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Biomedical subjects

L B Chen

Publications and source records attributed to L B Chen.

At least 19 recordsLinked to original sources

Increased expression of human ribosomal phosphoprotein P0 messenger RNA in hepatocellular carcinoma and colon carcinoma.

To search for differentially expressed gene products in selected cancers of endodermal origin, cDNA libraries derived from mRNA in human hepatocellular carcinoma and adjacent grossly normal tissue were generated. From these parent libraries, subtracted cDNA libraries of tumor minus normal and normal minus tumor tissues were constructed. After screening these subtracted libraries by +/- hybridization, a cDNA clone that is overexpressed in hepatocellular carcinoma and encodes the human acidic ribosomal phosphoprotein P0 (P0) was identified. We then evaluated the expression of this phosphoprotein P0 in human colon carcinoma samples. Surgical specimens of primary tumors and liver metastases were examined by Northern hybridization of total RNA with one of 2 32P-labeled P0 probes. The mRNA level of the P0 was greater in primary colon carcinoma than in paired adjacent normal colonic epithelium in 36 of 38 cases; the mean tumor/normal ratio was 2.7 (range, up to 13). The tumor/normal ratio, when plotted against the Dukes' stage of disease, gave evidence for increasing P0 expression with increasing stage of colon carcinoma (P = 0.02). In all 8 cases of paired colon carcinoma metastatic to liver and 2 cases of paired primary hepatocellular carcinoma, the P0 mRNA level was greater in tumor than in adjacent normal liver tissue. The mean tumor/normal ratio was 4.0 (range, up to 11) for the colon cancers metastatic to liver and 4.2 for the primary hepatocellular carcinoma samples. These findings support a common increased expression of selected gene products in different tumors of endodermal origin and suggest that increased P0 expression, in line with certain other ribosomal proteins, may be associated with human colorectal cancer progression and biological aggressiveness.

Blotting, Northern

Differences in messenger RNA expression of carcinoembryonic antigen in surgical specimens of colorectal carcinoma.

Carcinoembryonic antigen (CEA) is the most widely used tumor marker for colorectal cancer. Plasma CEA levels have been variably associated with prognosis. Since plasma CEA level is multifactorial, CEA gene expression in tumors may provide one precise mechanism to evaluate its functional role. This study evaluated CEA expression at the messenger RNA (mRNA) level in 22 human colorectal carcinomas and their adjacent normal mucosae by Northern blot hybridization using a 32P-labeled CEA probe (a loop-domain specific cDNA, LV7). Both tumor and normal mucosa displayed three mRNA species of 4.0, 3.6, and 3.0 kb in length. The expression of 3.6-kb mRNA which encodes for CEA was dominant and it was correlated with another 4.0-kb CEA mRNA expression. The expression of 3.0-kb mRNA which encodes for nonspecific cross-reacting antigen was weak and not detectable in 8 of 22 colon tumors and 12 of 22 normal colon mucosae. In only one tumor, a 4.5-kb mRNA (which might encode for a new family member of CEA) was expressed. A two- to fourfold higher expression of CEA mRNA (3.6 kb) was observed in 11 of 22 colorectal tumors (2 of 9 proximal colon tumors and 9 of 14 rectosigmoid tumors) when compared with morphologically normal adjacent mucosae. Preoperative plasma CEA levels and Dukes' staging had no correlation with this CEA mRNA expression. CEA mRNA did not appear to correlate with metastasis because its expression in the primary colon cancers with metastases (Dukes' stage D tumor) was not always increased. These data also imply that factors other than mRNA expression in tumor might be important in regulating plasma CEA levels.

Aged

Ultrastructural study on extrahepatic infection of duck hepatitis B virus in ducks.

Kidney and pancreas tissues from congenitally infected Ma ducks with duck hepatitis B virus (DHBV) were examined by immunohistochemical staining technique and electron microscopy. The immunostaining showed that DHBV antigen was localized in the cytoplasm of tubular epithelial cells of kidney and acinar cells of pancreas of infected ducks. Under electron microscope, we found that complete and incomplete DHBV particles existed in the dilated cisternae of rough endoplasmic reticulum of both the cells. The size of complete and incomplete virus particles was nearly uniform in both the cells, 50-65 nm and 40-50 nm in diameter respectively. Therefore, extrahepatic infection and replication of DHBV were directly demonstrated ultrastructurally.

Animals

Efflux-mediated multidrug resistance in Bacillus subtilis: similarities and dissimilarities with the mammalian system.

