Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “KB Cells”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 145 records · Page 8Linked to original sources

Endocytosis of folate-protein conjugates: ultrastructural localization in KB cells.

It has been demonstrated that proteins covalently conjugated to folic acid may be taken up by cells via endocytosis after binding to a folate binding protein (FBP) in the cell membrane. The proteins taken up in this manner remain catalytically active and they may modify physiological processes occurring in the cytosol. Confocal fluorescence microscopy of KB cells incubated with FITC-bovine serum albumin-folic acid conjugates showed that after uptake, the conjugates resided in large vesicular structures. The purpose of the present study was to determine the subcellular localization of protein-folic acid conjugates in KB cells using folic acid-bovine serum albumin-colloidal gold (F-BSA-CG) as a tracer. F-BSA-CG conjugates were taken up via uncoated pits or caveolae, and resided primarily in multivesicular bodies (MVBs) and other tubular endosomes at early time points (15-60 min). At later time points (6 hours), conjugates were still contained in MVBs but some were also found in secondary lysosomes or free in the cytoplasm. Coincubation of KB cells with transferrin-colloidal gold (TF-CG) and F-BSA-CG resulted in colocalization of TF-CG and F-BSA-CG within endosomal elements at times later than 15 minutes, indicating that the caveolae-mediated F-BSA-CG endocytic pathway converged with a pathway utilized by clathrin-coated pits.

Biological Transport↗

[Vincristine-resistant human KB cell line and mechanism of multidrug resistance].

A multidrug-resistant (mdr) clone of human cancer KB cells was isolated by stepwise selection on exposure to increasing doses of vincristine. The final clone, KBv200, obtained after ethylmethane sulfonate (EMS) mutagenesis showed 175-fold higher resistance to vincristine than did KB cells. The cells were also cross-resistant to taxol, colchicine and adriamycin. Cellular accumulation of vincristine in KBv200 was decreased to less than one-fifth of that in KB. To determine the presence of mdr 1 mRNA in KBv200 and KB, total cellular RNAs from each cell line were analyzed by means of slot blot hybridization. The result showed that the mdr 1 gene had been highly expressed in KBv200. In addition, verapamil, a calcium channel blockers, was shown to increase VCR accumulation in KBv200 and reverse the vincristine resistance. All these results demonstrate that the mechanism of KBv200 cell resistance to multiple drugs resulted from increased expression of mdr 1 gene and brought about over production of P-glycoprotein and increased the efflux of drugs.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

[Adenylate cyclase activation and its effects on intracellular cAMP in infected KB cells during trypsin-induced infectious Sendaï virus production (author's transl)].

KB cells infected by Sendaï virus can produce infectious virus if they are trypsinated twice over 24 h. Adenylate cyclase activity in infected KB cells is higher and more strongly activated by trypsin than that of control cells, but intracellular concentration of cAMP is the same, except during a short time after trypsinations, especially after the second trypsination which causes infectious virus production. During this short time, intracellular cAMP is slightly higher in infected cells. This miseffect of adenylate cyclase activation on intracellular cAMP concentrations might be related to an increased cell permeability caused by trypsin.

Adenylyl Cyclases↗

Ribonucleotide reductase from herpes simplex virus (types 1 and 2) infected and uninfected KB cells: properties of the partially purified enzymes.

Mammalian ribonucleotide reductase is a complex enzyme modified in its activity by a complex regulatory system involving adenosine triphosphate (ATP) and deoxyribonucleoside triphosphates. Infection of KB cells with herpes simplex virus (HSV) type 1 or 2 induces the formation of an altered ribonucleotide reductase. The properties of partially purified reductase from uninfected KB cells have been compared with the enzymes obtained from HSV-1 and HSV-2 infected KB cells. We found that the virus-induced enzymes are similar to the KB enzyme in some properties but differed significantly from the host enzyme in three respects: (1) virus induced reductase was not inhibited significantly by deoxythymidine triphosphate regardless of ATP concentration, (2) magnesium was not required for virus enzyme activity although 2 mM-Mg2+ did stimulate the reaction, and (3) magnesium concentration required for optimal activity was different for virus and host enzymes. These changes are evidence that the enzyme molecules present after infection by HSV-1 or HSV-2 differ from those present before infection.

Adenosine Triphosphate↗

Expression of a heterodimeric (placental-intestinal) hybrid alkaline phosphatase in KB cells.

