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At least 19 recordsLinked to original sources

Microtubules regulate expression of ICAM-1 in epidermoid cells (KB cells).

The intercellular adhesion molecule-1/CD54 (ICAM-1) functions as a counterreceptor for other adhesion molecules (e.g. the lymphocyte function-associated antigen-1/CD11a/CD18) required for the interaction of a large variety of cells with leucocytes. Constitutive expression of ICAM-1 in human epidermoid cells (KB cells) is low, but inducible by interferon-gamma (IFN-gamma). Treatment of KB cells with microtubule-disrupting agents, like colchicine, nocodazole and vinblastine, potentiated the constitutive and cytokine-induced ICAM-1 expression on the cell surface. Actinomycin D inhibited microtubule-disrupting agent-induced ICAM-1 surface expression. Increased steady-state levels of ICAM-1 transcripts were found after treatment of KB cells with microtubule-disrupting agents. However, microtubule-disrupting agents neither altered the glyceraldehyde-3-phosphate dehydrogenase mRNA levels nor the amount of expressed alpha(2)-, alpha(3)-and beta(1)-integrins at the cell surface. In addition, they did not change the ICAM-1 mRNA half-life. These studies indicate a control function of the microtubule network on the expression of ICAM-1.

Antineoplastic Agents↗

Expression and role of phosphodiesterase 3 in human squamous cell carcinoma KB cells.

Phosphodiesterase (PDE) 3s have been characterized in human squamous cell carcinoma KB cells. PDE3 activity was detected in homogenates of KB cells. PDE3A and 3B mRNAs were detected by RT-PCR in RNA from KB cells; the nucleotide sequences of the fragments were identical to those of human PDE3A and 3B. Immunoblotting with anti-PDE3 antibodies detected both PDE3A- and 3B-immunoreactive proteins in KB cells. The PDE3-specific inhibitor, cilostamide, inhibited the proliferation of KB cells. Our results indicate that PDE3s may be important regulators of the growth of KB cells. Therefore, PDE3 inhibitors may be potential new drugs for antiproliferative therapies in squamous cell carcinoma in the head and neck.

3',5'-Cyclic-AMP Phosphodiesterases↗

Glycosphingolipid glycosyl hydrolases and glycosidases of synchronized human KB cells.

KB cells were synchronized by a double thymidine block procedure. An investigation was made of the activities of alpha-L-fucosidase (EC 3.2.1.51), alpha-D-galactosidase (EC 3.2.1.22), beta-D-galactosidase (ec 3.2.1.23), alpha-D-glucosidase (EC 3.2.1.20), beta-D-glucosidase (EC 3.2.1.21), alpha-D-mannosidase (EC 3.2.1.24), beta-D-N-acetylgalactosaminidase (EC 3.2.1.53), and beta-D-N-acetylglucosaminidase (EC 3.2.1.52) from synchronized cultures, using appropriate artificial substrates. Ceramide glucosidase (EC 3.2.1.45) and ceramide trihexosidase levels (EC 3.2.1.47) were also investigated at various stages in the cell cycle, using appropriate glycosphingolipid substrates. Whereas each of these enzymes exhibited some activity throughout the cell cycle, peak activity (2- to 6-fold increase) occurred late in the S phase. Two molecular forms of ceramide glucosidase (optimal activity at pH 4.0 and pH 6.0) and two forms of ceramide trihexosidase (pH 4.0 and pH 7.5) were identified. Peak levels of the forms that preferred the relatively acid pH occurred earlier in the S phase of the cell cycle than those of the forms that were more active at the higher pH. The possibility that the forms with optimal activity at pH 4 are precursors of those with optimal activity at pH 6 to 7.5 is discussed. Precipitation of beta-galactosidase of synchronized KB cells with specific antibody revealed that changes in the activity of this enzyme during the cell cycle were the result of fluctuations in the amount of the enzyme.

