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Internalization of the vasoactive intestinal peptide (VIP) in a human adenocarcinoma cell line (HT29).

The time course of internalization of radioiodinated vasoactive intestinal peptide (VIP) in HT29 cells was obtained using the technique of acetic acid removal of cell-surface-bound peptide. Even after 10 min incubation at 37 degrees C, 125I-VIP, initially bound on the HT29 cell surface, was compartmentalized within the cells. During the same time, degraded radioactive material was released by cells in the incubation medium. Localization of internalized 125I-VIP was investigated using two different subcellular fractionation techniques. 10 min after the onset of internalization, 125I-VIP labelling was found in intermediate structures and 10 min later the bulk of the radioactivity was detected in a low-density fraction containing very large lysosomes with a multivesicular aspect. The lysosomotropic agent NH4Cl appeared to inhibit 125I-VIP internalization, degradation and appearance of radiolabelled peptide in the large lysosomes in a time-dependent manner. Moreover, the effect of NH4Cl resulted in an accumulation of radioactive material in fractions containing microsomal structures. On the other hand, bacitracin, together with methylamine, highly enhanced 125I-VIP labelling in a membrane fraction, suggesting that these agents possibly act on a cell surface component of HT29 cells. These results support the conclusion that in HT29 cells, prelysosomal structures and large secondary lysosomes are probably part of the intracellular pathway of internalized VIP.

Adenocarcinoma↗

Expression of wild-type p53 stimulates an increase in both Bax and Bcl-xL protein content in HT29 cells.

It has been shown previously that wild-type p53 activity can simultaneously up-regulate Bax, a protein which predisposes cells to programmed cell death (PCD), and down-regulate Bcl-2, a protein which antagonizes PCD. These findings have been interpreted to suggest that correction of the mutant p53 status of some tumor cells may be a means of increasing their sensitivity to chemotherapeutic agents, by increasing their likelihood of undergoing PCD. We show here that when wild-type p53 activity is expressed in HT29 human colon cancer cells by use of a temperature sensitive p53 mutant, Bax levels rise, but so do levels of Bcl-xL protein. These observations indicate that Bcl-2 and Bcl-xL are regulated differently in response to wild-type p53 activity and that, while correction of mutant p53 phenotype may effectively kill cells having Bcl-2 as their major defense against PCD, this is not necessarily the case in cells using Bcl-xL as their primary defense.

Apoptosis↗

[The expression of sialyl Lewis-X antigen in LoVo, HT29 cell lines of colorectal cancer and its correlation with metastatic potential].

OBJECTIVE: To study the correlation of sialyl Lewis-X (SLeX) antigen expression with the metastatic potential of human colorectal cancer. METHODS: The expression of biosynthetic enzyme of SLeX antigen--alpha1, 3Fuc-T mRNA in various cell lines of colorectal cancer possessed with different metastatic potentials (LoVo and HT(29)) was investigated by in situ hybridization. The expression of SLeX antigen was studied using immunohistochemistry and fluorescence-activated flow cytometry qualitatively and quantitatively. RESULTS: The expression level of alpha1, 3Fuc-T mRNA and SLeX antigen in highly metastatic LoVo cells was high (21.2 +/- 7.7, 32.8 +/- 10.9, P < 0.05), and the expression level was low in HT(29) cells (10.8 +/- 5.2, 21.9 +/- 8.8) which are known possessed with a lower metastatic potential. CONCLUSION: The expression of SLeX antigen is correlated to the metastatic potentiality of human colorectal cancer.

Cell Line, Tumor↗

Ursolic acid inhibits proliferation and stimulates apoptosis in HT29 cells following activation of alkaline sphingomyelinase.

BACKGROUND: Ursolic acid (UA) is a plant component with anti-inflammatory and anti-proliferative properties. Its effect on colon cancer is not clear. We studied the anticancer effects of UA on human colon cancer cells. MATERIALS AND METHODS: HT-29 cells were treated with UA. Cell proliferation was determined by cleavage of WST-1. Apoptosis was assayed by cytosolic DNA-histone complex and caspase activity. Sphingomyelinase and alkaline phosphatase were determined against specific substrates. RESULTS: UA dose-dependently decreased cell proliferation and induced apoptosis, accompanied by activation of caspase 3, 8 and 9. Its antiproliferative effect was stronger than those of sulindac and camptothecin and its apoptotic effect stronger than those of boswellic acid and sulindac. UA selectively increased the activity of intestinal alkaline sphingomyelinase, which occurred before activation of caspases. UA had no effect on alkaline phosphatase activity. CONCLUSION: UA has strong anti-proliferative and apoptotic effects on HT-29 cells. The effects may be mediated by alkaline sphingomyelinase activation.

