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Biomedical subjects

N Hagag

Publications and source records attributed to N Hagag.

10 recordsLinked to original sources

c-src structure in human cancers with elevated pp60c-src activity.

We used RNAase protection and restriction fragment length polymorphism assays to detect activating mutations of c-src in a spectrum of human tumours. No mutations were detected at codons 98, 381, 444, and 530. We conclude that mutational activation is not the mechanism of enhancement of pp60c-src-specific kinase activity found in a number of human cancer types.

Base Sequence

Cloning regions of the Drosophila genome by microdissection of polytene chromosome DNA and PCR with nonspecific primer.

A simple and rapid procedure to isolate clones carrying sequences from a specific region of the polytene chromosome of Drosophila is demonstrated. The procedure involves microdissection of the region of interest, amplification of the DNA by PCR using a primer designed to prime the synthesis nonspecifically, labeling of the amplified DNA using the random primer method, and screening of a standard library with the probe to identify and isolate clones carrying sequences homologous to the dissected region. This procedure has the potential to replace the difficult procedure of microcloning, as well as facilitate chromosome walking.

Animals

Activation of cancer cell proteases and cytotoxicity by EGF and PDGF growth factors.

The biological effects of EGF and PDGF growth factors on A172 and hEGFr-3T3 cell lines were studied using RBC induced cytolysis and polyacrylamide-gelatin gel electrophoresis assays. The authors report that growth factor-induced cytotoxicity in these cells is mediated by proteolytic enzymes. Treatment of A172 cells with either EGF or PDGF resulted in marked increase of their cytotoxicity (Release Index = 150%). Similarly, RBC induced release index by hEGFr-3T3 cells was elevated to 420% in the presence of 3.4 pM of EGF. However, in A172 cells, PDGF did not have a significant effect on DNA and protein synthesis indicating that stimulation of proteolytic activity is independent of the growth factor signaling pathway. Growth factor induced cytotoxicity was significantly reduced by protease inhibitors in both cell lines. Using EDTA and leupeptin several proteolytic species were identified and localized to cellular membranes as evidenced by polyacrylamide-gelatin electrophoresis assay. These data suggest that growth factors regulate the activation or secretion of proteolytic enzymes in cancer cells and may mediate the invasive and metastatic behavior of these cells.

Amiloride

High expression of ras p21 correlates with increased rate of abnormal mitosis in NIH3T3 cells.

The modulation of responsive genes by hormonal stimulation is an attractive in vitro model system for the study of a wide variety of biological processes. Using this methodology we have investigated the effect of the human oncogene protein p21ras on mitosis using mouse mammary tumor virus long terminal repeat (MMTV-LTR)-directed gene expression. Following the induction of p21 protein, abnormal mitotic figures were scored in metaphase and anaphase. Elevated expression of p21 was associated with marked increase in the proportion of abnormal mitoses most significantly during the metaphase. Concomitant with a three fold increase in p21 levels, abnormal mitosis rose from 14.0% to 27.25%. The increase in abnormal mitosis corresponded to a 225% increase in abnormal metaphase. The p21-induced mitotic abnormalities were exhibited as lagging chromosomes in prometaphase, 3 group metaphase and C-metaphase. In addition, high expression of p21 was accompanied by significant changes in the cell morphology and fine ultrastructure, e.g. disorganization of actin, the extensive formation of microvilli on the plasma membrane and marked dilatation of the rough endoplasmic reticulum. The mitotic and structural changes were reversible upon removal of dexamethasone and decline of p21 production to its basal levels. Our results identify an important biological effect of ras p21 during mitosis and the early stages of neoplastic transformation.

Animals

Precise, easy measurement of glass pipet tips for microinjection or electrophysiology.

We describe a simple procedure to measure precisely the tip diameter of glass micropipets. This procedure can improve the precision of microinjection and some electrophysiological measurements due to their extreme sensitivity to the pipet's exact geometric dimensions. The technique is nondestructive and readily carried out as a brief, extra step in these applications. Digital measurements of the threshold pressures for gas bubbling from (gas filled) pipets submerged in methanol were used to calculate the corresponding inner tip diameters using the LaPlace equation. Direct measurements of the inner tip diameters (from 0.2-5.0 mu) using scanning electron microscopy confirmed the validity of this indirect, simple procedure.

Electrophysiology

Role of epidermal growth factor in the expression of A431 cancer cell protease and red blood cell cytotoxicity.