Acetylgalactosamine↗

[Expression of Interleukin-8 in KB cells infected with Candida albicans].

PURPOSE: To investigate the change of interleukin-8 (IL-8) in oral epithelial cells (KB cells) infected with Candida albicans. METHODS: Two-site ELISA and RT-PCR were applied to determine the levels of IL-8 protein or mRNA expression in the KB cells induced by hyphae, yeast, killed Candida albicans and medium respectively. The unpaired Student's t test was used to analyse the data. RESULTS: Candida albicans induced the KB cells secrete more IL-8. The hyphae, yeast, killed Candida albicans and control group marks of RT-PCR were 180.23, 186.36, 143.41 and 85.57 respectively, calculated using a two-tailed test, P<0.05, was considered to be significant, but the medium group (mark 80.87) had no significant change. The tendency of the IL-8 protein secreted by KB cells increased with the time but reduced when Candida albicans was more. CONCLUSIONS: Candida albicans is responsible for the production of IL-8 secreted by oral epithelial cells which can be expected to play an important role in the infection and defection with the local oral mucosa.

Candida albicans↗

Immunoelectrophoretic study on the host antigens of Sendai virus cultivated in different substrates (embryonated hen eggs and KB cells). Note II. Analysis of KB cell host antigens.

It could be demonstrated by immunoelectrophoretic analysis that the host antigen incorporated in the envelopes of Sendai virus cultivated in KB cells (Sendai/KB) is characteristic of these cells and does not occur in the envelopes of the same virus grown in the embryonated hen egg (Sendai/egg). This host antigen appears from the first passage in KB cells and is constantly maintained over subsequent passages. The glycoproteins released by Triton X-100 disruption from Sendai/KB envelopes have a concomitant antigenic specificity for both virus and host. In the case of Sendai/egg virus, exclusively virus-specific macromolecules are also released.

Antigens↗

Multiple effects of glucocorticoids and hyperosmolality on isoenzyme expression in cultured KB cells.

The KB cell line, though indicted as a HeLa-contamined line, is a useful in vitro model for the study of the regulation of isoenzyme expression. KB cells produced three isoenzymic forms of alkaline phosphatase. When KB cells were grown in the presence of prednisolone and/or in hyperosmolar medium, the total enzyme activity was reduced. This change in activity was coupled with specific alterations in the proportion of each isoenzyme. The slow-moving form (identified biochemically and immunologically as the heat-stable, placental, Regan isoenzyme) was substantially increased by the steroid hormone and/or hyperosmolality. The fast-moving form [identified as the intestine-like, amnion (FL) isoenzyme] was strikingly diminished by either treatment. The intermediate form (tentatively referred to as "hybrid," inasmuch as it shared properties of the other two isoenzymes) was decreased only when KB cells were grown in hyperosmolar medium containing prednisolone. These results corroborated the notion that these stimuli cause the induction of increased levels of the heat-stable Regan alkaline phosphatase only. They also point out the necessity of performing isoenzyme analysis when one is investigating the regulation of this enzyme.

Alkaline Phosphatase↗

The half-life of the transcript encoding the folate receptor alpha in KB cells is reduced by cytosolic proteins expressed in folate-replete and not in folate-depleted cells.

The KB cell, a transformed human cell line, constitutively expresses a high level of the glycosylphosphatidylinositol (GPI) anchored folate receptor protein alpha (FR alpha) and thereby can grow in medium containing <1 nM folate. When transferred from a folate-replete (FR) medium to one folate-deficient (FD), intracellular folate diminishes about 50-fold and expression of the FR alpha increases 6-fold. This up-regulation is mediated by a 4.5-fold increase in the initial transcription rate and a 2.4-fold prolongation of the mRNA half-life that together provide a higher level of the steady-state mRNA abundance. An RNA gel -shift assay of a 5' region of the mRNA that includes all of the non-coding and 24 nt of coding sequence, and a 3' region comprised only of coding sequence, identified unique complexes with cytosolic proteins from the FR-KB cells that were not observed with the cytosol from FD-KB cells. It appears, therefore, that expression of these folate-dependent cytosolic trans-active proteins function to maintain a shorter half-life of the mRNA in the FR-KB cells by binding to 5' and 3' cis elements, reducing the stability of this transcript.