Alkaline Phosphatase↗

Resveratrol-induced G2 arrest through the inhibition of CDK7 and p34CDC2 kinases in colon carcinoma HT29 cells.

Resveratrol (3,5,4'-trihydroxystilbene), a phytoalexin found in grapes and other food products, has been shown to have cancer chemopreventive activity. However, the mechanism of the anti-carcinogenic activity is not well understood. Here, we offer a possible explanation of its anti-tumor effect. Based on flow cytometric analysis, resveratrol inhibited the proliferation of HT29 colon cancer cells and resulted in their accumulation in the G(2) phase of the cell cycle. Western blot analysis and kinase assays demonstrated that the perturbation of G(2) phase progression by resveratrol was accompanied by the inactivation of p34(CDC2) protein kinase, and an increase in the tyrosine phosphorylated (inactive) form of p34(CDC2). Kinase assays revealed that the reduction of p34(CDC2) activity by resveratrol was mediated through the inhibition of CDK7 kinase activity, while CDC25A phosphatase activity was not affected. In addition, resveratrol-treated cells were shown to have a low level of CDK7 kinase-Thr(161)-phosphorylated p34(CDC2). These results demonstrated that resveratrol induced cell cycle arrest at the G(2) phase through the inhibition of CDK7 kinase activity, suggesting that its anti-tumor activity might occur through the disruption of cell division at the G(2)/M phase.

Antineoplastic Agents↗

Lycopene and beta-carotene protect against oxidative damage in HT29 cells at low concentrations but rapidly lose this capacity at higher doses.

Epidemiological studies have clearly demonstrated a link between dietary carotenoids and the reduced incidence of certain diseases, including some cancers. However recent intervention studies (e.g. ATBC, CARET and others) have shown that beta-carotene supplementation has little or no beneficial effect and may, in fact, increase the incidence of lung cancers in smokers. This presents a serious dilemma for the scientific community - are carotenoids at high concentrations actually harmful in certain circumstances? Currently, a significant number of intervention studies are on-going throughout the world involving carotenoids (of both natural and synthetic origin). Our approach has been to study the ability of supplementary carotenoids in protecting cells against oxidatively-induced DNA damage (as measured by the comet assay), and membrane integrity (as measured by ethidium bromide uptake). Both lycopene and beta-carotene only afforded protection against DNA damage (induced by xanthine/xanthine oxidase) at relatively low concentrations (1-3 microM). These levels are comparable with those seen in the plasma of individuals who consume a carotenoid-rich diet. However, at higher concentrations (4-10 microM), the ability to protect the cell against such oxidative damage was rapidly lost and, indeed, the presence of carotenoids may actually serve to increase the extent of DNA damage. Similar data were obtained when protection against membrane damage was studied. This would suggest that supplementation with individual carotenoids to significantly elevate blood and tissue levels is of little benefit and, may, in fact, be deleterious. This in vitro data presented maybe significant in the light of recent intervention trials.

Antioxidants↗

Spontaneous and induced dome formation by two clonal cell populations derived from a human adenocarcinoma cell line, HT29.

The replacement of glucose by galactose in the culture medium resulted in partial structural and functional enterocytic differentiation of HT29 cells. In order to characterize populations of homogeneously differentiated HT29 cells we have selected two clonal cell lines HT29-D4 and HT29-D9 with the following functional and structural characteristics when grown in a galactose-containing medium: the two clonal cell populations were permanently morphologically differentiated as shown by the presence of mature junctional complexes and a well-organized brush border (especially for HT29-D4 cells); HT29-D4 and HT29-D9 cells were able to form domes early in confluency, which indicated a functional state of differentiation; the process of differentiation was fully reversible when glucose was added to the culture medium. The induction of domes was investigated in these two cell populations and we demonstrated for the first time that proteolytic enzymes are potent inducers of dome formation. The architecture of domes either obtained spontaneously or induced by proteolytic enzymes was not maintained in the presence of ouabain (a specific inhibitor of the Na+/K+-ATPase). In conclusion, HT29-D4 and HT29-D9 cells can be maintained permanently in a differentiated state in a glucose-free medium and were able to form domes at confluency. The observation that proteolytic enzymes were able to induce dome formation can help in the comprehension of the mechanism involved in the establishment of the differentiated state.

