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The mechanisms of nonheme iron uptake determined in IEC-6 rat intestinal cells.

The mechanisms of iron absorption, which control total body iron stores, are not fully understood. We have defined an in vitro model using rat small intestinal cells (IEC-6) to study nutrient uptake by the intestine and have characterized the mechanisms of nonheme iron uptake in this model. IEC-6 cells were grown to confluency, and then 59Fe solutions were layered on the cells, allowing iron uptake to occur through the apical surface. Iron uptake increased over time and comparable results were seen with either 59Fe(II) or 59Fe(III). Two types of 59Fe(II) binding sites were detected, a high affinity site with a dissociation constant of 1 x 10(-8) mol/L and 5 x 10(5) sites per cell, and a lower affinity site with a dissociation constant of 2 x 10(-6) mol/L and 2.6 x 10(6) sites per cell. The 59Fe uptake was inhibited by low temperature, low and high pH, prior iron loading of the cells, high osmotic concentrations, and by N,N'-dicyclohexylcarbodiimide, tannic acid, bathophenanthroline and colchicine. Uptake was not inhibited by vinblastine or verapamil. Transferrin mRNA was not detected in IEC-6 cells grown under normal growth conditions but could be induced under some other conditions. IEC-6 cell proteins that bind iron were detected in a subcellular vesicle fraction having estimated molecular weights of 120,000, 95,000, 55,000 and 35,000. These studies confirm iron uptake studies by other models and demonstrate that IEC-6 cells possess iron-binding moieties, a regulated iron uptake process, and little or no transcription of the transferrin gene under normal growth conditions.

Animals↗

Nucleotide supplements alter proliferation and differentiation of cultured human (Caco-2) and rat (IEC-6) intestinal epithelial cells.

The effect of exogenous nucleotides on the proliferation and differentiation of enterocytes was comparatively studied using a human colon tumor cell line (Caco-2) and a normal rat small intestinal crypt cell line (IEC-6). Caco-2 cells exhibited more active endogenous nucleic acid metabolism than did IEC-6 cells, as evidenced by greater cellular pools of nucleotides and their metabolites. To determine the supplemental nutritional effect of nucleotides, a mixture containing equal amounts (10 mg/L) of AMP, CMP, IMP, GMP and UMP was added to the culture medium. The results showed that a nucleotide supplement under normal culture conditions did not affect proliferation and differentiation of Caco-2 cells. In contrast, nucleotide supplements under normal culture conditions promoted proliferation of IEC-6 cells. The addition of nucleotides to the culture medium also enhanced differentiation of IEC-6 cells when grown on an extracellular matrix (Matrigel). Furthermore, when glutamine levels were less than optimal (nutritional stress conditions), nucleotide supplements enhanced growth and maturation of both cell lines. We conclude that the de novo biosynthesis of nucleotides is sufficient to support proliferation of tumor Caco-2 cells but not of the normal crypt IEC-6 cells. Thus, nucleotide supplements may enhance normal enterocyte growth and maturation as well as spare the need for exogenous glutamine in cell maintenance and development.

Adenosine Monophosphate↗

In vitro model of attachment of Giardia intestinalis trophozoites to IEC-6 cells, an intestinal cell line.

Attachment of giardias to intestinal cells has been difficult to study because of a lack of a convenient in vitro model. We developed an assay for attachment of radiolabeled trophozoites to IEC-6 cells that can be done in microtiter trays. Attachment was confirmed by scanning and transmission electron microscopy. Trophozoites remained attached to the IEC-6 cells for 24 h with little evidence of damage to the IEC-6 cells. Preincubation of trophozoites with cytochalasins A, B, and D reduced attachment to approximately 20% of that of controls, whereas colchicine had no effect. Chelation of divalent cations with EDTA and EGTA [ethylene glycol-bis(beta-aminoethyl ether)-N,N,N',N'-tetraacetic acid] reduced attachment to 24 and 26% of control values, respectively, and incubation at 4 degrees C reduced attachment to 7% of the value for controls incubated at 37 degrees C. Glutaraldehyde fixation of trophozoites or IEC-6 cells resulted in significantly diminished attachment to the live substrate (17 and 40% of control values, respectively). Coincubation of IEC-6 cells and trophozoites on a rotary shaker resulted in detachment of 40% of trophozoites, but EDTA, EGTA, glutaraldehyde fixation of trophozoites, and low temperature diminished attachment markedly and significantly. Similar results were obtained in selected experiments with three strains of giardia.

