3H-TdR) were given 24 and 29 hours after the last injection of hormone, and the mice were killed one hour after the last injection of 3H-TdR. One gland was analyzed chemically for DNA content and for incorporation of 3H-TdR, while the other was used to prepare autoradiograms. The cellular composition of each gland was analyzed by counting 1000 nuclei, and the frequency and labelling index (LI) of six cell types were established. A rise in specific activity of DNA and a fall in its concentration were seen in response to T4. The LI for the entire gland more than doubled. The LIs and frequencies of granular convoluted tubule and granular intercalated duct cells were increased more than those of acinar and nongranular intercalated duct cells; striated and excretory duct cells were not affected. It is concluded that the enlargement of the submandibular gland of the mouse caused by T4 is due to both hyperplastic and hypertrophic effects.

Animals↗

Immunocytochemical localization of amylase in the parotid gland of developing and adult rats.

An antiserum against purified rat parotid amylase was used to localize the protein in parotid glands of developing and adult rats. The unlabeled antibody peroxidase-antiperoxidase method and the protein A-gold colloid technique were used at the light and electron microscope levels, respectively. Immunoreactive amylase was detected in a few scattered cells in the glands of 2-day-old rats. During the following days the number of cells stained immunocytochemically for amylase increased rapidly; at 15 days of age all acinar cells revealed amylase, but the intensity of immunostaining varied from cell to cell. Electron microscopically, amylase was localized in the secretory granules, and by using a more concentrated antiserum, in the rough endoplasmic reticulum and Golgi complex. At early stages of development the acinar cells contained fewer and smaller secretory granules than in adult animals; the gold particles indicative of amylase were randomly distributed over the secretory granules. In the glands of adult rats, amylase was distributed inhomogeneously within the secretory granules. In the majority of secretory granules gold colloid particles were located over the electron-dense portions of the granules. However, secretory granules in which an amylase-rich shell surrounded an amylase-poor or amylase-negative "core" were not infrequent.

Aging↗