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C Knabbe

Publications and source records attributed to C Knabbe.

At least 19 recordsLinked to original sources

TGFbeta1 and TGFbeta2 mRNA and protein expression in human bone samples.

Transforming growth factor beta is one of the most abundant growth factors stored in bone. It is known as a potent regulator of osteoblast proliferation and differentiation as well as of production extracellular matrix. We established a highly specific RT-PCR in combination with HPLC for detection and quantification of TGFbeta1 and TGFbeta2 mRNA expression in 89 human bone samples. Levels of TGFbeta1 protein ranged between 27 and 580 ng/g bone (mean 188 +/- 15 ng/g; n=75) and for TGFbeta2 between 7.2 and 35 ng/g bone (mean 14.3 +/- 2.1 ng/g; n=57). TGFbeta1 and TGFbeta2 protein concentrations and TGFbeta isoform mRNA expression in bone were not significantly different between the sexes. TGFbeta isoform mRNA expression as well as protein content in bone declined age dependently. TGFbeta1 and TGFbeta2 protein and mRNA expression were different in bone samples from different sites of the skeleton indicating in part the regulation by mechanical stimuli. In contrast to TGFbeta1, TGFbeta2 mRNA expression was significantly enhanced in osteoarthritic bone compared to unaffected bone. These data are in concordance to previous results concerning the expression of TGFbeta3 in bone. In conclusion, the data suggest distinct patterns' of expression of the TGFbeta isoforms under physiological and pathological conditions in bone.

Adolescent↗

Regulation of transforming growth factor-beta secretion by human peritoneal mesothelial and ovarian carcinoma cells.

This study was conducted to compare the secretion of TGF-beta isoforms by human ovarian carcinoma (OVCA) cell lines (n=12) and human peritoneal mesothelial cells (HPMC;n=6) and to examine the regulation of their production by inflammatory cytokines. TGF-beta isoforms were furthermore analysed in OVCA-associated ascitic fluids. HPMC constitutively produced considerable amounts of TGF-beta1 (median 42 pg/10(5)cells; range 7-98) but only minimal amounts of TGF-beta2 (median 0.8 pg/10(5)cells; range 0-1.5). Treatment of HPMC with IL-1beta (10 ng/ml) resulted in a significant elevation of the secretion of both TGF-beta1 (median 187 pg/10(5)cells; range 71-264;P<0.001) and TGF-beta2 (median 1.8 pg/10(5)cells; range 0-13;P<0.01). In OVCA TGF-beta1 and TGF-beta2 were detected in 7/12 and 11/12 of the cell lines, respectively. The levels detected varied widely for TGF-beta1 (median 25 pg/10(5)cells; range 0-410) as well as for TGF-beta2 (median 14 pg/10(5)cells; range 0-419) and there was no correlation between the two isoforms. In contrast to HPMC, TGF-beta secretion by OVCA was not affected by any of the inflammatory cytokines tested. TGF-beta3 could not be detected in supernatants, neither in OVCA nor in HPMC. In ascitic fluids the median level of TGF-beta1 (median 5443 pg/ml; range 737-14687) was 10-fold higher than the level of TGF-beta2 (median 545 pg/ml; range 172-3537). The present data provide a model for the analysis of the molecular mechanisms of aberrant TGF-beta production by OVCA and support the hypothesis that HPMC are an important source of ascitic TGF-beta.

Ascites↗

Advanced prostate cancer is associated with a decrease in serum luteinizing hormone.

OBJECTIVE: Depletion of serum LH by LHRH agonists is used as a therapeutic treatment in hormone-sensitive prostate cancer (PCa). However, little information on serum LH in different patient groups is available. METHODS: Patients with biopsy-proven PCa, men with BPH (biopsy-proven absence of PCa), two subgroups (serum PSA <4 ng/ml; PCa and BPH), and a PCa cohort before and after radical prostatectomy were analyzed for serum LH, testosterone (T), dihydrotestosterone (DHT), total and free PSA by immunological procedures. RESULTS: PCa patients with cancer volumes >10 cm(3), or with advanced Gleason scores, had significantly lower LH values than men in a cancer-free control group (PSA <4 ng/ml). Eight weeks after radical prostatectomy, LH levels had returned to the level of the control group (p<0.0001). These alterations were not accompanied by corresponding changes of serum androgens. Introduction of a PSA/LH ratio appeared to increase the differences between BPH and PCA groups ranked according to Gleason scores, versus PSA or LH alone. However, the calculation of ROC curves indicated that PSA/LH ratios may not improve the discrimination of malignant and benign forms of the disease, compared to presently used parameters. CONCLUSIONS: A significant reduction of circulating LH is observed in the most advanced forms of PCa. The effect does not come about by T- or DHT-mediated feedback inhibition. Since LH values after prostatectomy returned to practically the same levels as seen in the control group (BPH with <4 ng/ml PSA), it appears that the healthy prostate has no marked influence on serum LH while advanced PCa induces a decrease in serum LH.