Animals↗

Lipid esterification and synthesis by the IEC-6 intestinal epithelial crypt cell line: effect of transforming growth factor beta.

The capacity of immature intestinal epithelial crypt cells to synthesize lipids and the factors that promote their differentiation remain largely unknown. We examined the profile of lipids synthesized by a normal rat intestinal epithelial crypt cell line (IEC-6) and determined the effects of transforming growth factor beta (TGF beta), a putative crypt cell differentiating factor, on their lipid handling. Incubation of IEC-6 cells with [14C]oleic acid (20 h) resulted in lipid esterification and synthesis, mainly as triglycerides (TGs, 57 +/- 0.6%) and phospholipids (PLs, 30 +/- 0.6%), with a PL/TG ratio of 0.53. When cells were pulsed (2.5 h) with [14C]oleic acid and then maintained 20 h in medium alone, a significant elevation of the PL/TG ratio (10.2 +/- 1.3, p < 0.01) was observed, primarily accounted for by a significant decrease of the TG fraction (p < 0.01). IEC-6 cells secreted only trace amounts of lipids under the latter experimental condition. Incubation with TGF beta (20 h) significantly inhibited IEC-6 cell proliferation but did not promote the expression of cell sucrase activity. TGF beta induced a significant increase in the cellular composition of PL (p < 0.05) and a decrease in the TG fraction (p < 0.02), after a 2.5-h pulse of [14C]oleic acid. Lipid production was unaffected by TGF beta during the 20-h incubation with [14C]oleic acid. Lipid secretion into the medium remained negligible in the presence of TGF beta, after 2.5 h of incubation with substrate as above. Our findings suggest that immature crypt IEC-6 cells are capable of lipid esterification and synthesis but secrete minute amounts of lipoproteins.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Intracellular regulation of intestinal folate uptake: studies with cultured IEC-6 epithelial cells.

Although the mechanism of folate uptake in the small intestine has been well characterized, very little is known about the intracellular regulation of the uptake process. Using mature confluent monolayers of the intestinal epithelial cell line IEC-6 as an in vitro intestinal epithelial cell model, we have found the uptake of folic acid to be similar to that of the native small intestine in that it is 1 ) temperature, energy, and pH dependent, 2) Na+ independent, 3) inhibited by structural analogs and anion transport inhibitors, and 4) saturable as a function of substrate concentration [apparent Michaelis constant (Km) = 0.45 +/- 0.06 microM; maximal velocity (Vmax) = 3.08 +/- 0.14 pmol x mg protein(-1) x 5 min(-1)]. Furthermore, IEC-6 cells were found by Northern blot analysis to lack the expression of the membrane folate-binding protein. Pretreatment of IEC-6 monolayers with specific protein tyrosine kinase (PTK) inhibitors genistein and tyrphostin A25 caused a significant inhibition in folic acid uptake. On the other hand, their negative controls, genistin and tyrphostin A1, respectively, had no effect. The inhibitory effect of genistein was mediated through inhibition in the Vmax of the folate uptake process with no change in the apparent Km. Pretreatment of IEC-6 monolayers with compounds that increase intracellular adenosine 3',5'-cyclic monophosphate (cAMP) level (e.g., dibutyryl cAMP) also resulted in a significant (though modest) inhibition in folic acid uptake; however, specific inhibitors of protein kinase A did not affect the uptake process. Specific modulators of protein kinase C and Ca2+/calmodulin-mediated pathways did not significantly affect folic acid uptake. These results demonstrate the suitability of IEC-6 monolayers as an intestinal epithelial model to study folate transport and demonstrate for the first time that uptake of folic acid is regulated by a PTK- and a cAMP-mediated pathway.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Differential regulation by TGF-beta 1 and insulin of insulin-like growth factor binding protein-2 in IEC-6 cells.