Bacillus subtilis cells selected for their resistance to rhodamine 6G demonstrated a multidrug-resistance (MDR) phenotype resembling that of mammalian MDR cells. Like MDR in mammalian cells, MDR in bacteria was mediated by the efflux of the drugs from the cells. The bacterial multidrug efflux system transported similar drugs and was sensitive to similar inhibitors as the mammalian multidrug transporter, P-glycoprotein. The gene coding for the bacterial multidrug transporter, like the P-glycoprotein gene in mammalian MDR cells, was amplified in the resistant bacteria. On the other hand, the bacterial multidrug transporter showed no sequence similarity to P-glycoprotein but exhibited an obvious homology to tetracycline efflux pumps and carbohydrate-ion symporters. These results show that the transport of structurally unrelated molecules can be mediated by members of different families of membrane transporters.

ATP Binding Cassette Transporter, Subfamily B, Mem

J-aggregate formation of a carbocyanine as a quantitative fluorescent indicator of membrane potential.

The spectral properties of a novel membrane potential sensitive probe (JC-1) were characterized in aqueous buffers and in isolated cardiac mitochondria. JC-1 is a carbocyanine with a delocalized positive charge. It formed under favorable conditions a concentration-dependent fluorescent nematic phase consisting of J-aggregates. When excited at 490 nm, the monomers exhibited an emission maximum at 527 nm and J-aggregates at 590 nm. Increasing concentrations of JC-1 above a certain concentration caused a linear rise in the J-aggregate fluorescence, while the monomer fluorescence remained constant. The membrane potential of energized mitochondria (negative inside) promoted a directional uptake of JC-1 into the matrix, also with subsequent formation of J-aggregates. The J-aggregate fluorescence was sensitive to transient membrane potential changes induced by ADP and to metabolic inhibitors of oxidative phosphorylation. The J-aggregate fluorescence was found to be pH independent within the physiological pH range of 7.15-8.0 and could be linearly calibrated with valinomycin-induced K+ diffusion potentials. The advantage of JC-1 over rhodamines and other carbocyanines is that its color altered reversibly from green to red with increasing membrane potentials. This can be exploited for imaging live mitochondria on the stage of a microscope.

Animals

Presence of an SH2 domain in the actin-binding protein tensin.

The molecular cloning of the complementary DNA coding for a 90-kilodalton fragment of tensin, an actin-binding component of focal contacts and other submembraneous cytoskeletal structures, is reported. The derived amino acid sequence revealed the presence of a Src homology 2 (SH2) domain. This domain is shared by a number of signal transduction proteins including nonreceptor tyrosine kinases such as Abl, Fps, Src, and Src family members, the transforming protein Crk, phospholipase C-gamma 1, PI-3 (phosphatidylinositol) kinase, and guanosine triphosphatase-activating protein (GAP). Like the SH2 domain found in Src, Crk, and Abl, the SH2 domain of tensin bound specifically to a number of phosphotyrosine-containing proteins from v-src-transformed cells. Tensin was also found to be phosphorylated on tyrosine residues. These findings suggest that by possessing both actin-binding and phosphotyrosine-binding activities and being itself a target for tyrosine kinases, tensin may link signal transduction pathways with the cytoskeleton.

Actins

Intracellular heterogeneity in mitochondrial membrane potentials revealed by a J-aggregate-forming lipophilic cation JC-1.

By using a potential-dependent J-aggregate-forming delocalized lipophilic cation, 5,5',6,6'-tetrachloro-1,1',3,3'-tetraethylbenzimidazolocarbocyanine++ + iodide (JC-1), we find that membrane potentials across mitochondria in a living cell can be heterogeneous. Remarkably, even within a long contiguous mitochondrion, regional heterogeneity in membrane potentials appears to be possible.

Animals

Ubiquitin hybrid protein gene expression during human colon cancer progression.

Ubiquitin is involved in cell-cycle control and DNA replication through a specific proteolytic pathway. Our previous studies demonstrated selected higher expression of a gene encoding ubiquitin-ribosomal protein S27a in poorly differentiated colon carcinoma cell lines. In this study, we evaluated this ubiquitin hybrid protein gene expression in surgical specimens of colon cancers. Northern blot analysis showed that ubiquitin hybrid protein messenger RNA was overexpressed in primary colon cancers compared with adjacent normal colon mucosae in 17 of 20 patients. Dot blot analysis of RNA of 27 tumor samples revealed significantly greater expression in higher Dukes' stage primary colon tumors and liver metastases. These data imply that protein translation machinery is highly activated during progression and metastasis of colon tumors, and that ubiquitin hybrid protein may be useful as a marker of biological aggressiveness.

Aged

Electron microscopic studies of the endoplasmic reticulum in whole-mount cultured cells fixed with potassium permanganate.