Adult↗

Polysulfated heparinoids selectively inactivate heparin-binding angiogenesis factors.

Angiogenesis is a prerequisite for tumor expansion and metastasis. The angiogenic potential of the heparin-binding growth factors acidic fibroblast growth factor (FGF) and basic FGF has been demonstrated in various publications. We studied the inhibitory effects of suramin and the polysulfated heparinoids pentosan polysulfate, dextran sulfate, and fucoidan on the action of FGF. As an experimental model, we used the adrenal cancer cell line SW 13, whose anchorage-independent growth depends on the presence of FGF. The polysulfated heparinoids inhibited FGF-induced growth and binding to the receptor at an IC50 of 0.5-3 micrograms/ml. Suramin inhibited FGF at an IC50 of 100 micrograms/ml. The polysulfated heparinoids exerted no effect on IGF-1 or TGF alpha-related growth. Suramin inhibited the anchorage-independent growth induced by IGF-1 or TGF alpha only at an IC50 of 100 micrograms/ml. Our results indicate that suramin inhibits growth factors in a nonselective way. By contrast, polysulfated heparinoids exert a selective inhibitory effect on heparin binding angiogenesis factors at an IC50, which is 100 times below the IC50 of suramin. Therefore, the administration of polysulfated heparinoids might become a novel approach to tumor therapy based on blocking angiogenesis.

Binding, Competitive↗

Partial antagonism between steroidal and nonsteroidal antiestrogens in human breast cancer cell lines.

Nonsteroidal antiestrogens, such as tamoxifen, are well established in the treatment of breast cancer. The development of new steroidal compounds without partial agonist activity allows deeper insights into the mechanism of antiestrogen action, but thus far, the combined use of steroidal and nonsteroidal antiestrogens has not been studied extensively. We compared the nonsteroidal 4-trans-hydroxytamoxifen (OHT) with the two steroidal antiestrogens, ICI 182780 and RU 58668, in the estrogen receptor-positive human breast cancer cell lines MCF-7 and T47D. The effect of each compound alone or of OHT in combination with one of the steroidal antiestrogens was studied in regard to cell proliferation, expression of estrogen receptors (ERs) and progesterone receptors, and secretion of transforming growth factor beta2 (TGF-beta2). All antiestrogens examined led to enhanced secretion of TGF-beta2, which is correlated with their individual growth-inhibitory potential. OHT partially counteracts the larger growth inhibition of human breast cancer cells exerted by the steroidal antiestrogens ICI 182780 and RU 58668. Also, OHT antagonizes the higher induction of TGF-beta2 seen after treatment of MCF-7 cells with steroidal antiestrogens. The loss of ER and down-regulation of progesterone receptor under treatment with the steroidal antiestrogens is prevented by OHT, whereas the steroidal antiestrogens prevent the ability of hydroxytamoxifen to increase the ER content. These results indicate that TGF-beta2 is a marker of action for both types of compounds, but steroidal and nonsteroidal antiestrogens partially antagonize each other in blocking ER-mediated cellular events. It would appear that no additive or synergistic effect of the two types of antiestrogens can be expected in the treatment of breast cancer.

Antineoplastic Combined Chemotherapy Protocols↗

[Plasma TGF-beta1 concentrations in patients with prostate carcinoma or benign prostatic hyperplasia].

Transforming growth factor-beta 1 (TGF-beta 1) is a pleiotrophic growth factor in carcinogenesis and regulars multiple cell functions. We wanted to evaluate the diagnostic meaning of TGF-beta 1 plasma levels in patients with a biopsy proven prostate cancer. The TGF-beta 1 blood level was analysed in 394 patients. In 242 patients (group I) the blood was taken before any prostate manipulation and biopsy. The TGF-beta 1 plasma concentrations were almost similar in the group of patients with a prostate cancer (n = 157) and patients with a benign prostate hyperplasia (n = 85; 14,258 pg/ml versus 14,658 pg/ml, SD 10,516 pg/ml). In 152 patients the blood was taken 6-12 months after radical prostatectomy (group II). There was no significant difference between the patients with a PSA-progress and without PSA-progress after. Our results suggest that TGF-beta 1 plasma levels can not be used to distinguish between patients with prostate cancer and benign prostate hyperplasia.