Adenocarcinoma↗

Wild-type p53 gene transfer into mutated p53 HT29 cells improves sensitivity to photodynamic therapy via induction of apoptosis.

Photodynamic therapy (PDT) is an effective local cancer treatment that induces cytotoxicity through the intracellular generation of reactive oxygen species. It is generally thought that p53 regulates chemotherapy and radiation therapy responsiveness via apoptosis induction control. The current study investigated whether cellular sensitivity to PDT is increased when a wild-type (wt) p53 status is restored by gene transfer in the established HT9blk Ala273-mutant p53 human colon cancer cell line. The photosensitizer accumulation was similar in both cell lines, and survival measurements using MTT test and clonogenic assays demonstrated that wt p53 transfected cells (HT29A4) were significantly more sensitive to chlorin e6-mediated PDT. P53 protein expression and its functionality as a transcription factor demonstrated through the induction of mdm2 transactivation, were not found to be directly involved in this differential photosensitivity. However, induction of caspase 3 activation (2.6-fold), leading to significant apoptosis induction 24-h after PDT was observed in HT29A4 cells. These results suggest that the introduction of wt p53 in HT29A4 potentiates the cell sensitivity to PDT through the induction of apoptosis in relation to p53 mutational status, but independently of p53 expression level and transcriptional activity.

Apoptosis↗

Lipoteichoic acids from Lactobacillus johnsonii strain La1 and Lactobacillus acidophilus strain La10 antagonize the responsiveness of human intestinal epithelial HT29 cells to lipopolysaccharide and gram-negative bacteria.

Intestinal epithelial cells (IECs) respond to lipopolysaccharide (LPS) from gram-negative bacteria in the presence of the soluble form of CD14 (sCD14), a major endotoxin receptor. Since sCD14 is also known to interact with gram-positive bacteria and their components, we looked at whether sCD14 could mediate their effects on human IECs. To this end, we examined the production of proinflammatory cytokines following exposure of the IECs to specific gram-positive bacteria or their lipoteichoic acids (LTAs) in the absence and presence of human milk as a source of sCD14. In contrast to LPS from Escherichia coli or Salmonella enteritidis, neither the gram-positive bacteria Lactobacillus johnsonii strain La1 and Lactobacillus acidophilus strain La10 nor their LTAs stimulated IECs, even in the presence of sCD14. However, both LTAs inhibited the sCD14-mediated LPS responsiveness of IECs. We have previously hypothesized that sCD14 in human milk is a means by which the neonate gauges the bacterial load in the intestinal lumen and liberates protective proinflammatory cytokines from IECs. The present observations suggest that gram-positive organisms, via their LTAs, temper this response and prevent an exaggerated inflammatory response.

Chemokine CXCL5↗

Telomerase inhibition by an siRNA directed against hTERT leads to telomere attrition in HT29 cells.

Human telomerase is a ribonucleoprotein complex composed of at least the reverse catalytic transcriptase hTERT and RNA component hTR. The enzyme stabilizes telomere length and thereby contributes to unlimited cell proliferation, i.e. immortality. Reactivation of telomerase activity during carcinogenesis is a common hallmark in most human tumor types. Consequently, telomerase is an attractive molecular target toward which to direct cancer therapeutic agents. RNA interference (RNAi) has been shown to be an effective method for inhibiting the expression of a given gene in human cells by targeting with short duplex RNA (short-interfering RNA or siRNA). Thus, we evaluated the ability of siRNAs to inhibit telomerase activity in the HT29 immortal human colorectal adenocarcinoma cell line as a model for colorectal carcinogenesis. By transient expression of a specific siRNA directed against hTERT, we reduced telomerase activity in the transfected cells. Moreover, telomere lengths were reduced in cells stably expressing this particular RNA sequence, cloned as an shRNA into an eukaryotic expression vector. The cell clone that displayed a telomerase-negative phenotype showed dramatically reduced telomere lengths and stopped proliferation. We observed that the vector was integrated into the cell genome and, despite telomere shortening, cells retained their MSI phenotype. We conclude that we have developed a potent telomerase inhibitor leading to cell death.

