The inappropriate activation of one or more members of the ErbB family of receptor tyrosine kinases [ErbB-1 (EGFR), ErbB-2, ErbB-3, ErbB-4] has been linked with oncogenesis. ErbB-2 is frequently coexpressed with ErbB-3 in breast cancer cells and in the presence of the ligand heregulin (HRG) the ErbB-2/ErbB-3 receptors form a signaling heterodimer that can affect cell proliferation and apoptosis. The major goal of the present study was to determine whether endogenous HRG causes autocrine/paracrine activation of ErbB-2/ErbB-3 and contributes to the proliferation of mammary epithelial tumor cells. Tyrosine-phosphorylated (activated) ErbB-2 and ErbB-3 receptors were detected in the majority of extracts from tumors that had formed spontaneously or as a result of oncogene expression. HRG-1 transcripts and protein were found in the epithelial cells of most of these mouse mammary tumors. Various mouse mammary cell lines also contained activated ErbB-2/ErbB-3 and HRG transcripts. A approximately 50 kDa C-terminal fragment of pro-HRG was detected, which indicates that the HRG-1 precursor is readily processed by these cells. It is likely that the secreted mature HRG activated the ErbB-2/3 receptors. Addition of an antiserum against HRG to the mammary epithelial tumor cell line TM-6 reduced ErbB-3 Tyr-phosphorylation. Treatment with HRG-1 siRNA oligonucleotides or infection with a retroviral construct to stably express HRG siRNA effectively reduced HRG protein levels, ErbB-2/ErbB-3 activation, and the rate of proliferation, which could be reversed by the addition of HRG. The cumulative findings from these experiments show that coexpression of the HRG ligand contributes to activation of ErbB-2/Erb-3 in mouse mammary tumor cells in an autocrine or paracrine fashion.
The hormonal stimulation of mammary gland morphogenesis is believed to occur through growth factor receptor signaling pathways. To determine the importance of the epidermal growth factor receptor (EGFR) pathway, we examined extracts of inguinal mammary glands from prepubertal and pubertal mice for tyrosine-phosphorylated EGFR and other erbB receptors. Tyrosine phosphorylation of both EGFR and erbB-2 was detected in normal female BALB/c mice at 5-6 weeks of age, but not during the prepubertal stage, e.g., 24 days of age. Treatment of mice with estradiol or epidermal growth factor also stimulated the formation of mammary EGFR/erbB-2 phosphotyrosine. Waved-2 mice, which have impaired EGFR kinase activity, exhibited less mammary development than did wild-type (wt) mice when both were evaluated at 36 days of age. Because EGFR knockout (KO) mice die shortly after birth, glands from the newborns were implanted under the renal capsules of female nude mice. Under these conditions, extensive ductal growth was observed in mammary glands from wt animals; in contrast, glands from EGFR KO mice failed to grow beyond rudimentary structures. Tissue recombinants revealed that the wt fat pad supported the morphogenesis of EGFR KO epithelium, whereas the EGFR KO fat pad did not. Taken together, these data suggest that EGFR is essential for morphogenesis of the mammary ducts and functions during this period of mammary development as a heterodimer with erbB-2 in the mammary stroma.