A hybrid heterodimeric alkaline phosphatase expressed in KB cells, consisting of placental and intestinal (fetal) subunits, was purified by use of two different immunoaffinity columns using the monoclonal antibodies 2HIMS-1 and HPMS-1. The closely related subunits were found to yield a dimeric active enzyme glycosylated as the mature heterodimeric forms. This enzyme displays intermediate properties to the placental and intestinal (fetal) isozymes with regard to heat stability, inhibition patterns with amino acids and amino acid derivatives, as well as reactivity with monoclonal antibodies specific for human alkaline phosphatase isozymes. Peptide fragments obtained from the hybrid enzyme after cyanogen bromide cleavage belong to either the placental or intestinal (meconial) isozyme as evaluated by SDS polyacrylamid gel electrophoresis, and the N-terminal amino acid sequences, corresponding to the placental and intestinal subunits, can be identified in the peptide fragments. By N-glycanase digestion or tunicamycin treatment, the molecular mass of the subunits was reduced to 62 kDa compared to 69 kDa for the native ones. The results confirm that some cell lines can synthesize hybrid alkaline phosphatases.

Alkaline Phosphatase↗

Arginine deprivation in KB cells. I. Effect on cell cycle progress.

When exponentially growing KB cells were deprived of arginine, cell multiplication ceased after 12 h but viability was maintained throughout the experimental period (42-48 h). Although tritiated thymidine ([(3)H]TdR) incorporation into acid-insoluble material declined to 5 percent of the initial rate, the fraction of cells engaged in DNA synthesis, determined by autoradiography, remained constant throughout the starvation period and approximately equal to the synthesizing fraction in exponentially growing controls (40 percent). Continous [(3)H]TdR-labeling indicated that 80 percent of the arginine-starved cells incorporated (3)H at some time during a 48-h deprivation period. Thus, some cells ceased DNA synthesis, whereas some initially nonsynthesizing cells initiated DNA synthesis during starvation. Flow microfluorometric profiles of distribution of cellular DNA contents at the end of the starvation period indicated that essentially no cells had a 4c or G2 complement. If arginine was restored after 30 h of starvation, cultures resumed active, largely asynchronous division after a 16-h lag. Autoradiographs of metaphase figures from cultures continuously labeled with [(3)H]TdR after restoration indicated that all cells in the culture underwent DNA synthesis before dividing. It was concluded that the majority of cells in arginine-starved cultures are arrested in neither a normal G1 nor G2. It is proposed that for an exponential culture, i.e. from most positions in the cell cycle, inhibition of cell growth after arginine with withdrawal centers on the ability of cells to complete replication of their DNA.

Arginine↗

[Technique for isolation and purification of metaphase chromosomes of KB cells].

Metaphase chromosomes were isolated from KB cells according to Salzman and Mendelsohn's method. Whole-mount electronic microscopic preparations of chromosomes in situ, after isolation and after purification showed that the morphological patterns of this material are preserved in spite of physical and chemical treatments (pH 3).

Cell Fractionation↗

Cytotoxic effects of a doxorubicin-transferrin conjugate in multidrug-resistant KB cells.

Cancer chemotherapy is often limited by the emergence of multidrug-resistant tumor cells. Multidrug resistance (MDR) can be caused by amplification of the MDR genes and overexpression of the P-glycoprotein, which is capable of lowering intracellular drug concentrations. A doxorubicin-transferrin conjugate has been synthesized and exerts its cytotoxic effects through a transmembrane mechanism. We have examined the cytotoxicity of this conjugate and compared it with doxorubicin in sensitive (KB-3-1) and in multidrug-resistant KB cell lines (KB-8-5, KB-C1, and KB-V1). In the clonogenic assay, doxorubicin exhibited IC50 concentrations of 0.03 and 0.12 microM in the sensitive (KB-3-1) and resistant (KB-8-5) cell lines, respectively, whereas, doxorubicin-transferrin conjugate was more effective with IC50 concentrations of 0.006 and 0.028 microM, respectively. In highly multidrug-resistant KB-C1 and KB-V1 cells, doxorubicin up to 1 microM did not cause any cytotoxic effects, while the doxorubicin-transferrin conjugate inhibited colony formation of these cells with IC50 levels of 0.2 and 0.025 microM, respectively. These results demonstrate that doxorubicin-transferrin is effective against multidrug-resistant tumor cells.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Calpain-calpastatin interactions in epidermoid carcinoma KB cells.

