Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0019204 (hepatocellular carcinoma)
71,386 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Using an indirect immunoperoxidase technique on frozen sections with the monoclonal antibody 96.5, we investigated the in situ distribution of melanotransferrin, a transferrin (Tf) and transferrin receptor (TfR) related glycoprotein, in human liver. Specimens included normal liver, liver in iron overload, hepatocellular carcinoma, angioma and foetal liver. On light microscopy, immunoreactivity was almost exclusively present on sinusoidal lining cells, apparently endothelial cells; the pattern was similar in normal and in iron-loaded liver. A gradient of more enhanced staining in acinar zone II and III was observed. The endothelial localization of the staining was supported by the positivity of the central vein endothelium and of the angiomas. Immunoelectron microscopy on three liver specimens showed positivity on sinusoidal endothelial cells but not on Ito and Kupffer cells. In addition, positivity on rough endoplasmic reticulum vesicles of some hepatocytes was also present. Four hepatocellular carcinomas showed an intense staining in tumour cells, 3 were weakly positive and 3 were negative. In the foetal livers, the central vein endothelium was positive from 21 weeks of gestation onward and additional positivity of zone III sinusoidal endothelial cells was present from 27 weeks on. The present results show that in the liver melanotransferrin has a localization different from Tf and the TfR. These latter molecules are predominantly localized in parenchymal cells. In addition, there does not appear to be a coordinate regulation secondary to iron storage, between melanotransferrin, Tf and the TfR. The observed gradient in the staining pattern in foetal and adult liver specimens further supports the heterogeneity of the endothelial cell population in the liver and suggests a developmental relationship between endothelial cells of sinusoids and central vein.
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PMID:In situ localization of melanotransferrin (melanoma-associated antigen P97) in human liver. A light- and electronmicroscopic immunohistochemical study. 254 Mar 89

In order to determine if iron was able to stimulate specifically ferritin synthesis and secretion in transformed human hepatocytes in culture, human hepatoma cell (HepG2) cultures were submitted to increasing doses of ferric nitrilotriacetate. Iron uptake by the cells was demonstrated by incorporation of 59 Fe and the staining method of Perls. The following results were obtained: 1. iron incorporation within the hepatocytes increased as a function of culture time; 2. during the first 24 h of treatment, ferritin synthesis increased progressively, in parallel to the iron uptake; 3. a dose-dependent significant stimulation of ferritin synthesis and secretion were observed when the medium iron concentration increased from 5 to 20 mumol/l; 4. albumin, transthyretin and transferrin secretions were unaffected. These data demonstrated that, in our hepatocyte culture model, iron load increased the expression of ferritin in a highly specific manner.
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PMID:Iron induction of ferritin synthesis and secretion in human hepatoma cell (Hep G2) cultures. 254 99

Transferrin synthesized by a human hepatocellular carcinoma cell line Hep G2 (called Hep G2 transferrin) was purified from culture media by immunoaffinity chromatography on a rabbit anti-(human serotransferrin) IgG column. The eluted transferrin was then resolved into five peaks on a cation-exchange column using the fast protein liquid chromatography system. The major fraction, named Hep G2 transferrin fraction C, having a molecular mass of 82.5 kDa was found to be homogeneous in polyacrylamide gel electrophoresis and in concanavalin-A-affinity crossed immunoelectrophoresis. A comparative analysis of the molar carbohydrate composition of normal human serotransferrin and of Hep G2 transferrin fraction C shows an increase in the latter in the number of galactose and N-acetylglucosamine residues and in the presence of fucose, which is absent in normal transferrin. By a combination of methylation analysis and NMR spectroscopy, the primary structure of the oligosaccharide alditols released from Hep G2 transferrin fraction C by reductive alkaline cleavage has been established as triantennary, tetraantennary and pentaantennary N-acetyllactosaminic structures with fucose residues (alpha 1-3)-linked to peripheral N-acetylglucosamine residues. These results indicate that the increase in the number of antennae in transferrin glycans synthesized by the hepatocarcinoma cell line is much more pronounced than in liver diseases such as alcoholic cirrhosis and that, in addition, the malignant transformation of human liver induces the presence of fucose.
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PMID:Presence of fucosylated triantennary, tetraantennary and pentaantennary glycans in transferrin synthesized by the human hepatocarcinoma cell line Hep G2. 255 87