There is a disparity in the fact that epidermal growth factor (EGF) can stimulate proliferation of a wide variety of cells in vitro, yet sites of synthesis for this polypeptide in vivo are generally associated with nonproliferative or differentiated cell populations. Unlike other known mitogenic members of the EGF family of ligands, EGF derives from a large (M(r) approximately 130,000) protein that contains multiple EGF-like domains; some of these domains contain putative Ca(2+)-binding sites. In the present study, the mouse vaginal epithelium was used as a prototype tissue to investigate expression of the EGF precursor by stratified squamous epithelia. Stratification and cornification in this tissue are estrogen dependent. In the fully differentiated epithelium, EGF precursor transcripts were detected by in situ hybridization in suprabasal cells; labeling was not observed in the proliferative basal cell compartment. Amplified transcripts of predicted size were detected in the vaginal organ by the reverse transcription-polymerase chain reaction and Northern hybridization of polyadenylated RNA. Antisera to mature EGF or to the COOH-terminal (cytoplasmic) domain of the precursor localized reactivity exclusively to cells of the granular layer. The staining with the precursor antiserum was localized along cell borders, which supports that this protein is translocated to the cell membrane following synthesis, a known property for precursors of EGF-like ligands. EGF expression was not apparent in the atrophic vaginal epithelium of castrates, which did not present a granular layer. Other stratified squamous epithelia in organs such as skin, esophagus, and tongue also revealed EGF/EGF precursor immunoreactivity in the granular layer.(ABSTRACT TRUNCATED AT 250 WORDS)
Kallikreins are a multigene subfamily of serine proteases that may have a role in processing precursors of polypeptide hormones and growth factors. The epidermal growth factor (EGF) immunoreactivity in mouse milk is derived from the membrane-bound EGF precursor located on the lumenal border of the alveolar cells in the mammary gland. Release of EGF into the milk requires the hydrolysis of the EGF precursor at Arg-X cleavage sites. We report the presence of a candidate EGF precursor-processing enzyme in the lactating mouse mammary gland. Kallikrein transcripts in the mouse lactating mammary gland were detected by primer-directed enzyme amplification of complementary DNA (cDNA). Primers to selected conserved regions of the kallikrein cDNA resulted in an amplified product of the predicted size (573 basepairs). Sequence analysis of the product over three nonconserved regions identified mGK-6 (mouse renal kallikrein) as the primary kallikrein in BALB/c mouse lactating mammary gland. Transcription products for the EGF-binding protein (mGK-9), mGK-1, MGK-3, and mGK-4 were not detected by enzyme amplification with specific primers corresponding to these kallikrein cDNAs. Positive immunohistochemical staining of the apical membrane of mammary alveolar cells was detected with a polyclonal antiserum to mouse kallikrein. Incubation of cell membranes isolated from lactating mammary glands released soluble EGF-immunoreactive material. Aprotinin partially inhibited the release of this material, whereas other protease inhibitors, such as leupeptin, benzamidine, and limabean trypsin inhibitor, had no detectable effect. These results support the hypothesis that the release of EGF-immunoreactive material into the milk is in part dependent upon a kallikrein enzyme (mGK-6) in the BALB/c mouse lactating mammary gland.
Identification of DNA adducts in peripheral lymphocytes could serve as a means of monitoring human exposure to potential genotoxic agents. In this study, DNA from peripheral lymphocytes of smokers and nonsmokers was examined for adducts by the P1 nuclease 32P-postlabeling technique. Thin layer chromatography (TLC) maps from both groups revealed multiple DNA adducts which ranged from no adducts for one individual to six adducts for a different individual. The total DNA adduct concentrations were approximately one adduct in 10(8)-10(10) normal nucleotides. Comparison of the adduct TLC profiles revealed individual variation in both pattern and level of DNA adducts. The type and amount of adduct was not influenced by smoking history and remained unchanged in four out of six subjects who were resampled after a 1 month interval. The capacity of lymphocytes to form BaP-derived DNA adducts after a 72 h incubation with 10(-6) M [3H]BaP was measured by both high-performance liquid chromatography (HPLC) and 32P-postlabeling analysis. The in vitro adduct values detected by [3H]nucleoside concentrations on HPLC ranged from 1 to 7 fmol adduct per micrograms DNA (3.3-23.3 adducts per 10(7) nucleotides). The [3H]nucleoside values were consistent with values obtained by 32P-postlabeling of the same sample (correlation coefficient of 0.88). No relationship was apparent between the capacity of lymphocytes to form a [3H]BaP-derived adduct in vitro and the concentration of any adduct, or total adducts present in untreated lymphocytes. These results suggest that multiple DNA adducts are present in lymphocytes from nonsmokers as well as smokers, although the profile and extent of these adducts can vary among individuals. The relationship of the lymphocyte DNA adducts detected in this study to human cancer susceptibility remains to be determined.