Biomarkers, Tumor↗

Ascitic interleukin-12 is an independent prognostic factor in ovarian cancer.

PURPOSE: The clinical impact of endogenous cytokines supplied with deterministic properties in the generation of either T helper (Th)1 -type or Th2-type immune response was investigated in patients with ovarian cancer. Whereas interleukin (IL)- 12 initiates the differentiation of naive Th0 cells toward Th1 phenotype, IL-4 and IL-10 mediate the development of Th2-type immunity. PATIENTS AND METHODS: Cytokines were determined before treatment by means of enzyme-linked immunosorbent assay (ELISA) in ascites fluid and serum of 76 patients with ovarian cancer. Cytokine levels were compared with each other and with standard clinicopathologic parameters. A stepwise logistic regression was calculated to rule out interdependence in the associations of the various variables. Survival analyses were performed with the Kaplan-Meier method and differences in survival were examined according to Mantel and Breslow. Cox proportional hazards analysis was used to identify independent prognostic factors. RESULTS: Whereas IL-10 and IL-12 were detectable in all ascites-fluid samples, IL-4 was measurable in only 43% of the specimens. With the exception of neopterin, macrophage colony-stimulating factor (M-CSF), and IL-4, determined cytokine levels were significantly elevated in ascites fluid compared with serum (P < .01). In univariate analyses, high ascitic-fluid concentrations of either neopterin, tumor necrosis factor-alpha (TNF-alpha), or IL-12 were associated with poor disease-free (P < .005) and overall (P < .01) survival. Multivariate Cox regression analysis showed ascitic-fluid IL-12 levels to be the only immunologic variable that retained independent prognostic significance (P < .03 for disease-free and P < .01 for overall survival), together with residual disease, Fédération Internationale de Gynécologie et d'Obstétrique (FIGO)-stage, and patient age. CONCLUSION: In ovarian cancer, high ascitic-fluid IL-12 levels, which may indicate a local Th1-generated immune response, are associated with disease progression.

Adult↗

Differential expression and biological activity of the heparin-binding growth-associated molecule (HB-GAM) in lung cancer cell lines.

The growth of human lung cancer cells is regulated positively and negatively by a variety of growth factors through autocrine as well as paracrine mechanisms. In the present report, we studied the differential role and expression of a neuropolypeptide growth factor in 26 lung cancer cell lines. Expression of the heparin-binding growth-associated molecule (HB-GAM) in 12 small cell lung cancer (SCLC) cell lines was compared to that in 14 non-small cell lung cancer (NSCLC) cell lines. HB-GAM mRNA was expressed in 9 of 12 SCLC and 3 of 14 NSCLC cell lines as determined by RT-PCR analyses. Normal human bronchial epithelial cells were used as negative controls. All cell lines which expressed HB-GAM mRNA produced HB-GAM protein as well. Western blot analysis showed that the tumor cells secreted HB-GAM into the media. HB-GAM, purified from lung cancer cell lines, exerted biological activity on fibroblasts, endothelial cells and SW13 cells as determined by thymidine incorporation and soft agar cloning assays. In addition, the biological activity of HB-GAM was blocked by a specific antibody in a dose-dependent way. Our findings suggest that HB-GAM may serve as a marker for SCLC cell lines and that it may function as a paracrine growth factor in human lung cancer. HB-GAM may be a further member of the network of growth factors involved in proliferation, angiogenesis and metastasis of lung tumors.

Blotting, Western↗

Regulation and role of TGF beta production in breast cancer.