The purposes of this study were to determine the regulation of insulin-like growth factor binding protein-2 (IGFBP-2) in IEC-6 cells by transforming growth factor-beta 1 (TGF-beta 1) and insulin and to determine whether IGFBP-2 mediated the growth-inhibitory action on the cells. Utilizing Western ligand blot analysis, we found that TGF-beta 1 at concentrations of 0.5, 1.0, and 2 ng/ml significantly increased levels of 32-kDa IGFBP in the conditioned medium (CM) of IEC-6 cells in a dose-dependent fashion and that low doses of insulin (1.0 and 5.0 microgram/ml) also increased IGFBP levels in the CM of IEC-6 cells, but a high dose of insulin (10 micrograms/ml) depressed IGFBP release in the CM. Immunoblotting has shown that the IGFBP of 32 kDa was IGFBP-2 and further confirmed the above results. IGFBP-2 mRNA levels were stimulated by TGF-beta 1 (2.0 ng/ml) and suppressed by insulin (5.0 micrograms/ml). In addition, des (1-3) IGF-I (50 ng/ml) and insulin stimulated the proliferation of IEC-6 cells. Anti-IGFBP-2 antibodies partially blocked the inhibitory role in IEC-6 cell growth evoked by des (1-3) IGF-I. These findings suggest that the upregulation of IGFBP-2 by TGF-beta 1 occurs, at least in part, at the level of mRNA, whereas the regulation by insulin appears to be at a posttranslational level, and that the TGF-beta 1-stimulated production of IGFBP may contribute to the growth-inhibitory action in intestinal epithelial cells.

Animals↗

Polyamine depletion arrests growth of IEC-6 and Caco-2 cells by different mechanisms.

The polyamines spermidine and spermine and their precursor, putrescine, are required for the growth and proliferation of eukaryotic cells. This study compares and contrasts growth arrest caused by polyamine depletion in the untransformed IEC-6 cell line with that in the p53-mutated colon cancer Caco-2 cell line. Cells were grown in the presence or absence of alpha-difluoromethylornithine (DFMO), a specific inhibitor of ornithine decarboxylase, the first rate-limiting enzyme in the synthesis of polyamines. Depletion of polyamines inhibited the growth of both cell lines equally and over the same time frame. However, whereas IEC-6 cells were arrested in the G(1) phase of the cell cycle, there was no accumulation of Caco-2 cells in any particular phase. In IEC-6 cells, growth arrest was accompanied by elevated levels of p53 and p21(Waf1/Cip1) (p21). There were no changes in p53 levels in Caco-2 cells. Levels of p21 increased in Caco-2 cells on day 2 without any effect on cell cycle progression. The amount of cyclin-dependent kinase (Cdk)2 protein was unchanged by polyamine depletion in both cell lines. However, the activity of Cdk2 was significantly inhibited by DFMO in IEC-6 cells. These data suggest that in the untransformed IEC-6 cells the regulation of Cdk2 activity and progression through the cell cycle are p53- and p21 dependent. Growth arrest in the p53-mutated Caco-2 line after polyamine depletion occurs by a different, yet unknown, mechanism.

CDC2-CDC28 Kinases↗

A methodology for distinguishing divergent cell fates within a common progenitor population: adenoma- and neuroendocrine-like cells are confounders of rat ileal epithelial cell (IEC-18) culture.