The cellular uptake and lysosomal accumulation of 67Ga-labelled transferrin within tumors of different malignancy were examined using tissue fractionation and immunological techniques. As tumor models the slowly growing Morris hepatoma 5123 C, the moderately growing Novikoff hepatoma and the fast and aggressive Yoshida hepatoma AH130 were investigated. Isolation of subcellular fractions of tumor homogenates was performed by differential centrifugation and density-gradient centrifugation. The intracellular 67Ga-transferrin was found to be highly concentrated within the purified lysosomes. The transferrin within the lysosomal fraction was identified by radial immunodiffusion technique using monospecific antiserum. The accumulation of 67Ga-transferrin by the tumors resulted in a faster disappearance of 67Ga-transferrin from the blood. This loss of circulating 67Ga-transferrin correlated with the proliferation activity and the spread of the tumors. Since transferrin is indispensible for the utilization of iron by the heme-synthesizing red cell precursors, transferrin concentration in the blood is the limiting factor for the utilization of iron in hemoglobin synthesis. Thus, in a further series of experiments we investigated the development of anemia in tumor-bearing rats. With increasing tumor mass a progressive fall of hemoglobin concentration was found. The anemia was more severe in the faster growing Novikoff hepatoma than in the slowly growing Morris hepatoma. The most significant reduction of hemoglobin concentration was found in the very fast growing Yoshida hepatoma. After total tumor resection hemoglobin concentration and red blood cell count normalized completely within 6-8 weeks. We conclude from these data that the uptake of transferrin by the tumor cells results in a faster disappearance of transferrin from the blood.(ABSTRACT TRUNCATED AT 250 WORDS)
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PMID:[Anemia in malignant tumor diseases. II. Tumor-induced loss of transferrin as a cause of the development of anemia based on a rat model]. 260 49

We have previously reported that Reuber H-35 rat hepatoma cells secrete an autocrine growth-stimulating activity in serum-free culture. To characterize this activity, conditioned serum-free medium from dense H-35 donor cultures was collected in the absence and presence of [35S]methionine. A 1:4 dilution of conditioned medium into fresh serum-free medium resulted in an increase in mean H-35 cell numbers per assay dish from 1.59 +/- 0.12 X 10(5) to 3.35 +/- 0.34 X 10(5) after 44 h of incubation. Control, unconditioned medium, resulted in significantly (P less than 0.05) less growth (2.14 +/- 0.41 X 10(5) cells per dish). Trypsin digestion eliminated the growth-promoting effect of conditioned medium but had no effect on unconditioned medium. Dialysis did not diminish the growth-promoting activity of conditioned medium. The immunoprecipitate of [35S]methionine-containing conditioned medium with antisera against rat serum transferrin contained a dominant radioactive doublet of molecular weight equal to purified rat serum transferrin. A rat transferrin radioimmunoassay was devised and used to quantitate that 29.1 +/- 1.2 ng of transferrin was secreted per 10(6) cells per hour in serum-free culture. Addition of antitransferrin antibody resulted in a significant (P less than 0.025) decrease in H-35 cell growth after 48 h. Thus, a portion of the autocrine growth-promoting activity secreted by H-35 cells into serum-free culture is due to transferrin.
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PMID:Transferrin is an autocrine growth factor secreted by Reuber H-35 cells in serum-free culture. 266 85

Cellular uptake of 67Ga-labelled transferrin by the tumor tissue was studied in rats with tumors of different malignancy and different tumor mass using the slowly growing Morris hepatoma 5123C, the moderately growing Novikoff hepatoma and the very fast and aggressive Yoshida hepatoma AH130. The cellular accumulation of 67Ga-transferrin was found to correlate with the proliferation activity of the tumor. The 67Ga-transferrin concentration in the very fast growing Yoshida hepatoma was 4.8 times higher than the concentration in the slowly growing Morris hepatoma. The uptake of 67Ga-transferrin by the tumors resulted in a faster disappearance of circulating 67Ga-transferrin from the blood. The rate of disappearance correlated with the proliferation activity and the spread of the tumors. Using tumors of identical size the elimination of 67Ga-transferrin from the blood was much faster in the rats with Yoshida hepatoma than in those with the slowly growing Morris hepatoma. On the other hand, using tumors of different tumor size it could be demonstrated that the rate of disappearance of 67Ga-transferrin from the blood correlated directly with tumor mass. It is concluded that cellular incorporation of transferrin within the tumor cells results in a loss of circulating transferrin, which correlates with tumor mass and proliferation of tumor. This mechanism is supposed to be the cause for the hypotransferrinemia seen in patients with malignant tumors.
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PMID:[Anemia in malignant tumor diseases. I. Tumor-induced loss of transferrin and its relation to tumor size and degree of malignancy in the rat model]. 281 83

We have established by transient expression experiments that the 620 base pairs upstream of the cap site of the human transferrin gene contain the information necessary for efficient expression of the gene in hepatoma cells HepG2 or Hep3B but not in HeLa cells. DNase I footprint analysis reveals that at least five distinct factors present in human or rat liver nuclear extracts interact with different sites of this region. One of these factors, binding to nucleotides -193 to -162, is closely related to or identical with the eukaryotic factor CCAAT-binding transcription factor/nuclear factor I; another one, binding to nucleotides -103 to -83 seems to be related to the CCAAT-binding protein. The binding sites of two other factors, not recognized by HeLa nuclear proteins, each contain an identical 10-nucleotide-long sequence (5' TCTTTGACCT 3') in reverse orientation, separated by 400 base pairs. Results of gel retardation assays, cross-competition experiments, and heat inactivation strongly suggest that the proteins binding to these sites are different. One of these sequences and the binding site of the CCAAT-binding protein related factor are located in the region between nucleotides -119 and -45. We have shown by transient expression experiments with 3' deleted vectors that this region is functionally essential for human transferrin gene expression.
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PMID:Interactions of DNA-binding proteins with the 5' region of the human transferrin gene. 283 77