Since epidermal growth factor (EGF) has been postulated to play a role in embryonic and fetal growth, a study was undertaken to assess the placental degradation and transfer of maternally administered EGF. Before iodination, mouse EGF was purified to homogeneity by reversed-phase HPLC. Approximately 5 ng [125I]iodo-EGF (approximately 10(6) cpm) were injected iv into day 10, day 13, or day 17 pregnant CD-1 mice; radioactivity in plasma, placentas, and conceptuses was measured up to 2 h after injection. The time course analysis revealed an initial rapid decline in total plasma radioactivity followed by an increase that was maximal by approximately 30 min. Gel filtration (G-15, G-50) chromatography of plasma revealed that by 5 min, radioactivity was associated with free 125I and with material much larger than EGF. No apparent degradation of [125I]iodo-EGF occurred after direct incubation with maternal plasma. Placental radioactivity had an initial phase of decay between 1 and 5 min followed by an increase that became maximal between 30 and 60 min. Extracts of placentas made with 4 M urea in 0.2 M Tris-HCl, pH 8.0, and taken 1-30 min after injection revealed radioactivity coeluting predominantly with [125I]iodo-EGF at 1 min but shifting to mostly free 125I by 30 min. Uptake of radioactivity by conceptuses was not evident until about 15 min, and only free 125I was detected in extracts; the same results were obtained when 5 micrograms unlabeled EGF were injected simultaneously with [125I]iodo-EGF. Incubation of placental mince with [125I]iodo-EGF yielded [125I]MIT as the apparent major radioactive degradation product. Formation of [125I]MIT in vitro was both time- and temperature-dependent. At 37 C, marked formation of [125I]MIT was observed; at 22 C, only a negligible amount was formed after incubation of mince with [125I]iodo-EGF for 60 min. Incubation of [125I]iodo-EGF with kidney mince yielded predominantly free 125I. When tissues were incubated directly with [125I]MIT, kidney tissue deiodinated the [125I]MIT, but placental tissue did not. When [125I]iodo-EGF was incubated for up to 2 h with kidney tissue in the presence of excess MIT (unlabeled), the major degradation product eluted as [125I]MIT, instead of free 125I. These findings suggest that the mouse placenta can readily bind and then degrade [125I]iodo-EGF to constituent amino acids.(ABSTRACT TRUNCATED AT 400 WORDS)
An oestrogen-induced secretory protein from mouse uterine luminal fluid was purified by CM-Affi-Gel Blue chromatography and reverse-phase h.p.l.c. This protein has an apparent molecular mass of approx. 70 kDa both by SDS/polyacrylamide-gel electrophoresis (with or without 2-mercaptoethanol) and by gel-filtration column chromatography, indicating that it exists as a single-chain polypeptide. Further analysis of the protein revealed that it is highly basic (pI greater than or equal to 10) and is a glycoprotein. The N-terminus appears to be blocked to Edman degradation. The partial amino acid sequence of a fragment was obtained by cleavage with CNBr; no sequence homology was apparent between the analysed fragment and other known sequences. The incorporation of [35S]methionine into uterine proteins in vitro revealed that oestrogen treatment of immature mice stimulates both synthesis and secretion of the 70 kDa protein. An enzyme-linked immunosorbent assay with polyclonal antibody was used to determine the tissue distribution of the protein. Tissues such as lung, brain, spleen, muscle, intestine, liver, kidney and ovary of oestrogen-treated mice did not have detectable amounts of the 70 kDa protein. Immunoreactivity was present in uterine and vaginal tissues from oestrogen-treated animals. The 70 kDa protein was not induced by testosterone or progesterone. Although the function of this protein is unknown, it is useful as a marker for the study of oestrogen action in the mammalian uterus as well as regulation of gene expression at the molecular level.