BACKGROUND: IEC-18 cells are a non-transformed, immortal cell line derived from juvenile rat ileal crypt cells. They may have experimental advantages over tumor-derived gastrointestinal lineages, including preservation of phenotype, normal endocrine responses and retention of differentiation potential. However, their proclivity for spontaneous differentiation/transformation may be stereotypical and could represent a more profound experimental confounder than previously realized. We hypothesized that IEC-18 cells spontaneously diverge towards a uniform mixture of epigenetic fates, with corresponding phenotypes, rather than persist as a single progenitor lineage. RESULTS: IEC-18 cells were cultured for 72 hours in serum free media (SFM), with and without various insulin-like growth factor agonists to differentially boost the basal rate of proliferation. A strategy was employed to identify constitutive genes as markers of divergent fates through gene array analysis by cross-referencing fold-change trends for individual genes against crypt cell abundance in each treatment. We then confirmed the cell-specific phenotype by immunolocalization of proteins corresponding to those genes. The majority of IEC-18 cells in SFM alone had a loss in expression of the adenomatous polyposis coli (APC) gene at the mRNA and protein levels, consistent with adenoma-like transformation. In addition, a small subset of cells expressed the serotonin receptor 2A gene and had neuroendocrine-like morphology. CONCLUSIONS: IEC-18 cells commonly undergo a change in cell fate prior to reaching confluence. The most common fate switch that we were able to detect correlates with a down regulation of the APC gene and transformation into an adenoma-like phenotype.

Adenoma↗

Plating densities, alpha-difluoromethylornithine effects and time dependence on the proliferation of IEC-6 cells.

OBJECTIVE: To characterize the role of plating densities and alpha-difluoromethylornithine (DFMO) on the proliferation of IEC-6 cells in vitro. METHODS: IEC-6 cells were seeded in 96-well microplates at various densities in the presence or absence of DFMO. Cells were counted and their proliferative capability was monitored Days 1 to 7 with MTT assay at an optical density of 570 nm. RESULTS: There was a positive relationship between cell number and OD value (r = 0.954, P < 0.01). Higher plating densities (> 0.5 x 10(4) cells/well) inhibited the growth of cells on Day 2. When the density reaches 4 x 10(4) cells/well, the OD value increased gradually and reached a peak on Day 5. After that, the OD value began to fall. The growth of IEC-6 cells was limited at a low density (0.2 x 10(4) cells/well) on Day 4. DFMO caused a complete inhibition of proliferation of IEC-6 cells on Days 1 to 3. CONCLUSION: Proliferation of IEC-6 cells is related to plating density and incubation time. It is inhibited by DFMO, but is reversible when the incubation time is prolonged.

Animals↗

Dimethylformamide-induced changes in the radiation survival of low- and high-passage intestinal epithelial cells (IEC-17) in vitro.

The effects of dimethylformamide (DMF) on the radiation response of low- and high-passage intestinal epithelial cells (IEC-17) were examined. The IEC-17 cell line, a rat intestinal epithelial cell line, exhibited a bimodal response to X radiation. The sensitive fraction, which was attributed to a stem cell-like component, had a D0 of 0.90 Gy. The resistant fraction, thought to be the expression of a more mature component, exhibited a D0 of 2.00 Gy. Treatment using a putative cell differentiating agent, N,N-dimethylformamide, increased the resistant fraction of the population from 35 to 80%, suggesting that DMF treatment (100 mM) increased the proportion of mature cells in the IEC-17 cell population. In addition, extended age in culture (greater than 100 passages) resulted in altered morphology, decreased doubling time, increased chromosome number, and loss of anchorage dependence, all features characterizing spontaneously transformed high-passage IEC-17 cells. These high-passage cells also exhibited a bimodal response to X radiation; the sensitive fraction had a D0 of 0.80 Gy while the resistant fraction D0 was 1.50 Gy. DMF increased the resistant fraction from 35 to 55% of the population. Results suggested that the different radiosensitivities of the subpopulations remained throughout the spontaneous transformation of high-passage IEC-17 cells.