We examined the activation of mu-calpain in human epidermoid carcinoma KB cells following a rise in intracellular calcium concentration using antibodies specifically recognizing different activation states of mu-calpain. KB cells possess calpastatin activity in large excess of calpain activity as analyzed by ion exchange HPLC. Stimulation of the cells with a calcium ionophore, ionomycin, caused production of the autolytic intermediate form (M(r) = 78 k) of mu-calpain derived from the preautolysis form (80 k), while the fully autolyzed postautolysis form (76 k) remained below detectable levels at all times. The appearance of the autolytic intermediate paralleled limited proteolysis of the membrane-associated calpastatin fractions (110 k and 106 k); the resulting fragments (68 k and 45 k) were released into the cytosol. Both the production of the autolytic mu-calpain intermediate and the limited proteolysis of calpastatin in cell lysates in the presence of calcium were inhibited by a synthetic calpastatin peptide, indicating that proteolysis of calpastatin was indeed catalyzed by calpain and that the autolytic intermediate may have exerted the proteolytic activity. Furthermore, mu-calpain autolysis and calpastatin degradation, upon ionomycin treatment, were both augmented by epidermal growth factor (EGF). These results suggest that calpastatin serves not only as an inhibitor but also as a substrate for calpain at cell membranes and that intracellular conditions associated with the cell cycle may affect the activation of mu-calpain.

Amino Acid Sequence↗

Interactions of KB-cell glycoproteins with an adenovirus capsid protein.

Glycoprotein material extracted from human KB cells with a flurocarbon, trichlorotrifluoroethane (Arklone P), into a waste-soluble fraction binds to fibre, a structural protein of the adenovirus type-5 capsid. The fibre-binding glycoprotein(s) were purified by ion-exchange chromatography on DEAE-Sephadex and affinity chromatography on a fibre-Sepharose support. The purification procedure also includes a trypsinization step which eliminates the bulk of contaminating KB cell proteins present in the aqueous fraction without appreciably affecting the activity of the fibre-binding glycoprotein(s). Some comparison is made of the membrane-bound receptors for adenovirus and the water-soluble fibre-binding glycoprotein(s).

Adenoviridae↗

Tumour cell uptake of the metastasis inhibitor ruthenium complex NAMI-A and its in vitro effects on KB cells.

PURPOSE: The uptake of NAMI-A (imidazolium trans-imidazoledimethylsulphoxidetetrachlororuthenate) by KB cells in vitro was compared with the effects of this compound on the cell cycle phase distribution of the cells. METHODS: NAMI-A uptake was determined by flameless atomic absorption spectroscopy, and the cell cycle phase distribution was determined by flow cytometry. RESULTS: NAMI-A uptake was proportional to its concentration in the incubation medium. The use of a number of incubation conditions showed that NAMI-A uptake from MEM was independent of the presence of serum and dependent on the presence of amino acids in the incubation medium, and that NAMI-A uptake was markedly higher when the cells were incubated in PBS. The uptake increase observed in PBS did not occur when the cells were kept at 0-4 degrees C, suggesting the presence of active transportation of NAMI-A into cells. In addition, the presence of divalent cations such as Ca(2+) and Mg(2+), appeared to facilitate NAMI-A uptake. The anionic substance transport inhibitor probenecid significantly reduced the active transportation of NAMI-A into cells. The effects of NAMI-A on cell cycle distribution were strictly dependent on its uptake by tumour cells and not on its extracellular concentration. CONCLUSIONS: These findings suggest the interaction of NAMI-A with biological components resulting in possible consequences for the distribution of the compound itself. Furthermore, NAMI-A enters tumour cells both by passive diffusion and by active transportation.

Amino Acids↗

Characterization of the tumorlike (T) antigen induced by type 12 adenovirus. I. Purification of the antigen from infected KB cells and a hamster tumor cell line.

The T antigen induced by type 12 adenovirus was purified from KB cells infected in the presence of 10(-6)m 5-fluoro-2-deoxyuridine to inhibit synthesis of viral capsid antigens. The antigen was purified approximately 200-fold, and the purified product contained only negligible amounts of host-cell contaminants, as judged by the residual radioactivity from (14)C-labeled uninfected cells which had been added to infected cells at the initiation of the purification. Immunoelectrophoresis indicated that the purified T-antigen preparation contained a single antigenic species. The T antigen from a hamster cell line (HT-1) derived from a type 12 adenovirus-induced tumor was purified by the same procedure. The T antigens from the two different sources were shown to be immunologically similar by use of a rabbit antiserum prepared against the purified T antigen from infected KB cells and sera from hamsters bearing tumors induced by type 12 adenovirus.

Adenoviridae↗

Arsanilic acid-Sepharose chromatography of pyruvate kinase from KB cells.