Blotting, Northern↗

Role of Pseudomonas aeruginosa culture filtrates in the association, invasion, and cytotoxicity against cloned cells from murine corneal epithelium and KB cells.

PURPOSE: To clarify the effect of Pseudomonas aeruginosa culture filtrates on the association with, invasion into, and cytotoxicity against cloned cells from murine corneal epithelial cells and KB cells. METHODS: Simian virus 40-transformed murine corneal epithelial (MCE) cells were established. Murine corneal epithelial cells and KB cells were infected with a protease-positive strain, IID1117 (Pa IID1117), and a protease-negative strain, IID1130 (Pa IID1130) of P. aeruginosa, and then tested for association and invasion of Pa IID1117. The cytotoxicity test was performed by incubating the cells with culture filtrate. RESULTS: Association of Pa IID1117 with KB cells pretreated with Pa IID1130 was significantly promoted. After pretreatment with culture filtrate, invasion was more effective into MCE cells than into KB cells. When infecting bacteria (Pa IID1117) were pretreated with protease inhibitor, invasion of the bacteria into MCE cells and KB cells clearly decreased. The cellular damage induced by the culture filtrate of Pa IID1130 was greater than the damage by that of Pa IID1117. CONCLUSION: These results suggest that association of P. aeruginosa with MCE cells and KB cells was influenced by the culture filtrates other than proteases, and that invasion of P. aeruginosa into MCE cells and KB cells was promoted by protease.

Animals↗

Different patterns of replication in influenza virus-infected KB cells.

When KB cells were infected either with the fowl plague (FPV) Rostock strain (Hav1N1) or the WSN (H0N1) strain of influenza A virus the yield of cell-associated haemagglutinin and neuraminidase polypeptides was essentially comparable, but virus particles were not produced in the FPV-KB system. WSN virus-infected KB cells synthesized normal amounts of mature virus particles and had all the characteristics of a permissive replication cycle. Biosynthesis and transport of RNP antigen from nucleus to cytoplasm of infected cells were traced by immunofluorescent staining at 4 and 8 hours after the beginning of infection. While the fluorescent-stained material was totally confined to the nuclei in FPV-infected KB cells, RNP antigen migrated out of the nucleus during the replicative cycle of WSN virus in the same host cell. Patterns of virus-specific protein synthesis were studied by pulse-labelling with 35S-methionine. The most significant feature concerned the amplification of synthesis of virus-induced matrix (M) protein which did not occur in FPV-infected cells but occurred normally during WSN infection. The different patterns of replication in the same host cell when infected by different influenza A viruses is discussed.

Cell Line↗

The interrelationship of the soluble and membrane-associated folate-binding proteins in human KB cells.

Human KB cells produce two immunologically cross-reactive folate-binding proteins: a particulate cell-associated protein which is solubilized by Triton X-100, and a soluble protein which is released into their growth medium. This compartmentation of these two folate-binding proteins provides a convenient system for studies of their biochemical relationship. The two folate-binding proteins behave similarly to the purified particulate and soluble folate-binding proteins of human milk in analysis by radioactive folate binding, Sephacryl S-200 gel filtration profiles, polyacrylamide gel electrophoresis in either Triton X-100 or sodium dodecyl sulfate, and in Triton X-100 binding based on sucrose density gradient ultracentrifugation in H2O and D2O. The two folate-binding proteins were endogenously labeled by pulsing methionine-starved KB cells with [35S]methionine, and each protein was purified to apparent homogeneity by affinity chromatography at different times during the chase with nonradioactive methionine. The time course of the changes in specific activity (moles of [35S]methionine per mole of folate-binding protein) revealed a more rapid initial rate of synthesis and an earlier maximum in specific activity for the cell-associated folate-binding protein than for the soluble folate-binding protein released into the growth medium. Differences in the levels and specific activities of the two folate-binding proteins of cells exposed to cycloheximide compared with simultaneous controls after pulsing with [35S]methionine suggest that, whereas the cell-associated folate-binding protein is probably produced by de novo protein synthesis, the soluble folate-binding protein seems to be produced from a cellular pool of an already synthesized protein. These results combined with the immunologic cross-reactivity of the two folate-binding proteins strongly suggest a precursor-product relationship between them.