Adenocarcinoma↗

Gene targeting of a CFTR allele in HT29 human epithelial cells.

HT29 cells endogenously express the cystic fibrosis transmembrane conductance regulator (CFTR) and have been used previously as a model to examine cellular regulation of CFTR expression and chloride secretory function. Homologous recombination has been used to specifically disrupt CFTR transcription in the HT29-18-C1 subclone. Experiments demonstrate successful disruption of a CFTR allele by DNA constructs, which target insertion of the neomycin phosphotransferase gene into CFTR exon 1 via homologous recombination. The mutation of one allele is a partial knockout because this cell line has multiple CFTR alleles. The mutation is confirmed by polymerase chain reaction (PCR) and genomic Southern blot analysis. A 52-68% reduction in CFTR mRNA levels is observed in the mutant cell line by both Northern and PCR analysis. However, Western blots show no decrease in total CFTR protein levels. Consistent with the lack of reduction in CFTR protein, the partial knockout mutant does not demonstrate alterations in cyclic AMP or calcium stimulation of chloride efflux or net osmolyte loss. Results suggest that posttranscriptional regulation of CFTR levels may contribute to maintenance of cellular chloride transport function.

Alleles↗

Activation of phosphatidylinositol turnover by neurotensin receptors in the human colonic adenocarcinoma cell line HT29.

Association of neurotensin to its receptor in HT29 cells increases the intracellular concentration of inositol phosphates. A rapid (20-30 s), transient stimulation of inositol trisphosphate (275% of the basal level) and inositol bisphosphate (420%) is first observed, followed by a slower, stable increase in inositol monophosphate (170%). Half-maximal stimulation of the three inositol phosphates was obtained with 50-100 nM neurotensin. These results indicate that neurotensin is able to regulate intracellular Ca2+ levels in HT29 cells by using inositol trisphosphate as a second messenger.

Adenocarcinoma↗

Influence of metabolic inhibitors on the degradation of tight junctions in HT29 cells.

The human colon adenocarcinoma cell line HT 29 grows in culture without tight junctions (TJ). Tight junction strands of the fascia occludens type can be induced by treatment with proteases and are subsequently degraded during a period of about 3 h. Experiments using a variety of metabolic inhibitors such as 2-deoxyglucose, 2,4-dinitrophenol, and CCCP show that the degradation of TJ is retarded under conditions of ATP depletion. Thus it appears that the removal of TJ from the cell surface is an energy-dependent process. Moreover, DNP can specifically inhibit the degradation of TJ even in the absence of ATP depletion. The possible involvement of a proton gradient in the mechanism of TJ degradation is discussed.

2,4-Dinitrophenol↗

Aldosterone binding in the human colon carcinoma cell line HT29: correlation with cell differentiation.

The purpose of the present study is to investigate aldosterone binding to human colon carcinoma HT29 cells. These cells grow as undifferentiated epithelial cells when cultured under standard conditions (Dulbecco's MEM; 10% FCS). Modification of the culture medium induced two types of differentiation: (1) enterocytic differentiation when glucose (25 mM) is replaced by galactose (5 mM) (2) mucus secreting cells in FCS free medium. Aldosterone specific binding was detected in the cytosolic fraction of enterocyte-differentiated cells. This binding corresponded to a single class of sites with affinity, specificity and anion-exchange chromatographic behaviour similar to those observed in the epithelial crypts of human colon. These putative aldosterone receptors were also detected in mucus secreting cells that are derived from the enterocyte-differentiated cells. Enterocytic differentiation appears thus to be a necessary step for the "induction" of aldosterone receptors in HT29 cells.

Aldosterone↗

Matrilysin 1 influences colon carcinoma cell migration by cleavage of the laminin-5 beta3 chain.