Animals↗

A synergistic relationship between TNF-alpha, IL-1 beta, and TGF-beta 1 on IL-6 secretion by the IEC-6 intestinal epithelial cell line.

Intestinal epithelial cells are known to secrete a variety of cytokines and may play a role in the immune response at the intestinal mucosa. However, the regulatory mechanisms that govern the secretion of these cytokines are largely unknown. In this report, we have focused on the cytokine interactions that regulate interleukin (IL)-6 secretion by the non-transformed rat small intestinal epithelial cell line IEC-6. Tumour necrosis factor-alpha (TNF-alpha) was found to enhance both IL-6 mRNA expression and protein secretion by the IEC-6 cells. Furthermore, TNF-alpha acted in synergy with either transforming growth factor-beta 1 (TGF-beta 1) or IL-1 beta to greatly enhance IEC-6 cell IL-6 secretion. Although the IEC-6 cells are known to produce TGF-beta, autocrine-secreted TGF-beta was found to have no effect on the elevated IL-6 secretion induced by both TNF-alpha plus IL-1 beta. However, the addition of activated TGF-beta 1 to IEC-6 cultures stimulated with both TNF-alpha and IL-1 beta resulted in greatly elevated levels of IL-6 secretion. Therefore, activated TGF-beta 1 can augment IL-6 secretion stimulated by TNF-alpha and IL-1 beta, either alone or in combination, suggesting that intestinal epithelial cell IL-6 secretion may be under the control of a cytokine network at the intestinal mucosa.

Biological Assay↗

[Quality assurance in roentgen diagnosis. Comparison of constancy test methods according to DIN and IEC and practical consequences in Germany].

Since 1987 constancy tests for X-ray imaging equipment are required by the German Röntgenordinance and are performed according to the DIN 6868 standards. On an international level, standards for these tests have been developed by the IEC (International Electrotechnical Commission, IEC 1223 series); however, these standards have so far not been applied in nation-wide quality programmes in any country. Typical aspects of both, DIN and IEC standards, are demonstrated for direct radiography and indirect radioscopy and indirect radiography as examples. DIN standards optimise test procedures for minimum effort and cost efficiency designed for execution even in small hospitals and practices by the users. For each type of x-ray equipment tests are performed with only one universal test device, which is precisely specified and independent of local conditions. Oplimisation is misation is missing for IEC test procedures; they are designed for more performance characteristics and need for each x-ray equipment more individual test devices, which are mostly open for local choice and need a considerably higher effort in respect of time consumption and test films compared to DIN. Adoption of the IEC standards for the constancy tests in Germany would involve considerable financial and organisational effort which is probably not counterbalanced by an increased benefit.

Equipment Safety↗

Effects of insulin, insulin-like growth factors and epidermal growth factor on mitogenesis and disaccharidase activity in rat (IEC-6) and human (FHs 74 Int) intestinal cells.

Proliferation and differentiation of rat (IEC-6) and human (FHs) small intestinal cells in the presence of epidermal growth factor (EGF), insulin, insulin-like growth factor (IGF)-I, -II, and des[1-3]tripeptide-IGF-I(des-IGF-I) were examined. Thymidine incorporation into IEC-6 cells was significantly increased by insulin, IGF-I, des-IGF-I, IGF-II, and IGF-I+EGF, but not by EGF alone. In contrast, thymidine incorporation into FHs cells was increased only by insulin, IGF-I, and the combination of IGF-I and EGF. Mitogenic activities of IGF-I at 5 nM and insulin at 700 nM (IEC-6) or 1400 nM (FHs) were equivalent, suggesting that both acted through the type I IGF receptor in both cells. IEC-6 cells secreted consistently one predominant IGF binding protein (IGFBP) with M(r) of 28.5 kDa, while FHs cells secreted several IGFBPs with M(r) from 43 to 24 kDa. Mitogenic activity of IGF-I at 5 nM was equal to des-IGF-I at 0.005 nM, indicating that endogenously produced IGFBPs likely inhibit IGF-I action. In IEC-6 cells, IGFBP-2 secretion, but not mRNA expression, was decreased by EGF and IGF-I+EGF treatments, suggesting post-transcriptional regulation. IGF-II and EGF were more potent than IGF-I at increasing maltase and sucrase activities, suggesting that these growth factors may stimulate differentiation to a greater degree than mitogenesis.