The influence of antiestrogens on the secretion of transforming growth factor beta (TGF beta) proteins that have an autoinhibitory potential for human cancer cells was studied in the estrogen-responsive human breast cancer cell line, MCF-7: Antiestrogens induce the secretion of TGF beta-1 via a nontranscriptional pathway; TGF beta-1 itself induces TGF beta-2 by a direct transcriptional mechanism; and TGF beta-2 is a marker of antiestrogen action. This hypothesis was confirmed in a clinical study with 18 patients with advanced metastatic breast cancer. TGF beta-2 plasma levels were measured before and after 4 weeks of treatment with tamoxifen. In the majority of patients who responded to the treatment, increasing TGF beta-2 concentrations were seen under therapy. Patients who did not respond did not show changes in the TGF beta-2 plasma level after 4 weeks of treatment. These results suggest that the sequential analysis of TGF beta-1 in plasma before and under treatment with tamoxifen allows the early identification of patients with antiestrogen resistance.

Breast Neoplasms↗

Growth-inhibitory effects of vitamin D analogues and retinoids on human pancreatic cancer cells.

Retinoids and vitamin D are important factors that regulate cellular growth and differentiation. An additive growth-inhibitory effect of retinoids and vitamin D analogues has been demonstrated for human myeloma, leukaemic and breast cancer cells. We set out to study the effects of the vitamin D analogue EB1089 and the retinoids all-trans- and 9-cis-retinoic acid on the human pancreatic adenocarcinoma cell lines Capan 1 and Capan 2 and the undifferentiated pancreatic carcinoma cell line Hs766T. The cell lines investigated expressed vitamin D receptor, retinoic acid receptor (RAR)-alpha and gamma as determined by polymerase chain reaction after reverse transcription. RAR-beta was expressed only in Hs766T cells. Addition of all-trans-retinoic acid increased the amount of RAR-alpha mRNA in the three cell lines and induced RAR-beta mRNA in Capan 1 and Capan 2 cells. All-trans-retinoic acid at a concentration of 10 nM inhibited the growth of Capan 1 and Capan 2 cells by 40% relative to controls. 9-cis-Retinoic acid was less effective. Neither all-trans-retinoic acid nor 9-cis-retinoic acid affected the growth of Hs766T cells. EB1089, if added alone to the cells, did not significantly inhibit growth. However, the combination of 1 nM EB1089 with 10 nM all-trans-retinoic acid exerted a growth-inhibitory effect of 90% in Capan 1 cells and of 70% in Capan 2 cells. Our data suggest that vitamin D analogues together with retinoids inhibit the growth of human pancreatic cancer cells. However, in vivo studies are necessary to examine the potential use of retinoids and vitamin D analogues on pancreatic cancer.

Animals↗

Transforming growth factor-beta synthesis by human peritoneal mesothelial cells. Induction by interleukin-1.

Peritoneal mesothelial cells are uniquely located to regulate cellular events in the peritoneal cavity and are a potentially important source for various cytokines. The present study was designed to elucidate the capacity of human peritoneal mesothelial cells (HPMCs) to synthesize and secrete the transforming growth factor (TGF)-beta isoforms 1, 2, and 3 and to characterize their regulation by inflammatory cytokines. HPMCs constitutively released appreciable amounts of TGF-beta 1 and low amounts of TGF-beta 2 as detected by specific immunoassays. TGF-beta 1 levels secreted within 48 hours (45 +/- 8.9 pg/10(5) cells) were 60-fold higher than TGF-beta 2 levels (0.9 +/- 0.1 pg/10(5) cells), respectively. Treatment of HPMCs with interleukin (IL)-1 beta (10 ng/ml) resulted in a significant increase of both TGF-beta 1 (mean, 5-fold; P < 0.001) and TGF-beta 2 (mean, 6-fold; P < 0.01) generation. After 48 hours of IL-1 beta treatment the levels were 185 +/- 17.1 pg/10(5) cells for TGF-beta 1 and 5.3 +/- 1.5 pg/10(5) cells for TGF-beta 2, respectively. Neither tumor necrosis factor (TNF)-alpha nor interferon (IFN)-gamma (both 10 ng/ml) affected TGF-beta 1 or TGF-beta 2 synthesis by HPMCs. TGF-beta 3 could not be detected in any of the supernatant media. Stimulation of HPMCs with IL-1 beta increased steady-state levels of TGF-beta 1- and TGF-beta 2-specific mRNA. Western blot analysis of supernatants revealed the presence of an immunoreactive band at 25 kd. Indirect competition assays confirmed receptor-binding activity of HPMC-derived TGF-beta. Appreciable amounts of TGF-beta were present in a bioactive form. Our results demonstrate that HPMCs synthesize the TGF-beta isoforms 1 and 2 and that the levels of mRNA and protein release can be up-regulated by the proinflammatory cytokine IL-1 beta.