In the present study, arsanical-based affinity chromatography for pyruvate kinase (PK) isolation was explored. p-Arsanilic acid (4-aminophenyl arsonic acid), which contains an arsonic acid moiety structurally similar to inorganic pentavalent arsenate, was conjugated to Sepharose 4B via its para-amino group to form an As(V)-Sepharose matrix. The cellular proteins from KB cells bound to arsonic acid moieties were eluted by 50 mM sodium arsenate in Tris-HCl buffer (50 mM, pH 7.6). A single protein band with a molecular mass of 58 kDa was shown on a sodium dodecyl sulfate-polyacrylamide gel. By immunoblotting, amino acid sequencing and enzymatic analysis, the sodium arsenate-eluted 58-kDa protein was demonstrated to be a human PK (type M2). By using this one-step As(V)-Sepharose chromatography, PK from KB cells was purified 35.4-fold with a specific activity of 153.15 U/mg protein in the presence of 6 mM fructose-1,6-biphosphate. Although PK was eluted from an As(V)-Sepharose column with sodium arsenate, PK activity was apparently inhibited by the used eluent system, but not by p-arsanilic acid, indicating a specific interaction of As(V) to PK. In summary, our results indicate that As(V)-Sepharose can serve as a simple and efficient chromatographic support for PK purification from KB cells.

Arsanilic Acid↗

Response of cultured mammalian cells to diphtheria toxin. V. Concurrent resistance to ribonucleic acid viruses in diphtheria toxin-resistant KB cell strains.

It was determined that KB-R cell strains, isolated from the KB cell line and resistant to diphtheria toxin, also resist infection by poliovirus, Mengo virus, vesicular stomatitis virus, and Newcastle disease virus. This resistance manifests itself by reduction in yields of progeny virus (a reduction of more than 2 logs in some cases), reduced production of viral-specific ribonucleic acid (RNA), and delayed cytopathic effect. In three KB-R strains tested, resistance was related to a step which falls between adsorption of virus and uncoating or release of viral messenger RNA. In two of these three strains, a second resistance mechanism was also active, causing a reduced production of viral-specific RNA. A relationship between the resistance to diphtheria toxin and the resistance to viral infection of the KB-R strains is considered. It has been postulated that the native diphtheria toxin molecule must be "activated" at the surface of a susceptible cell by a proteolytic process before it can enter the cell and inhibit protein synthesis. It is also known that the eclipse of some viruses occurs at or near the cell membrane and involves proteolytic activity. Resistance to viruses and toxin in the KB-R strains may result from the loss or modification of related labilizing or activating principles associated with the surface receptors for these agents.

Carbon Isotopes↗

[Effects of cultural conditions on hexavalent chromium uptake and the cytotoxicity thereof in KB cell culture].

To reveal the effects of cultural conditions on the cytotoxicity of hexavalent chromium, the uptake of sodium chromate (Na2CrO4) by KB cells and the colony-forming efficiency of the cells were examined under various cultural conditions. The results were summarized as follows: 1) The chromium uptake by the cells after a certain period of incubation with hexavalent chromium was inhibited with the decrease of the temperature (3 degrees, 20 degrees, 37 degrees C), increase of the serum concentration (0, 10, 20, 30%) and increase of pH (6.8-8.2) of the medium. In particular, low temperatures inhibited the chromium uptake by the cells remarkably. However, in relation to the serum addition, no marked effect was found. 2) The chromium uptake by the cells increased with the volume of the medium containing an identical concentration of chromium (2 ppm) and then reached saturation when it was about 0.23 microgram per 10(6) cells. On the other hand, the chromium uptake positively correlated with the concentration of chromium and the total chromium in the medium. 3) The difference of chromium uptake by the cells in different culture media was more marked at acidic pH than that at alkaline pH. However, there was no effect of calcium chloride and glucose concentrations on the uptake of chromium. The chromium uptake by the cells in Ca-Mg-free phosphate-buffered solution (PBS(-] was higher than that in other culture media. Consequently, the above results suggested that the chromium uptake by the KB cells might be affected by the various cultural conditions, especially by temperature, pH and medium volume.

Cations↗

[Apoptosis of human oral epidermoid carcinoma KB cells and multidrug resistant KBv200 cells induced by matrine].

OBJECTIVE: To investigate the induction of apoptosis on human oral epidermoid carcinoma KB cells and multidrug resistant KBv200 cells by Matrine. METHODS: MTT assay was used to investigate the inhibition ability of Matrine on the cells in vitro. Transmission electron microscope was used to observe the ultrastructure feature of cells. after treated by Matrine. Acridine orange (AO)/Ethidium bromide (EB) fluorescent staining and flow cytometry were used to observe apoptosis induced by Matrine. Flow cytometry was applied to study the effects of the drug on cell cycles of the cells. RESULTS: When 0.50, 1.00, 1.50, 2.00 mg/ml of Matrine was used, the vital rates of KB and KBv200 cells were decreased according to Matrine's concentration. The IC50 concentrations of Matrine on KB and KBv200 cells were 1.35 mg/ml and 1.43 mg/ml individually. The results of AO/EB fluorescent staining and flow cytometry showed that Matrine could induce apoptosis of two kinds of cells. While observed by transmission electron microscope, there were more contraction of cells, condensation of nuclei, bubble of cytoplasm in both kinds of cells after treated by Matrine. Matrine could stop the growth of KB and KBv200 cells at S period and restrain mitosis of cells. CONCLUSION: Matrine can inhibit the growth of KB and KBv200 cells by inducing apoptosis. The apoptosis effect is dose-dependent and it has certain relation to the blocking of S period cells.