Animals↗

Bacterial lipopolysaccharide reduced intestinal barrier function and altered localization of 7H6 antigen in IEC-6 rat intestinal crypt cells.

The intestinal epithelial barrier restricts the passage of potentially toxic substances into the systemic circulation and is considered to be mostly mediated by tight junctions, though the mechanisms involved in the regulation of intestinal tight junctions are not yet fully understood. In the present study, we examined whether bacterial lipopolysaccharide (LPS) altered the barrier function of tight junction and localization of tight junctional proteins, ZO-1 and 7H6 antigen, in IEC-6 intestinal cells. Administration of LPS to the basolateral surface of IEC-6 cells disrupted the barrier function and caused the disappearance of 7H6 antigen from the cell border, whereas LPS administered to the apical surface altered neither the barrier function nor the localization of 7H6 antigen in IEC-6 cells. On the other hand, the localization of ZO-1 was not influenced by these treatments of LPS. These results suggest that the interaction of LPS with the basolateral surface of intestinal epithelial cells disrupts the barrier function and 7H6 antigen take part in the maintenance of the barrier function in IEC-6 cells.

Animals↗

Enhanced glutathione S-transferase expression in 2-hydroxyamino-1-methyl-6-phenylimidazo[4,5-b]pyridine-resistant IEC-18 cells.

In the present study we show that repeated exposure of the rat intestinal epithelial cell line IEC-18 to 2-hydroxyamino-1-methyl-6-phenylimidazo[4,5-b]pyridine (N-OH-PhIP), from a toxicological point of view the most relevant phase-1 metabolite of 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP, the main heterocyclic aromatic amine present in processed meat), led to the selection of N-OH-PhIP-resistant IEC-18 cells. This phenomenon was accompanied by a fivefold increase in total glutathione S-transferase (GST) activity, measured with the broad-spectrum substrate 1-chloro-2,4-dinitrobenzene, in the N-OH-PhIP-resistant IEC-18 cells. Furthermore, a Western blotting analysis revealed that the expression of GST subunits A1, A3, A4, M1 and P1 was enhanced in the N-OH-PhIP-resistant IEC-18 cells.

Animals↗

Extracellular matrix composition influences insulinlike growth factor I receptor expression in rat IEC-18 cells.

BACKGROUND: The composition of the extracellular matrix (ECM) as well as insulinlike growth factor I (IGF-I) receptor density vary along the crypt-villus axis. We determined whether components of the ECM influence IGF-I receptor expression in IEC-18 rat small intestine crypt cells. METHODS: IEC-18 cells were cultured on plastic, collagen type IV, Matrigel, and laminin at the plateau and proliferative growth phases. Receptor affinity (Kd) and number (Bmax) were determined by competitive binding of 125I-IGF-I in the presence of increasing concentrations of unlabeled IGF-I. Receptor isolation was performed by affinity cross linking. Messenger RNA (mRNA) for IGF-I receptor was quantified by Northern analysis. RESULTS: Specific binding of IGF-I > IGF-II > insulin was observed. A 130,000-molecular weight protein was identified by cross-linking, consistent with the alpha subunit of the IGF-I receptor. Scatchard analysis revealed no effect of ECM on IGF-I binding affinity. In contrast, the Bmax was 18% lower for plateau-phase cells cultured on Matrigel vs. plastic and was 42% lower for cells cultured on laminin vs. collagen type IV. The Bmax for proliferative growth phase cells was decreased when cultured on Matrigel vs. plastic and was 10-fold less than for cells cultured at the plateau growth phase. Northern analysis revealed that IEC-18 cells cultured on Matrigel had less mRNA for IGF-I receptor than cells cultured on plastic. CONCLUSIONS: The rate of cell proliferation and the composition of the ECM influence IGF-I receptor expression in IEC-18 cells.