Reversed-phase high performance liquid chromatography of mouse epidermal growth factor (EGF) yielded two major forms, alpha- and beta-EGF, and a minor component, gamma-EGF. All three forms exhibited receptor-binding activity. Analysis of native alpha- and beta-EGF by mass spectrometry and partial Edman degradation led us to propose that alpha-EGF has a primary structure equivalent to that originally reported for EGF and that beta-EGF is the des-asparaginyl form of the polypeptide. When the purified alpha- and beta-polypeptides were cultured with human embryonic palatal mesenchymal cells stimulation of cell proliferation was observed at concentrations as low as 0.01 ng/ml with maximal stimulation occurring at about 1 ng/ml. Essentially no difference was noted in the mitogenic potency of the two forms. This suggests that the NH2-terminal region of EGF is not critical for mitogenic activity.
The diastereomeric glutathione (GSH) adducts of the K-region arene oxides phenanthrene 9,10-oxide, pyrene 4,5-oxide, (±)-benz[a]anthracene 5,6-oxide, and (±)-benzo[a]pyrene 4,5-oxide were separated by reversed phase liquid chromatography. Chromatographic conditions involved an organic base, Tris-base or diethylenetriamine (DETA), neutralized to pH 3 with phosphoric acid, and an alcohol, methanol or 1-propanol, as modifier. For (±)-benzo[a]pyrene 4,5-oxide, the use of DETA and 1-propanol provided a complete stereochemical profile of the thioether conjugates derived from this arene oxide. For the GSH adducts of (±)-benz[a]anthracene 5,6-oxide complete separation was achieved under two sets of chroraatographic conditions; methanol and 1-propanol enhanced the selectivity of the system for different sets of diastereomers. For both arene oxides, the GSH adducts with S-configuration eluted earlier than the R-diastereomers.
A number of isomerically pure polychlorinated biphenyls (PCBs) were tested as inducers of hepatic drug-metabolizing enzymes in the rat. The chlorinated biphenyl isomers can be categorized into two distinct groups of inducers, while commercial PCB mixtures have characteristics of both groups. Biphenyls chlorinated symmetrically in both the meta and para positions (3,4,3′,4′- and 3,4,5,3′,4′,5′-) increase the formation of cytochrome P-448, the ratio of the 455 to 430 peaks of the ethyl isocyanide difference spectrum, and aryl hydrocarbon hydroxylase and glucuronyl transferase activities, but decrease aminopyrine N-demethylase activity. These isomers are also the most toxic, as measured by weight loss. Biphenyl isomers chlorinated in both the para and ortho positions induce the formation of cytochrome P-450 rather than P-448, regardless of the chlorination of the meta position. These isomers, which include 2,4,2′,4′-tetra- and 2,4,5,2′,4′,5′-, 2,3,4,2′,3′,4′- and 2,4,6,2′,4′,6′-hexachlorobiphenyls, increase cytochrome P-450 and N-demethylase activity, but produce only a slight increase in aryl hydrocarbon hydroxylase activity, and do not alter the peak of the CO-difference spectrum or the ratio of the 455/430 peaks of the ethyl isocyanide difference spectrum. Isomers which are chlorinated in only one ring, or are chlorinated in both rings but not in the para positions, have very little activity as inducers of liver enzymes. Of the dichlorobiphenyls tested, 3,3′- and 4,4′-dichlorobiphenyls have very slight activity at extremely high doses.
AbstractThe synthesis of 14C‐desmethylene aldrin (I) from 14C‐Ul‐hexachloro cyclopentadiene and cyclohexa‐l,4‐diene via a Diels‐Alder reaction and its conversion to desmethylene dieldrin (II) and desmethylene cis (III) and trans (IV)‐dihydrodiols are described.