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Biomedical subjects

A F Chambers

Publications and source records attributed to A F Chambers.

At least 91 records · Page 5Linked to original sources

p53 mutation, expression, and DNA ploidy in evolving gliomas: evidence for two pathways of progression.

BACKGROUND: Two lines of evidence indirectly implicate the tumor suppressor p53 (also known as TP53) gene in glioma development. First, germline mutations of the p53 gene are associated with increased susceptibility to glioma. Second, chromosome 17p deletions and p53 gene mutations are found frequently in sporadic gliomas of all malignancy stages. These observations suggest that mutations of the p53 gene may be early events in glioma development. PURPOSE: Our purpose was to analyze 15 low-grade astrocytic gliomas that progressed to higher-grade gliomas, examining the status of the p53 gene in both the initial and recurrent tumors. Also, we explored the relationships between p53 status, DNA ploidy, tumor grade, and patient survival. METHODS: Fifteen low-grade gliomas that recurred as tumors of higher grade 17-102 months after initial treatment (biopsy, resection, radiotherapy, or chemotherapy) were identified from hospital records of patients (eight male and seven female) aged 31-68 years. Pathologic diagnosis was re-evaluated. Polymerase chain reaction (PCR)-single-strand conformation polymorphism and DNA sequencing were performed on tissue samples from the initial and recurrent tumors of each patient, using oligonucleotide PCR primers directed to exons 5-9 of the p53 gene. p53 expression was determined by immunohistochemistry and DNA ploidy evaluated by DNA flow cytometry. RESULTS: Eight (53%) of fifteen tumors had p53 mutations in exons 5-9. Nine (64%) of fourteen were immunopositive initially, and eight of these were also immunopositive at recurrence. p53 gene status was significantly associated with p53 expression in the initial tumor (P = .02), and p53 expression at initial diagnosis was significantly related to tumor pathology at recurrence (P = .03). Patients with p53 mutant tumors survived nearly twice as long as those without mutations (median survival, 61 versus 33 months; P = .031). There was no significant difference in recurrence-free survival between patients with p53 mutant and nonmutant tumors (48 versus 33 months; P = .37), but there was a significant difference in postrecurrence survival (17 versus 2 months; P = .019). CONCLUSION: Low-grade tumors that recurred as anaplastic gliomas were characterized by p53 gene mutation, immunopositivity, and DNA non-diploidy. Low-grade tumors that recurred as glioblastomas generally had intact p53 genes and were immunonegative. These findings suggest that histologically indistinguishable, low-grade astrocytic gliomas that are destined to progress to higher grades, do so along two distinct clinicopathologic pathways (either stepwise to anaplastic glioma, then glioblastoma, or directly to glioblastoma) marked by the presence or absence of p53 mutation.

Adult↗

Effects of long-chain fatty amines on the growth of ras-transformed NIH 3T3 cells.

A number of aliphatic primary amines were tested for their effects on the growth of ras-transformed NIH 3T3 cells (PAP2 cells), as measured by incorporation of tritiated thymidine into DNA. Long-chain, saturated amines (C12 to C18) were growth inhibitory, whereas short-chain amines (C6, C8) were not. Farnesylamine, a branched-chain, unsaturated amine (C15), had an IC50 of 6.9 microM compared to IC50 values of 13.1 to 45.8 microM for straight-chain, saturated amines. Oleylamine, with an IC50 of 0.1 microM, was the most potent inhibitor. The long-chain amines, but not the short-chain amines, were also effective inhibitors of protein kinase C, assayed in vitro in a cell-free system. In addition, studies with indo-1-loaded PAP2 cells showed that long-chain amines induced a reversible rise in intracellular free Ca2+ concentration. Growth inhibition by the amines was positively correlated with this effect, suggesting that factors other than protein kinase C may be involved in the inhibition of growth of PAP2 cells by long-chain amines.

3T3 Cells↗

A human promyelocyte mRNA transiently induced by TPA is homologous to yeast IPP isomerase.