Animals↗

Regulation of expression of 1,25D3-MARRS/ERp57/PDIA3 in rat IEC-6 cells by TGF beta and 1,25(OH)2D3.

We examined the transcriptional regulation of expression of the redox-sensitive Membrane-Associated-Rapid Response, Steroid-binding (1,25D(3)-MARRS) protein specific for 1,25(OH)(2)D(3) in a rat small intestinal cell line, IEC-6, that demonstrates rapid responses to 1,25(OH)(2)D(3). 1,25D(3)-MARRS binds and is activated by 1,25(OH)(2)D(3), but is not itself up-regulated by treatment with 1,25(OH)(2)D(3), nor is there a Vitamin D response element (VDRE) in its proximal promoter. We previously reported that transforming growth factor beta (TGFbeta) increased steady state levels of 1,25D(3)-MARRS transcript and protein approximately two-fold [Rohe B, Safford SE, Nemere I, Farach-Carson, MC. Identification and characterization of 1,25D(3)-membrane-associated rapid response, steroid (1,25D(3)-MARRS)-binding protein in rat IEC-6 cells. Steroids 2005;70:458-63]. To determine if this up-regulation could be attributed to the function of a highly conserved consensus smad 3 binding element present in the proximal promoter of the 1,25D(3)-MARRS gene, we created a promoter-reporter [SEAP] construct that was responsive to TGFbeta (200 pM). Deletion or mutation of the smad 3 element greatly reduced the response of the 1,25D(3)-MARRS promoter to TGFbeta. Subsequent studies found that the smad 3 response element is bound by a protein found in the IEC-6 nuclear extract, most likely smad 3. Interestingly, although 1,25(OH)(2)D(3) alone did not increase expression of the 1,25D(3)-MARRS promoter-reporter, co-treatment of transfected IEC-6 cells with 1,25(OH)(2)D(3) and TGFbeta shifted the dose-response curve to a lower effective concentration (100 pM peptide). We conclude that TGFbeta is a transcriptional regulator of 1,25D(3)-MARRS expression via a functional smad 3 element and that cross-talk with non-classical 1,25(OH)(2)D(3)-stimulated pathways occurs. The findings have broad implications for redox-sensitive signaling phenomena including those that regulate phosphate transport in the intestine.

Animals↗

Altered morphology in cultured rat intestinal epithelial IEC-6 cells is associated with alkaline phosphatase expression.

Non-transformed, rat intestinal epithelial cells (IEC-6), and human intestinal colonic carcinoma cells (CACO-2) have both been used to study processes of epithelial cell differentiation. However, only CACO-2 cells have been described as spontaneously expressing phenotypic changes of differentiation in culture. We report here that when IEC-6 cells are grown in post-confluent culture, they develop structural changes similar to those seen in cells induced to differentiate by culture on Englebreth-Holm-Swarm (EHS) extracellular matrix proteins. Correlated with this morphological change is loss of nuclear localization of c-myc protein and development of cell surface alkaline phosphatase (ALP) enzymatic activity. Messenger RNAs for liver and intestinal isoforms of ALP were expressed in both pre- and post-confluent cells. Inhibition of ALP activity in post-confluent cells by levamisole indicated the expressed ALP activity to be of the liver isoform. We suggest the expression of ALP activity, which occurs concomitantly with morphological alterations in post-confluent IEC-6 cells, represents increased expression and localization to the cell surface of the liver isoform of ALP. Cultured IEC-6 cells may provide a non-transformed, in vitro alternative to CACO-2 cells for study of epithelial cell differentiation.

Alkaline Phosphatase↗