Carrier Proteins↗

Induction of apoptosis in KB cells by pingyangmycin.

Pingyangmycin (PYM; Bleomycin A(5)), an antitumour antibiotic is currently used during anticancer therapy. Previous experiments demonstrated that the therapeutic efficiency of PYM for treatment of malignant tumours is considered to be related to its ability to cause DNA strand breaks in vitro. However, very little is known about the interaction of PYM with the target cells, and it is still unclear how PYM enters the cells. In this study, cell death induced by PYM was studied in a human squamous cell carcinoma cell line (KB cells). In order to determine if cell death occurred by necrosis (reproductive cell death) or apoptosis (programmed cell death), KB cells were exposed to different concentrations of PYM and evaluated by biochemical and morphological criteria. Our results indicate that KB cells displayed an arrest in the G(2)-M phase of the cell cycle and became enlarged and polynucleated before dying at the low concentrations of PYM. In contrast, when cells were exposed to high concentrations of PYM, morphological changes identical to those usually associated with apoptosis were observed as well as internucleosomal digestion of genomic DNA. In conclusion, we demonstrate that PYM is able to induce two distinct modes of cell death depending on the doses of PYM.

Antibiotics, Antineoplastic↗

Folate (pteroylglutamate) uptake in human red blood cells, erythroid precursors and KB cells at high extracellular folate concentrations. Evidence against a role for specific folate-binding and transport proteins.

Membrane-associated folate (pteroylglutamate, PteGlu)-binding proteins (FBPs) play an important role as PteGlu-transport proteins in malignant and normal human cells. Since high extracellular folate (PteGlu) concentrations (EFC) profoundly influenced uptake and toxicity of the anti-PteGlu methotrexate in malignant KB cells, we studied human cells to determine additional mechanisms for PteGlu uptake when the EFC was varied. At low EFC (less than 10 nM), the predominant mechanism for folate uptake in mature erythrocytes was through binding to externally oriented FBPs which were quantitatively insignificant (4-6 orders of magnitude lower) and of no apparent physiological relevance when compared with KB cells. However, the predominant mechanism of PteGlu accumulation at high EFC [10-250 nM] in intact erythrocytes and sealed right-side-out (RSO) ghosts was not FBP-mediated and non-specific. This conclusion was based on the findings that radiolabelled PteGlu uptake: (i) continued even in the presence of a 1000-fold excess of unlabelled PteGlu and was linear and not saturable up to 250 nM; (ii) was two-fold higher at pH 4.5 than 7.5; (iii) was less than 2-fold increased at 37 degrees C compared with 4 degrees C; and (iv) was unaffected after trypsin-mediated proteolysis of greater than 75% FBPs. The [3H]PteGlu and 125I-PteGlu (histamine derivative) accumulated intracellularly through the non-specific PteGlu-uptake mechanism was unaltered biochemically and in a soluble compartment. Raising the EFC 500-fold higher than controls during erythropoiesis in vitro resulted in reversal of the expected anti-(placental folate-receptor)-antiserum-induced megaloblastic changes in orthochromatic normoblasts derived from burst-forming unit-erythroid colonies. Furthermore, at EFC greater than 0.1 microM, KB-cell accumulation of [3H]PteGlu was also predominantly through a mechanism that did not involve specific FBPs. Thus, at high EFC, a major component of PteGlu transport in human cells is not mediated through FBPs and is likely to be a passive diffusion process.