A cDNA clone was isolated from HL60 human promyelocyte cells on the basis of the induction of its cognate mRNA by the phorbol ester TPA (12-O-tetradecanoyl phorbol-13-acetate) in the presence of cycloheximide. Northern analysis showed a peak of induction of a 1.9-kb mRNA at 3-6 h after TPA addition. Sequence analysis revealed that this cDNA was likely a human homolog of yeast isopentenyl diphosphate:dimethylallyl diphosphate isomerase, an enzyme important for isoprenoid synthesis and the prenylation of proteins such as ras p21.

Amino Acid Sequence↗

Reduced malignancy of ras-transformed NIH 3T3 cells expressing antisense osteopontin RNA.

Osteopontin (OPN) is a secreted, calcium-binding phosphoprotein that frequently has been associated with the transformed phenotype. To clarify the function of OPN in tumor cells, we designed experiments to: (a) express antisense OPN RNA in murine PAP2 cells (metastatic, ras-transformed NIH 3T3 cells) and (b) examine the effects of antisense OPN expression on the tumorigenic and metastatic properties of the cells. PAP2 cells were transfected with pNMH-asOPN, an inducible, mammalian expression vector that can generate antisense OPN RNA complementary to the OPN mRNA. Two clones have been identified that expressed antisense OPN RNA in vitro. While reduced OPN protein secretion was not detected when the cells were grown in vitro, the in vivo expression of antisense OPN RNA was associated with reduced tumorigenicity. Tumors that did arise, with greatly extended lag time, had lost expression of antisense OPN RNA in vivo, suggesting that antisense OPN RNA expression was associated with reduced tumorigenicity of these cells.

3T3 Cells↗

Absence of hereditary mutations in exons 5 through 9 of the p53 gene and exon 24 of the neurofibromin gene in families with glioma.

Inherited mutations of the p53 and neurofibromin genes are thought to cause two distinct neoplastic disorders in which gliomas occur, the Li-Fraumeni syndrome and neurofibromatosis type 1. We investigated the possibility that inherited mutations in specific regions of these genes also contributed to the clustering of gliomas in otherwise normal families. Twenty-six members of 16 families with glioma were screened for germline mutations of exons 5 through 9 of the p53 gene and exon 24 of the neurofibromin gene using a polymerase chain reaction-single-strand conformation polymorphism method. No germline mutations were found, suggesting that the genetic basis of familial glioma is distinct from that of gliomas occurring in the Li-Fraumeni syndrome, and that inherited mutations of the catalytic domain of neurofibromin do not predispose affected glioma families to these tumors.

Adult↗

Recombinant GST-human osteopontin fusion protein is functional in RGD-dependent cell adhesion.

Osteopontin (OPN) is a secreted phosphoprotein expressed by many tumor cells, as well as a limited set of normal cells. Native OPN has been shown to support cell adhesion in an RGD-peptide-inhibitable fashion. Here we expressed human OPN in E. coli as a recombinant fusion protein with glutathione-S-transferase (GST). We report that the GST-OPN fusion protein has functional activity. PAP2 (ras-transformed, metastatic murine NIH 3T3) and MDA-MB-435 human mammary carcinoma cells bound to GST-OPN in an in vitro cell adhesion assay nearly as well as to native bovine OPN. Adhesion to the recombinant fusion protein was blocked by addition of GRGDS peptide, suggesting that the cells adhere to the recombinant and native OPN proteins by similar, integrin-mediated mechanisms. Adhesion to both sources of OPN also was inhibited by thrombin treatment of the protein. Thrombin cleaves GST from OPN in the fusion protein, and also cleaves internally in OPN, adjacent to the RGD sequence of the protein. Our results suggest that (a) thrombin cleavage of native OPN may be a natural regulator of OPN function, and (b) the majority of OPN cell binding activity is mediated by the RGD sequence in the protein backbone, with little or no requirement for post-translational modifications that occur in native OPN for adhesive function as measured here.

Amino Acid Sequence↗

Overcoming obstacles to metastasis--defenses against host defenses: osteopontin (OPN) as a shield against attack by cytotoxic host cells.