Matrilysin 1 [matrix metalloproteinase 7 (MMP7)] is one of the most important metalloproteinases expressed in human tissues. This enzyme is generally not expressed by normal differentiated epithelial colon cells, but has been shown to be up-regulated in human colon adenomas and adenocarcinomas. Little is known about the role of MMP7 in cell invasion and its involvement in proteolytic processes. By searching the ligands of MMP7 in the colonic carcinoma cells HT29, we identified laminin-5/laminin-332 (LN5) as a specific target for MMP7 enzymatic activity. LN5, composed of alpha3, beta3, and gamma2 chains, is an important component of epithelial basement membranes where it induces firm adhesion and hemidesmosome formation. In this study, we show that LN5 and MMP7 are coexpressed in HT29 cells as well as in HT29 xenograft tumors and human colorectal adenocarcinomas. We provide evidence that human LN5 is a ligand for MMP7 and that a specific cleavage occurs in its beta3 chain, giving rise to a carboxyl-terminal beta3 chain fragment of 90 kDa. We have identified the MMP7 cleavage site at position Ala(515)-Ile(516) in the beta3 chain. Videomicroscopic analysis of HT29 cells plated on LN5 substrates reveals that the MMP7-processed LN5 significantly enhances cell motility. Moreover, the delayed migration of HT29 cells obtained after specific inhibition of MMP7 reinforces the hypothesis supporting its involvement in cell migration. Altogether, our results show that MMP7 is likely to play a crucial role in the regulation of carcinoma cell migration by targeting specific proteolytic processing of the LN5 beta3 chain.

Adenocarcinoma↗

The vasoactive intestinal peptide (VIP) receptor: recent data and hypothesis.

Vasoactive intestinal peptide (VIP) is a neuropeptide with a broad range of biological activities in various tissues. After interaction with its membrane receptor, VIP generally induces a very large increase in the intracellular cyclic AMP level. Receptors for VIP have been described in numerous tissues and cell lines. The first results on VIP receptor structure have been obtained by covalent cross-linking using bifunctional reagents. The molecular mass of the different components characterized in this way differs greatly according to the species and the tissue used. This heterogeneity may reflect either a difference in the length of the cross-linked polypeptide backbone or differently glycosylated forms of the same polypeptide. The VIP binding site of intact human adenocarcinoma cells (HT29 cells) is an Mr 64,000 glycoprotein with 20kDa of N-linked oligosaccharide side chains containing sialic acid. The structure of the VIP binding site from HT29 cell is compared, first to the structure of the VIP receptor from other tissues, particularly that from rat liver, and second to the structure of the hepatic glucagon binding site. Recently, solubilization of the VIP receptor in an active form has provided a new way of studying this receptor. The HT29 cell line is an appropriate model to study the dynamics of the VIP receptor. After binding to its receptor, VIP is rapidly internalized, probably by receptor-mediated endocytosis. This internalization leads to a decrease in the cell surface receptor number and simultaneously to a homologous desensitization of adenylate cyclase. VIP is then degraded in the lysosomes, while most of the receptors are recycled back to the cell surface. The presence of an intracellular pool of unoccupied VIP receptors has been demonstrated after inactivation of the cell surface receptors by chymotrypsin. The kinetics of the receptor reappearance at the cell surface, after inactivation by chymotrypsin or after receptor-mediated endocytosis, indicate 2 possible intracellular pathways for occupied and unoccupied VIP receptors.

Acetylglucosaminidase↗

Growth inhibition of a colonic adenocarcinoma cell line (HT29) by T cells specific for mutant p21 ras.

Mutations at codons 12, 13 or 61 of the ras proto-oncogenes are found in adenocarcinomas of the colon and rectum. Mutated ras encode tumor-specific proteins, and can elicit CD4+ HLA-class-II-restricted T cell responses both in mouse and man. The function of such T cells is, however, unclear. In a model system, we investigated whether HLA-class-II restricted CD4+ T cells, specific for a particular peptide derived from mutant p21 ras (Gln61-->Leu), might inhibit the growth of a colonic cancer cell line, when it was cultured in the presence of the corresponding peptide. We found in this case that the growth of the colonic adenocarcinoma cell line HT29, when also induced to express HLA class II molecules by interferon gamma treatment, was inhibited. The inhibition was peptide-specific and required the presence of HLA-DQ8 molecules on the target cell. However, HLA-DQ8-expressing HT29 cells functioned poorly as antigen-presenting cells and could only induce a weak proliferative T cell response in the presence of interleukin-2. The results suggest that colonic cancer cells expressing peptides derived from mutant p21 ras protein in a complex with HLA class II molecules may be a target for tumor-specific T cells. The results also indicate, however, that an initiation of the immune response will require "professional" antigen-presenting cells.

Adenocarcinoma↗