A method for visualizing the endoplasmic reticulum and other membrane organelles in whole-mount cells with a standard, 60-kV transmission electron microscope has been developed. By use of a new formulation of potassium permanganate as a fixative, intracellular membranes were preserved and stained, while cytosolic proteins were digested, giving a pattern of membranous organelles against a clear background, suitable for transmission EM of whole-mount cells at 60 kV. Mitochondria, lysosomes, and ER were clearly visible in whole-mount cells fixed by this method. We have employed this technique to examine the organization of the ER in a variety of different cell lines. This method also allowed visualization of the three-dimensional organization, relationships, and fine structure of mitochondria. With prolonged permanganate fixation, mitochondrial cristae were clearly visible in whole-mount cells. This method was also useful for fixation and staining of thin sections, and allowed examination of thicker sections than previously possible, thus giving improved imaging of organelle relationships and fine structure. Using this method, we have examined the ER, mitochondria, and Golgi in thin section.

3T3 Cells

Expression of a Mr 32,000 laminin-binding protein messenger RNA in human colon carcinoma correlates with disease progression.

Cell surface receptors for laminin may play an important role in tumor migration and metastasis. To evaluate laminin receptor/laminin-binding protein expression in human colon carcinoma, surgical specimens of primary colon cancers and liver metastases were examined by blot hybridization of total RNA with a complementary DNA clone which encodes a Mr 32,000 human laminin-binding protein. The mRNA level of the laminin-binding protein was higher in primary colon carcinoma than in adjacent normal colonic epithelium in 20 of 21 cases. In all 6 cases of colon cancer liver metastases, the laminin-binding protein mRNA level was more than 3-fold greater in tumor than in adjacent normal liver tissue. The tumor/normal ratio of this laminin-binding protein mRNA expression in primary colon cancer has significant correlation with Dukes' classification (P less than 0.001). Our results suggest that mRNA expression of the laminin-binding protein may be a marker of human colorectal cancer progression and biological aggressiveness.

Adenocarcinoma

Inhibition of rodent protein kinase C by the anticarcinoma agent dequalinium.

Dequalinium has previously been shown to be an anticarcinoma agent (M. J. Weiss et al., Proc. Natl. Acad. Sci. USA, 84: 5444-5448, 1987). The present study demonstrates that it can inhibit protein kinase C-beta 1 isolated from an overproducing cell line with a 50% inhibitory concentration of 8-15 microM. Further examination of the inhibition by using structural analogues of dequalinium reveals that the length of the methylene bridge between the two quinaldinium moieties, the presence of the ring substituents, and the bipartite character of the compound each contributes to the inhibitory potency. Related studies show that the analogues display the same rank order of inhibitory potency when tested with the trypsin-generated catalytic fragment of the enzyme, indicating that dequalinium inhibits kinase activity through an interaction with the catalytic subunit. Further studies argue that the ability of a given analogue to inhibit phosphotransferase activity correlates with its ability to compete with [3H]phorbol-12,13-dibutyrate binding on the intact enzyme (50% inhibitory concentration of 2-5 microM). This suggests that the inhibitor is either binding directly to the regulatory subunit as well, or that due to its interaction with the catalytic subunit, dequalinium produces an indirect effect on sites defined by phorbol ester binding. Kinetic analysis revealed that inhibition is noncompetitive with respect to ATP or phosphatidylserine. Studies conducted with types I, II, and III rat brain isozymes, resolved by hydroxylapatite chromatography, demonstrate that dequalinium inhibits each of them with similar potency (50% inhibitory concentration of 11 microM) and imply that the site of contact on the enzyme is a highly conserved region. Morphology studies with dequalinium in intact cells demonstrate that the inhibitor can protect control cells against phorbol ester-induced morphology changes but cannot protect protein kinase C-overproducing cells, suggesting that an elevation in protein kinase C levels alone is sufficient to overturn the protection conferred by dequalinium. On the basis of these results, we propose that protein kinase C could be a critical in vivo target of dequalinium.

Animals

Alterations of gene expression in human colorectal cancer. Biological implications.

Alterations in gene expression associated with colorectal cancer have been difficult to study because mucosal cell progenitors are not available in culture. We therefore examined specific genes in approximately 100 human colon cancer cell lines using complementary DNA probes and found profound alterations and heterogenity of gene expression in human colorectal carcinoma. Our data imply that understanding human colorectal cancer will not be accomplished by studying one or two oncogenes in a limited number of cell lines or fresh human tissue. More appropriate postulates of transformation to dictate experimental design may include the investigation of proposed three-dimensional structural changes of interface chromatin or other generalized structural relationships that could predispose to an aberrant gene expression program during transformation. Furthermore, focusing on mechanisms of initiation and defining the molecular genetic markers of gastrointestinal mucosal initiation should lead to a more focused set of genetic, rather than epigenetic, mechanisms that underlie oncogenic transformation.