Carrier Proteins↗

Increased vinblastine binding to membrane vesicles from multidrug-resistant KB cells.

Human KB carcinoma cells resistant to high levels of colchicine, vinblastine, vincristine, adriamycin, and actinomycin D exhibit reduced accumulation of these structurally unrelated chemotherapeutic agents (Akiyama, S.-I., Fojo, A., Hanover, J. A., Pastan, I., and Gottesman, M. M. (1985) Somatic Cell Mol. Genet. 11, 117-126; Fojo, A., Akiyama, S.-I., Gottesman, M. M., and Pastan, I. (1985) Cancer Res. 45, 3002-3007). To examine the mechanism of reduced drug accumulation in these cells, we measured [3H]vinblastine ([3H]VBL) binding to membrane vesicles made from drug-sensitive (KB-3-1), drug-resistant (KB-C4), and revertant (KB-R1) cells. Membrane vesicles from KB-C4 cells bound up to 8-fold more [3H]VBL than vesicles from the parental KB-3-1 or revertant KB-R1 cell lines. No difference in binding of [3H]dexamethasone, to which the cells are equally sensitive, was observed. The difference in [3H]VBL binding by vesicles from resistant and sensitive cells was eliminated by the addition of 10 micrograms/ml verapamil, which is known to reverse the multidrug-resistance phenotype. Drug binding by KB-C4 vesicles was osmotically insensitive, temperature-dependent, and trypsin-sensitive. Binding of [3H]VBL by KB-C4 vesicles was inhibited by vinblastine, vincristine, and daunomycin (in decreasing order). Dexamethasone at 100 microM, colchicine at 100 microM, and actinomycin D at 100 microM did not significantly inhibit [3H]VBL accumulation. No significant differences in tubulin content were detected among vesicles from sensitive and resistant cells. These data demonstrate that membrane vesicles from multiply drug-resistant cells bind increased amounts of vinblastine.

Cell Membrane↗

Experimental chemotherapy against xenografts derived from multidrug resistant KBv200 cells and parental drug-sensitive KB cells in nude mice by annonaceous acetogenin 89-2.

AIM: Annonaceous acetogenin 89-2 was obtained from atemoya plant. To investigate the effect of 89-2 on experimental chemotherapy against xenografts derived from multidrug resistant KBv200 cells and parental drug-sensitive KB cells. METHODS: Cytotoxicity was determined by tetrazolium (MTT) assay. The models of KB and KBv200 xenografts in nude mice were established to investigate the effect of 89-2 on experimental chemotherapy against cancer in vivo. Mechanistic experiments were conducted to examine the function of P-gp by Fura 2-AM assay. RESULTS: The compound 89-2 showed potent cytotoxicity in KBv200 and KB cells, and the mean IC50 of 89-2 to KBv200 and KB cells was 48.7 and 64.6 nmol.L-1, respectively. The IC50 of 89-2 to multidrug resistant (MDR) cells was similar to that to the parental drug-sensitive cells (P < 0.05). In the models of KBv200 and KB cell xenografts in nude mice, 89-2 (0.90 mg.kg-1, q2d x 6) exhibited 52.3% and 56.5% in inhibiting the growth of xenografts, respectively. The toxicity was endurable. The intracellular accumulation of Fura-2 in KBv200 cells increased to 1.66, 2.03, and 2.74-fold, respectively, by addition of 12.8, 64 and 320 nmol.L-1 of 89-2. CONCLUSION: Both MDR KBv200 cells and parental drug-sensitive KB cells were sensitive to the treatment of 89-2 in vitro and in vivo. The mechanism of overcoming MDR was associated with the decrease of P-gp function MDR cells.

4-Butyrolactone↗