Osteopontin (OPN) serves both a cell attachment function and a cell signalling function via the alpha v beta 3 integrin. In its cell attachment capacity it can promote attachment of both osteoclasts to bone hydroxyapatite and various other cell types to basement membrane/extracellular matrix. In its cell signalling capacity it initiates a signal transduction cascade that includes changes in the intracellular calcium ion levels and the tyrosine phosphorylation status of several proteins including paxillin. Effects on gene expression include suppression of the induction of nitric oxide synthase by inflammatory mediators. OPN can also reduce cell oxidant levels and inhibit the killing of tumor cells by activated macrophages and endothelial cells. We hypothesize that those cancer cells that produce OPN at elevated levels can suppress the oxidative burst, inhibit NO production, and thus protect themselves from killing by specific host cell types.

Amino Acid Oxidoreductases↗

Mammary carcinoma cell lines of high and low metastatic potential differ not in extravasation but in subsequent migration and growth.

We examined the extravasation and subsequent migration and growth of murine mammary tumor cell lines (D2A1 and D2.OR) which differ in their metastatic ability in lung and liver, invasiveness in vitro and expression of the cysteine proteinase cathepsin L. In light of the differences in invasiveness and cathepsin L expression, we hypothesized that during hematogenous metastasis the two cell lines would differ primarily in their ability to extravasate. We used in vivo videomicroscopy of mouse liver and chick embryo chorioallantoic membrane to examine the process and timing of extravasation and subsequent steps in metastasis for these cell lines. In contrast to our expectations, no differences were found between the cell lines in either the timing or mechanism of extravasation, at least 95% of cells having extravasated by 3 days after injection. However, after extravasation, the more metastatic and invasive D2A1 cells showed a greater ability to migrate to sites which favor tumor growth and to replicate to form micrometastases. These studies point to post-extravasation events (migration and growth) as being critical in metastasis formation.

Animals↗

Image analysis of Feulgen-stained transformed NIH 3T3 cells differing in p21 expression and ras-induced metastatic ability.

Nuclear phenotypes of clonal and polyclonal T24 H-ras-transformed NIH 3T3 cells differing in p21 expression and experimental metastatic ability were studied in Feulgen-stained preparations by image analysis. The objective was to determine if these cells varied in their degree of chromatin condensation, as previously reported with cell transformation, or in any other chromatin texture property highlighted by image analysis parameters. The majority of nuclei in all of these ras-transformed cells exhibited increased levels of chromatin condensation, independent of ras levels or metastatic properties. This chromatin texture characteristic was assumed to be related to the transformed phenotype. No significant changes in chromatin supraorganization that could be correlated directly with ras levels or metastatic ability were found, with the exception of an increased frequency of a relatively rare phenotype in highly metastatic cells. This phenotype was characterized by an extreme contrast in packing state between condensed and noncondensed chromatin. It is suggested that ras transformation results in alterations in chromatin structure but that there is not a simple relationship between ras p21 expression levels or ras-induced metastatic ability and the degree of these changes.

3T3 Cells↗

p53 and ras gene expression in human esophageal cancer and Barrett's epithelium: a prospective study.

To assess potential clinical applications for molecular genetic markers associated with human esophageal tumorigenesis, ten patients with primary esophageal adenocarcinomas were studied prospectively to evaluate expression of the p53 and H-ras genes. Total RNA was extracted from tumor, Barrett's epithelium, and histologically normal esophageal mucosa obtained at surgical resection, and gene expression investigated by Northern blot analysis. p53 was overexpressed, relative to normal tissue from the same patient, in seven tumor and six Barrett's specimens, whereas high levels of H-ras were found in only four tumor and one Barrett's specimen. Clinical correlative data were obtained for all patients, with a median follow-up of 14 months. Advanced pathologic stage was associated with poor survival. No association was found between gene expression and outcome. Three patients with low p53 and H-ras levels developed metastatic disease 7 to 12 months following resection. We conclude that both p53 and ras are implicated in the progression of Barrett's epithelium to invasive cancer, and that further clinical correlative studies are warranted to evaluate potential clinical application for such molecular markers.