Base Sequence↗

Transforming growth factor beta 2 (TGF-beta 2) levels in plasma of patients with metastatic breast cancer treated with tamoxifen.

Blood levels of transforming growth factor beta 2 (TGF-beta 2) were measured in 20 patients with metastatic breast cancer before and during treatment with the antiestrogen tamoxifen, and in a control group of 7 patients with primary breast cancer before and during adjuvant tamoxifen treatment. The results of this study reveal typical time patterns for TGF-beta 2 in relation to the clinical outcome. Patients in remission showed a significant increase of TGF-beta 2 in the first 4-6 weeks of therapy, followed by a subsequent decrease. Patients who did not respond showed unchanged or diminished TGF-beta 2 values after start of therapy, followed by a later increase preceding the clinical manifestation of tumor progression. Thus, TGF-beta 2 blood levels after 4 weeks of tamoxifen treatment can be used as an early marker for prediction of response.

Breast Neoplasms↗

Transforming growth factor beta production and responsiveness in normal human melanocytes and melanoma cells.

Previous studies have shown that some human melanoma cells express transforming growth factor beta (TGF-beta) mRNA and are growth inhibited by exogenous TGF-beta, suggesting a possible negative autocrine role for this melanoma-derived growth factor. To better understand the role of endogenous TGF-beta in the development of melanoma, we investigated patterns of TGF-beta protein production and responsiveness of human melanoma cells as compared to normal melanocytes. Both cultured melanoma cells and normal melanocytes secreted biologically inactive, latent TGF-beta protein which, upon acid treatment, became biologically active. In melanoma cells, TGF-beta production occurred constitutively, i.e., in the absence of exogenous polypeptide growth factors. By contrast, in melanocytes, TGF-beta production depended on stimulation by exogenous growth factors such as insulin-like growth factor I. Exogenous, bioactive TGF-beta 1 at picomolar concentrations inhibited tritiated thymidine uptake of normal melanocytes, whereas melanoma cells demonstrated various degrees of resistance to TGF-beta-induced inhibition of DNA synthesis. Five of six cell lines were less sensitive than any of the melanocyte lines tested, and one cell line was completely resistant to inhibitory effects of TGF-beta on DNA synthesis. In vivo selection of melanoma cells for metastatic ability in athymic mice produced a variant cell line that was resistant to TGF-beta 1-induced inhibition of DNA synthesis and proliferation. Development of TGF-beta resistance in the variant cell line was not associated with changes in TGF-beta cell surface binding. Stable transfection of melanocytes with a plasmid expressing the Simian Virus 40 large T-antigen rendered these cells resistant to growth inhibition by TGF-beta, suggesting that TGF-beta inhibits melanoma/melanocyte growth via interaction with Simian Virus 40 large T-antigen-responsive transcription elements.

Animals↗

Hormonal regulation of transforming growth factor beta-2 expression in human prostate cancer.

We have previously shown that a transforming factor-beta species (TGF beta) is a hormonally regulated negative growth factor in estrogen responsive MCF-7 human breast cancer cells. We now demonstrate that androgen withdrawal leads to a significant stimulation of TGF beta-2 mRNA in the androgen-responsive human prostate carcinoma cell line LNCaP. These data indicate that TGF beta-2 is a marker of (anti)androgen action in human prostate cancer in vitro. Based on these results we addressed the question of whether TGF beta-2 represented a marker of (anti)androgen action in prostate cancer in vivo: expression of TGF beta mRNA was determined by RNAase protection analysis in normal and malignant prostate tissue obtained from 9 prostate carcinoma patients without endocrine therapy. In parallel, the nuclear dihydrotestosterone (DHT) concentration was measured as an indicator of androgen stimulation in the same tissues. The following results were obtained. Both normal and cancerous tissues show nuclear accumulation of DHT indicating a functional androgen receptor system. TGF beta-2 is equally expressed in both normal and cancerous tissue. Expression of TGF beta-2 and nuclear DHT concentrations are correlated in both benign and malignant tissue. We conclude that TGF beta-2 is a marker of (anti)hormonal action in androgen-dependent tissue.

Androgens↗

[Androgen regulation of secreted growth factors in prostate carcinoma cell and tumor lines].