The role of epidermal growth factor in the regulation of the proteolytic and RBC cytolytic activity of the A431 cancer cell line has been evaluated using our previously described gelatin/polyacrylamide electrophoretic assay and tumor-induced RBC cytolysis assay, respectively. A431 cells maintained in 10% fetal bovine serum were actively cytolytic for RBC (release index, 53.0 +/- 2.9%), whereas serum-starved cells maintained in serum-free medium were not cytolytic for RBC. RBC cytotoxicity was restored by adding as little as 3.4 pM epidermal growth factor to the serum-deprived cells. The RBC cytolytic stimulating activity of epidermal growth factor could be mimicked by the metal chelating agent 1,10-phenanthroline, suggesting a possible role for calcium ions in the action of epidermal growth factor and proteases. An enriched cell membrane preparation of A431 cells was also cytolytic for RBC but was unaffected by metal chelating agents. RBC-induced cytotoxicity was inhibited by the protease inhibitor leupeptin. Gelatin substrate gels of enriched A431 cell membrane preparations and serum-free supernatants revealed a pattern of high- and low-molecular-weight proteases that were stimulated by metal chelators and inhibited by leupeptin. The activity of these proteases appears to be regulated by epidermal growth factor by a process that may involve divalent cations.

Carcinoma, Squamous Cell

Oncogene ras p21- and v-src pp60-transformed cells exhibit altered expression of proteases.

To evaluate the proteolytic activities of oncogene-transfected 3T3 cells, we have developed a copolymerized substrate electrophoretic assay that permits the detection of picogram quantities of proteases produced by cells in culture. Our assay involves a gelatin substrate copolymerized in a polyacrylamide gel. Purified cell membrane preparations were run on gels and various protease activities were detected by amido black. Ras-transfected 3T3 cells appear to have a soluble metalloprotease that may be transiently membrane bound and responsible for destruction of red blood cells (RBC). Oncogene-transfected NIH-3T3 cells have been demonstrated to have RBC cytolytic activity. We have previously shown that v-src-transfected 3T3 cells and their cell membranes cause RBC cytolysis which is inhibited by the protease inhibitor leupeptin. Here we report that both H-ras- and K-ras-transfected 3T3 cells and their cell membranes are cytolytic for RBC, but are inhibited by the metalloprotease inhibitor ethylene diamine tetraacetic acid. Using the gelatin substrate gel assay, we determined that some of the proteases were intrinsic to the oncogene expressing cells, while other proteases were secreted into the culture growth medium.

Cell Line, Transformed

Microinjection of ras p21 induces a rapid rise in intracellular pH.

Quiescent mouse NIH 3T3 cells responded to microinjection of activated ras p21 with a rapid and sustained rise in intracellular pH (approximately 0.17 pH units). The p21-induced pH change was inhibited by amiloride treatment or growth of cells in medium low in sodium, suggesting a role for the Na+/H+ antiporter. Amiloride was found to suppress p21-induced mitosis, also.

Amiloride

Isolation and characterization of a cyclic AMP receptor protein from luminous Vibrio harveyi cells.

A cAMP receptor protein (CRP) species was purified from the luminous Vibrio harveyi cells to apparent homogeneity. This protein had a dimeric structure with a molecular weight of 23,000 per subunit. Among all eight nucleotides tested, only cAMP (Kd = 3 to 4 microM at 0 degrees C and 52 microM at 23 degrees C) and cGMP (Kd = 6 to 10 microM at 0 degrees C and 67 microM at 23 degrees C) bound to this protein. Its binding to poly(dI-dC), poly(dA-dT), and DNA fragments isolated from V. harveyi cells were all significantly enhanced by the addition of cAMP. Based on patterns of limited proteolysis by trypsin, this CRP assumes different conformations in the absence and presence of cAMP. Also consistent with this conclusion is the finding that the binding of cAMP to CRP induced about 50% quenching of the CRP fluorescence with a concomitant 3-nm blue shift from the original 336-nm emission peak. The binding of cGMP resulted in similar fluorescence changes but had no apparent effect on the pattern of proteolysis by trypsin. Using an in vitro transcription system known to be dependent on cAMP and Escherichia coli CRP, the synthesis of a run-off transcript product was also significantly enhanced by cAMP and this V. harveyi CRP.

Cyclic AMP

Inhibition of growth factor-induced differentiation of PC12 cells by microinjection of antibody to ras p21.

The protein products (p21) of the ras cellular proto-oncogenes are thought to transduce membrane signals necessary for the induction of cell division. However, there is uncertainty as to the precise role of ras p21 in mediating ligand-membrane receptor signals leading to cell differentiation. Treatment of rat phaeochromocytoma cells (PC12) with nerve growth factor (NGF) results in the induction of a number of phenotypic characteristics of sympathetic neurones, including cessation of cell division and outgrowth of neuronal processes (neurites). Here we report that microinjection of antibody to ras p21 into PC12 cells inhibited neurite formation and resulted in temporary regression of partially extended neurites, an effect which was observed up to 36 h after initiation of NGF treatment. Neurite formation induced by cyclic AMP was unaffected by injection of anti-p21 antibody. These results indicate that p21 is involved in the initiation phase of NGF-induced neurite formation in PC12 cells and has a role in hormone-mediated cellular responses distinct from cell proliferation.

Animals