A new human hepatocellular carcinoma (HCC) cell line, KYN-2, has been established from a surgical specimen obtained from a 52-year-old Japanese male HCC patient. The originally resected HCC was classified as pleomorphic HCC corresponding to Edmondson-Steiner's grade III with a thick trabecular to solid arrangement. The cell line has been maintained for 17 months through 35 passages. Morphologically, the KYN-2 cells have retained the characteristics of the original HCC, being pleomorphic and composed of various types such as cells with relatively small, polygonal, eosinophilic cytoplasm and oval-shaped nuclei with a marked tendency to pile up, flat cells with abundant clear cytoplasm and oval-shaped nuclei, and many multinucleated giant cells, proliferating in a pavement-like cell arrangement. Some junctional complexes and a number of microvilli are evident between the cells by electron microscopy. Functionally, these cells were found to secrete albumin, alpha 1-acid glycoprotein, alpha 1-antitrypsin, ceruloplasmin, transferrin, complement C, fibrinogen, fibronectin, prothrombin, retinol-binding protein (serum type), alpha-fetoprotein (AFP), carcinoembryonic antigen (CEA), ferritin and beta 2-microglobulin in chemically defined medium (CDM). The secretion of AFP and CEA is apparently dependent upon culture medium and passage. The doubling time of cells growing in serum-containing medium at the 14th passage was 84 h, and those of cells in serum-containing medium, HB101 (serum-free medium) and CDM at late passage were 28, 68, and 42 h, respectively. Chromosome analysis revealed that the chromosome number ranged from 56 to 69 without a mode, and the presence of marker chromosomes. HB virus DNA sequence was not detected by hybridization analysis. The tumorigenicity of KYN-2 cells was identified by development of tumors in nude mice after subcutaneous injection of the cells; the tumors showed an appearance basically similar to that of the original HCC. Thus, these findings suggest that the KYN-2 cell line is available as a new human HCC cell line and should be useful for various studies on HCC.
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PMID:A new human pleomorphic hepatocellular carcinoma cell line, KYN-2. 284 82

Minimal deviation hepatoma (Hepa) cells, from the mouse hepatoma B7756, synthesize and secrete haemopexin and express both the haemopexin receptor and the membrane haem-binding protein (MHBP) associated with the receptor, making this cell line the first available for detailed study of both haemopexin metabolism and hepatic transport. The 17.5 kDa MHBP was detected in Triton X-100 extracts of Hepa cells by immunoblotting with goat anti-rabbit MHBP. Scatchard-type analysis of haem-125I-haemopexin binding at 4 degrees C revealed 35,000 receptors per cell of high affinity (Kd 17 nM). Haemopexin-mediated haem transport at 37 degrees C is saturable, having an apparent Km of 160 nM and a Vmax. of 7.5 pmol of haem/10(6) cells per h during exponential growth. Haem-transport capacity is highest in the period just before the cells enter their exponential phase of growth and slowest in stationary phase. Interestingly, haem-haemopexin serves as effectively as iron-transferrin as the sole source of iron for cell growth by Hepa cells. Furthermore, depriving Hepa cells of iron by treatment with desferrioxamine (DF) increases the number of cell-surface haemopexin receptors to 65,000 per cell and consequently increases haemopexin-mediated haem transport. The effects of DF do not appear to require protein synthesis since they are not prevented by cycloheximide. Treatment of Hepa cells with hydroxyurea, an inhibitor of the iron-requiring enzyme ribonucleotide reductase that is obligatory for DNA synthesis, enhanced haemopexin-mediated haem transport. Thus, these studies provide the first evidence for regulation of haem transport by the iron status of cells and suggest a linkage between haemopexin, iron homeostasis and cell growth.
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PMID:Expression of the haemopexin-transport system in cultured mouse hepatoma cells. Links between haemopexin and iron metabolism. 285 10

It is presently unknown what factors regulate the rate of intracellular transport of secretory proteins. The human hepatoma cell line Hep G2 is highly differentiated and secretes many of the proteins characteristic of normal hepatocytes. The secretion kinetics of nine proteins by Hep G2 cells in culture was investigated using pulse-chase techniques and immunoisolation of proteins with monospecific antibodies. Our results show that the export of nine proteins falls into three discrete kinetic classes: (i) a rapidly secreted class with an intracellular retention half-time of 30-40 min (albumin, fibronectin, alpha-fetoprotein and alpha 1-proteinase inhibitor), (ii) an intermediate secreted class with a half-time of 75-80 min (ceruloplasmin, alpha 2-macroglobulin and plasminogen), (iii) and a slowly secreted class with an intracellular retention half-time of 110-120 min (fibrinogen and transferrin). Our findings that there are three distinct kinetic classes of secretory proteins strongly suggests that intracellular transport is selective and that proteins of the same secretory class share structural features which influence their rate of export.
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PMID:Three secretory rates in human hepatoma cells. 299 May 78


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