Previous studies have shown that part of steroid hormone action on hormone dependent carcinoma cells is mediated through secreted autocrine and paracrine growth factors. Coculture experiments using the androgen receptor positive human prostate carcinoma cell line LNCaP as feeder cells and the androgen receptor negative prostate cell line DU 145 as indicator cells, such as experiments with conditioned medium suggest that androgens might regulate proliferation of prostate carcinoma through a similar mechanism. LNCaP and DU 145 cells express high affinity EGF-receptors and show an increased growth rate under treatment with EGF, TGF alpha and FGF. The growth stimulating potential of LNCaP-conditioned medium can be enhanced by androgens. The polyanionic compounds suramin and dextran sulfates which have been shown to inactivate a variety of growth factors e.g. EGF/TGF alpha inhibit growth of LNCaP cells and DU 145 cells in a dose dependent and reversible fashion. Growth stimulation of LNCaP cells by EGF/TGF alpha can be completely reversed by simultaneous addition of polyanions but they inhibit androgen stimulation only partially. These data suggest the existence of at least two different mechanisms of growth regulation by androgens which can be distinguished by their different sensitivity of prostatic carcinoma cells to growth factor inhibitory agents. In order to investigate the therapeutic potential of these substances in complex, heterogeneous cell systems of solid tumors we treated 8 representative human prostate cancer lines in the nude mouse model. Systemic applications of polyanions revealed significant growth inhibition in hormone dependent as well as hormone independent xenografts. In androgen responsive lines growth inhibition was intensified by additional androgen withdrawal.(ABSTRACT TRUNCATED AT 250 WORDS)

Androgens↗

Regulation of fibroblast growth factor-like protein(s) in the androgen-responsive human prostate carcinoma cell line LNCaP.

Growth of the normal and malignant prostate is known to be regulated by androgens. Part of their effect has been suggested to be mediated through coordinated regulation of secreted growth factors with autocrine function. We now examine the biological role of preferentially paracrine acting factors in growth control of prostate cancer, i.e. fibroblast growth factor(s) (FGF). Coculture experiments using the androgen-responsive human prostate carcinoma cell line LNCaP as feeder cells and the FGF-dependent human adrenal carcinoma SW-13 cell line as target cells show that (i) LNCaP cells induce growth of SW-13 cells, (ii) even higher stimulation of SW-13 cells is seen in the presence of androgen treated LNCaP cells and (iii) a specific anti-bFGF antibody inhibits growth of SW-13 cells induced by androgen treated LNCaP cells; no proliferation of SW-13 cells occurs in the absence of LNCaP cells. Partial purification of the secretory products of LNCaP cells was performed by affinity chromatography using a heparin sepharose column. Fractions were tested for biological activity in a soft agar assay with SW-13 cells. Several activities could be detected, the main activity was eluted with about 1.5 M NaCl. These data suggest that androgen treatment of LNCaP cells leads to enhanced secretion of proteins which belong to the FGF-family.

Adrenal Gland Neoplasms↗

Post-transcriptional destabilization of estrogen receptor mRNA in MCF-7 cells by 12-O-tetradecanoylphorbol-13-acetate.

The effect of 12-O-tetradecanoylphorbol-13-acetate (TPA) on the regulation of the estrogen receptor (ER) was investigated in this study. After treatment with 100 nM TPA the concentration of receptor protein was measured using an enzyme immunoassay. By 24 h the receptor protein declined by about 80% from a level of approximately 236 fmol of ER/mg of protein in control cells to 50 fmol of ER/mg of protein in cells treated with TPA. Similar results were obtained with an estrogen receptor ligand binding assay. After removal of TPA, the level of ER returned to control values. 4-alpha-Phorbol, a compound related to TPA, had no effect on ER. The effects of TPA on ER expression appear to be mediated by activation of protein kinase C as H-7, an inhibitor of protein kinase C, blocks these effects. In addition to the effect on ER protein, TPA treatment also resulted in a decrease in the steady-state level of ER mRNA as determined by a RNase protection assay. The metabolic inhibitor cycloheximide was unable to prevent the TPA-induced decrease in ER mRNA. Transcription run-off experiments demonstrated that TPA had no effect on ER gene transcription. A half-life study demonstrated that TPA decreased ER mRNA half-life by a factor of 6 from approximately 4 h in control cells to 40 min in TPA-treated cells. These data suggest that the decline in ER expression is mediated by post-transcriptional destabilization of ER mRNA.

Cycloheximide↗