Alkaloids↗

Delivery of antisense oligodeoxyribonucleotides against the human epidermal growth factor receptor into cultured KB cells with liposomes conjugated to folate via polyethylene glycol.

Antisense oligodeoxyribonucleotides targeted to the epidermal growth factor (EGF) receptor were encapsulated into liposomes linked to folate via a polyethylene glycol spacer (folate-PEG-liposomes) and efficiently delivered into cultured KB cells via folate receptor-mediated endocytosis. The oligonucleotides were a phosphodiester 15-mer antisense to the EGF receptor (EGFR) gene stop codon (AEGFR2), the same sequence with three phosphorothioate linkages at each terminus (AEGFR2S), a randomized 15-mer control of similar base composition to AEGFR2 (RC15), a 14-mer control derived from a symmetrized Escherichia coli lac operator (LACM), and the 5'-fluorescein-labeled homologs of several of the above. Cellular uptake of AEGFR2 encapsulated in folate-PEG-liposomes was nine times higher than AEGFR2 encapsulated in nontargeted liposomes and 16 times higher than unencapsulated AEGFR2. Treatment of KB cells with AEGFR2 in folate-PEG-liposomes resulted in growth inhibition and significant morphological changes. Curiously, AEGFR2 and AEGFR2S encapsulated in folate-PEG-liposomes exhibited virtually identical growth inhibitory effects, reducing KB cell proliferation by > 90% 48 hr after the cells were treated for 4 hr with 3 microM oligonucleotide. Free AEGFR2 caused almost no growth inhibition, whereas free AEGFR2S was only one-fifth as potent as the folate-PEG-liposome-encapsulated oligonucleotide. Growth inhibition of the oligonucleotide-treated cells was probably due to reduced EGFR expression because indirect immunofluorescence staining of the cells with a monoclonal antibody against the EGFR showed an almost quantitative reduction of the EGFR in cells treated with folate-PEG-liposome-entrapped AEGFR2. These results suggest that antisense oligonucleotide encapsulation in folate-PEG-liposomes promise efficient and tumor-specific delivery and that phosphorothioate oligonucleotides appear to offer no major advantage over native phosphodiester DNA when delivered by this route.

Base Sequence↗

Post-transcriptional control regulates transforming growth factor alpha in the human carcinoma KB cell line.

Expression of epidermal growth factor receptor (EGF-R) antisense RNA results in a drastic reduction of EGF-R levels in the human carcinoma KB cell line and induces a reversion of their transformed phenotype (Moroni, M. C., Willingham, M. C., and Beguinot, L. (1992) J. Biol. Chem. 267, 2714-2722). We used parental and EGF-R antisense KB clones as a genetic system to study, in the same cell line, the role of transforming growth factor alpha (TGF-alpha) in the establishment and maintenance of the transformed phenotype. KB cells produce TGF-alpha mRNA, and their conditioned medium is able to sustain growth of antisense cells, mimicking the effect of exogenous EGF or TGF-alpha. In antisense cells there is a marked reduction of TGF-alpha mRNA steady-state levels. In addition, the decrease in TGF-alpha parallels the levels of residual EGF-R in the various antisense clones, indicating a direct correlation between receptors and growth factor levels. The addition of exogenous TGF-alpha (10 ng/ml) to antisense clones induces TGF-alpha levels. The half-life of TGF-alpha mRNA is 40-60 min in antisense cells and more than 8 h in parental KB cells, as determined by actinomycin D decay curves. This result indicates a predominant regulation of TGF-alpha mRNA at the post-transcriptional level. Nuclear run-on experiments show that there is only a marginal effect at the transcriptional level. We conclude that the autocrine loop responsible for the transformed phenotype of the human carcinoma KB cell line is dependent on both elevated levels of EGF-R and the presence of TGF-alpha. In addition, TGF-alpha is able to induce its own mRNA via a signal due to activation of the EGF-R acting predominantly at the post-transcriptional level.

Animals↗