Adenocarcinoma↗

Comparative analysis of two alternative first exons reported for the mouse osteopontin gene.

Two conflicting conclusions regarding the structure of the mouse osteopontin (OPN) gene were tested for their validity. Miyazaki et al. (Miyazaki, Y., Setoguchi, M., Yoshida, S., Higuchi, Y., Akizuki, S., and Yamamoto, S. (1990) J. Biol. Chem. 265, 14432-14438) state that the OPN gene is composed of six exons and spans approximately 4.8 kilobases. Craig and Denhardt (Craig, A. M., and Denhardt, D. T. (1991) Gene (Amst.) 100, 163-171) independently reported an additional exon 5' to the region designated as "exon 1" by Miyazaki and colleagues. To investigate this discrepancy, we generated oligodeoxynucleotide probes to three regions of these reported sequences and used them to hybridize to Northern and Southern blots of RNA and DNA from mouse fibroblasts and macrophages. Two of these regions (probes "A" and "B") represent sequences that are disputed, while one of these regions (probe "C") is predicted to be in the mRNA of both sequences. Our results are consistent only with the OPN gene structure reported by Craig and Denhardt and show that a significant portion of the exon 1 reported by Miyazaki et al. is present in murine genomic DNA but is not found in cytoplasmic message. Our results also show that OPN RNA molecules from mouse fibroblasts and macrophages do not differ significantly in the regions tested.

3T3 Cells↗

Adhesion of metastatic, ras-transformed NIH 3T3 cells to osteopontin, fibronectin, and laminin.

We previously reported that H-ras-induced metastatic ability in murine NIH 3T3 cells is accompanied by increased expression of osteopontin (OPN). OPN is a secreted phosphoprotein that contains a GRGDS amino acid sequence, suggesting adhesive function, but the function of OPN in tumor cells remains poorly understood. Here we report that PAP2 cells (ras-transformed, metastatic NIH 3T3 cells) adhere and spread on OPN-coated substrates, while NIH 3T3 cells adhere and spread poorly on OPN. A similar pattern was seen for adhesion to laminin, while both cell lines adhered equally well to fibronectin. Adhesive interactions to OPN, laminin, and fibronectin were specific and were blocked by GRGDS (but not control GRGESP) peptides. The kinetics of adhesion to all three substrates was examined. Maximum adhesion was observed at 30-60 min, with reduced adhesion thereafter. We also purified metabolically labeled [32P]OPN secreted by PAP2 cells. Labeled OPN bound better in solution to PAP2 cells than to NIH 3T3 cells, and binding to both cell lines was blocked by GRGDS peptides, results that are consistent with the adhesion and spreading of these cells to OPN-coated substrates. Malignant PAP2 cells thus not only secrete increased levels of OPN, relative to NIH 3T3 cells, but also adhere better to this protein. While the target of OPN secreted by tumor cells is not known, our results raise the possibility that tumor cells that secrete OPN may also bind this protein and that this binding may function in autocrine-type signal transduction important to malignancy.

3T3 Cells↗

Early interactions of cancer cells with the microvasculature in mouse liver and muscle during hematogenous metastasis: videomicroscopic analysis.