Blotting, Northern

Detection of individual fluorescently labeled reovirions in living cells.

Reovirus serotype 1 (Lang) can be conjugated with rhodamine B or fluorescein isothiocyanate in a way that preserves viral infectivity. We have used epifluorescence microscopy to detect individual virions bound to the surface of cells and to follow in real time the early stages of reovirus infection in living cells. Following uptake of the virus into endocytic vesicles, the movement of these vesicles can be observed readily. The vesicle movement is inhibited by nocodazole or colchicine, consistent with previous findings that the movement of intracellular vesicles is often microtubule-based.

Animals

Abnormalities of T cell immunoregulation in hemorrhagic fever with renal syndrome.

The functions of spontaneous suppressor T cells and T lymphocyte subsets in patients with hemorrhagic fever with renal syndrome were compared. In the early stages of disease, decreased activity of spontaneous suppressor T cells was concurrent with increased numbers of CD8+ cells and a reversed CD4:CD8 ratio. These changes were related to abnormalities in serum C3 level and circulating immune complexes. In the recovery stages of the illness, spontaneous suppressor T cell activity and T cell subsets returned to normal levels.

Antigen-Antibody Complex

[Ultrastructural study of duck hepatitis B virus in biliary epithelial cells of duck liver].

Liver specimens from Shanghai Ma ducks infected with duck hepatitis B virus (DHBV) were examined by immunohistochemical technique and electron microscopy. The results showed that DHBV and DHBV antigen were found not only in the hepatocytes but also in the biliary epithelial cells of infected ducks. Electron microscopy also revealed that incomplete spherical particles, 40-50 nm in diameter, were present in the dilated cisternae of rough endoplasmic reticulum (RER), and complete spherical virions, 55-65 nm in diameter, existed in the cytoplasmic vesicles and cytoplasm in small amounts. The results of the present study seem to confirm the possibility of infection and replication of DHBV not only in the liver cells but also in the biliary epithelial cells of ducks.

Animals

Ultrastructural study of hepatitis B virus in biliary epithelial cells of duck liver.

Liver specimens from the Shanghai Ma ducks congenitally infected with duck hepatitis B virus (DHBV) were examined by immunohistochemical technique and electron microscopy. All the 12 serum DHBV positive ducks showed varying degrees of positive straining in hepatocytes. In 8 of the 12 ducks, DHBV antigen was discovered in the cytoplasm of biliary epithelial cells. Conventional electron microscopy revealed two kinds of virus particles in the biliary epithelial cells: 1. the incomplete virus, 40-50 nm in diameter and spherical in shape with an outer membrane, located mainly in the dilated cisternae of rough endoplasmic reticulum of the cells in large amounts; 2. the complete virions, 55-60 nm in diameter, were spherical with an outer membrane and located mainly in the cytoplasmic vesicles in small amount. We believe the particles found in the biliary epithelial cells in this study were DHBV particles. It is most likely that the infection and replication of DHBV not only take place in the liver cells but also in the biliary epithelial cells.

Animals

Aberrant mitochondria in two human colon carcinoma cell lines.

Electron micrographs of CCL237 and FET cells (two slowly growing, differentiated human colon carcinoma lines) revealed enlarged mitochondria with few cristae. Polarographic measurement of respiratory activity in mitochondria isolated from these cell lines was compared to that of CV-1 cells (a normal monkey kidney epithelial line) and MIP101 cells (another human colon carcinoma line), both of which have mitochondria with a "normal" appearance. The respiratory control ratios of CCL237 and FET mitochondria were found to be considerably lower than those of CV-1 and MIP101 mitochondria (approximately 3 as compared to greater than 10, respectively), indicating that in CCL237 and FET mitochondria the processes of substrate oxidation and phosphorylation of ADP are only loosely coupled. In intact cells, differences in radiolabeled tetraphenylphosphonium uptake showed that the mitochondrial membrane potential in CCL237 and FET cells was less than that in CV-1 and MIP101 cells, and that nigericin failed to hyperpolarize the mitochondria of CCL237 and FET cells. In addition, FET mitochondria exhibited significantly lower ADP-stimulated and uncoupled respiratory rates than mitochondria isolated from the other cell types, indicating that in the former, the capacity for oxidative phosphorylation is somehow impaired. Selective toxicity of FET cells was obtained by treatment with 2-deoxyglucose, an inhibitor of glycolysis, suggesting the possibility of exploiting the phenotype of impaired oxidative metabolism for chemotherapy.

Animals