Biomechanical interactions of cancer cells with the microvasculature were studied using high resolution intravital videomicroscopy. We compared initial arrest of murine B16F10 melanoma and D2A1 mammary carcinoma cells fluorescently labelled with calcein-AM, in low pressure (liver) vs high pressure (cremaster muscle) microvascular beds. Cells were arrested due to size restriction at the inflow side of the microcirculation, penetrating further and becoming more deformed in muscle than liver [median length to width ratios of 3.3 vs 1.3 for D2A1 cells, and 2.5 vs 1.2 for B16F10, at 1 min post-injection (p.i.)]. During the next 2 h many cells became stretched, giving maximum length to width ratios of 68 vs 22.1 (D2A1) and 28 vs 5.6 (B16F10) in muscle vs liver. Ethidium bromide exclusion demonstrated that over 97% of the cells maintained membrane integrity for > 2 h p.i. (In contrast, when an acridine orange labelling procedure was used, membrane disruption of B16F10 cells occurred within 15 min p.i.) Our experiments do not indicate the ultimate fate of the cancer cells, but if cell lysis occurs it must be on a time scale of hours rather than minutes. We report a process of 'clasmatosis' in cancer cells arrested in the microcirculation: large membrane-enclosed fragments (> 3 microns in diameter) became 'pinched off' from arrested cells, in both liver and muscle, often within minutes or even seconds of arrest. The significance of this process is not yet understood. In this study intravital videomicroscopy has thus provided a valuable clarification of the interactions of cancer cells with vessel walls during metastasis.

Animals↗

Tumor progression and metastasis in murine D2 hyperplastic alveolar nodule mammary tumor cell lines.

We have examined tumor progression and metastatic properties of three clonal murine mammary tumor cell lines of recent origin (D2A1, D2.OR and D2.1). These lines were derived from spontaneous mammary tumors which originated from a D2 hyperplastic alveolar nodule (HAN) line. D2A1 cells were more malignant than D2.OR or D2.1 cells, whether measured by experimental metastasis assays after intravenous injection in nude mice or chick embryos, in vivo growth rate of primary tumors following mammary fat pad injection in nude mice, or spontaneous metastasis assay from primary tumors growing in mammary fat pads. D2A1 cells also were more invasive in vitro in a Matrigel invasion assay than D2.1 cells, while the D2.OR cells were non-invasive in this assay. The increased invasiveness and malignancy of D2A1 cells were associated with increased levels of mRNA for the cysteine proteinase cathepsin L. Levels of osteopontin (OPN), nm23, int-1 and int-2 mRNAs were also examined. Nm23 levels were highest in the most malignant cell line. These cell lines provide a model for studying the tumorigenic and metastatic ability of mammary tumor cells and offer several advantages: they were cloned from mammary tumors that originate from a common source of preneoplastic cells (D2HAN); they are of relatively recent origin; and they have spontaneously arrived at different stages of tumor progression.

Animals↗

Farnesylamine: an inhibitor of farnesylation and growth of ras-transformed cells.

Farnesylamine, an analogue of farnesol, was shown to inhibit growth of PAP2 cells (ras-transformed NIH 3T3 cells) in a dose-dependent manner. This inhibition was overcome by adding farnesol to the culture medium, but not by adding geranylgeraniol, squalene, cholesterol, dolichol, myristic acid or palmitic acid. Farnesylamine inhibited both farnesyl/protein transferase and geranylgeranyl/protein transferase in whole cell extracts and also inhibited the prenylation of proteins, particularly ras p21, in PAP2 cells. Inhibition of prenylation was associated with increased biosynthesis of other products of the mevalonate biosynthetic pathway. These observations suggest that inhibition of the growth of PAP2 cells by farnesylamine may be due to blocking of ras-mediated signal transduction. This offers a means of investigating mechanisms involved in ras action and raises the possibility of developing novel strategies for anticancer therapy.

3T3 Cells↗

Ras-responsive genes and tumor metastasis.

Transfected ras oncogenes have been shown to induce metastatic properties in some cells. Clarification of the mechanisms by which ras is able to increase the metastatic ability in model systems will improve our understanding of tumor progression to metastasis, even in those cells in which ras activation has not been implicated. Many of the consequences of ras expression also have been detected in cells that have become metastatic in the apparent absence of an altered ras gene, suggesting that there is a set of common changes that can lead to metastasis with multiple signals capable of eliciting these changes. These changes, which have been documented for some ras-transformed cells, include increased expression or activity of various degradative enzymes, including metalloproteinases (type IV collagenases) and cysteine proteinases (cathepsins L and B), as well as decreased expression or activity of their inhibitors (TIMPs and cystatins, respectively). In addition, some metastatic ras-transformed cells have an increased expression of calcyclin, a cytoplasmic calcium-binding protein, and osteopontin, a secreted calcium-binding protein with possible adhesive function. Not all cells, however, respond in the same fashion to a ras oncogene signal. Some cells are resistant to ras-mediated tumor progression to metastasis. Understanding the mechanism by which these cells fail to respond to a specific oncogene signal may provide clues with broader applicability and potential therapeutic relevance. In this review, we summarize some of the studies in which ras has been used as a tool to learn about the molecular requirements for metastasis. We discuss ras-mediated changes in gene expression and how these may contribute to metastatic ability, as well as some possible mechanisms by which ras expression may result in altered expression of other genes. We also consider some cell lines which appear to be resistant to an oncogenic ras signal and possible mechanisms for this nonresponsiveness. These studies are providing insights into the molecular mechanisms of tumor metastasis and the responses of cells to oncogenic signals.

3T3 Cells↗

Differences in the repertoires of basement membrane degrading enzymes in two carcinoma sublines with distinct patterns of site-selective metastasis.

Basement membrane-degrading enzymes of two clonal sublines of the murine Lewis lung carcinoma with distinct patterns of organ-selective metastasis were analyzed. Subline M-27 is highly metastatic to the lung and does not form liver metastases, while subline H-59 is highly metastatic to lymph nodes and liver, but not to lung. Qualitative and quantitative differences in the enzymatic profiles were found. H-59 cells which were significantly more invasive in vitro in the Matrigel invasion assay were found by zymogram analysis to secrete high levels of a 72 kDa gelatinase, while M-27 cells produced low levels of this gelatinase and of a higher molecular weight species which migrated in the 107 kDa region. On the other hand, M-27 cells produced significantly higher levels of urokinase type plasminogen activator (uPA) as indicated by a fibrinolysis assay and by Western blot analysis. Northern blot assays revealed an increase of approx. 3-fold in mRNA for cathepsin B in tumor M-27 which was reflected in a quantitative difference in plasma membrane cathepsin B levels as detected by Western blot analysis. H-59 cells on the other hand expressed approx. 8.5-fold more mRNA for cathepsin L. The quantitative differences in the levels of basement membrane degrading proteinases released by these tumor cells suggest that invasion by these cells is differentially regulated--a possible factor in their distinct patterns of dissemination.

Animals↗

Early steps in hematogenous metastasis of B16F1 melanoma cells in chick embryos studied by high-resolution intravital videomicroscopy.

BACKGROUND: There are few techniques that permit direct observation of tumor metastasis. The ability to observe steps in this process as they occur in experimental animals would complement studies on molecular mechanisms. PURPOSE: We have developed a novel procedure using high-resolution intravital videomicroscopy to permit direct observation of cells as they arrest in the microcirculation, extravasate, and form micrometastases. We used this procedure to study early steps in experimental metastasis in immune-deficient chick embryos, permitting us to develop this technique in a relatively accessible respiratory organ and in the absence of host immune responses. Our goals were to develop techniques applicable to this host and to other hosts and to clarify the process of hematogenous tumor spread in this host. METHODS: We injected fluorescently labeled B16F1 melanoma cells into the circulation of 11- to 13-day chick embryos, and using intravital videomicroscopy, we observed the cells in the chorioallantoic membrane over time. RESULTS: The majority of injected cells were trapped initially in orifices to the chorioallantoic membrane capillary plexus or in tapering ends of arterioles leading to the plexus. During the first 2 hours, cells were found only in vessel lumina. After 8 hours, 83% of cells had extravasated, and the rest were in the process of extravasation. Cell shape changes and pseudopodial extensions were seen during extravasation and tumor development. Tumor cell division was seen only after extravasation. Tumors tended to develop near microvessels and were often wrapped around them. CONCLUSIONS: Intravital videomicroscopy can provide new information about steps in metastasis. This procedure is applicable to other hosts and can be used in future studies to test hypotheses about molecular mechanisms of tumor spread.

Animals↗