PubMed HealthSearch

Biomedical subjects

E Hovig

Publications and source records attributed to E Hovig.

At least 19 recordsLinked to original sources

Identification of a novel cytokeratin 19 pseudogene that may interfere with reverse transcriptase-polymerase chain reaction assays used to detect micrometastatic tumor cells.

In many recent publications, it has been claimed that reverse transcriptase-polymerase chain reaction (RT-PCR) assays involving genes with tissue-restricted expression can be used for specific and sensitive detection of cancer cells in blood, bone marrow and lymph nodes. Many different target mRNAs have been evaluated for such purposes. One of the most extensively studied genes, CK19, is predominantly expressed in cells of epithelial origin and normally not at detectable levels in hematopoietic or lymphatic tissues. Based on previous reports on CK19 we wanted to establish a useful assay for detection of micrometastatic cells. RNA and DNA specimens extracted from peripheral blood nucleated cells of healthy volunteers, as well as cell lines positive and negative for CK19 expression, were used in nested RT-PCR assays. Using previously published primers, we found a novel pseudogene that shows a high degree of identity with the CK19 gene sequence, except for differences caused by 3 small deletions and a number of point mutations, resulting in termination codons and frameshifts. The gene has therefore no coding potential. Importantly, published primer sequences and reaction conditions used by several other groups to detect CK19 mRNA may have led to the amplification of this pseudogene. The data illustrate one of the problems that must be addressed in validating RT-PCR assays for micrometastasis detection, and it is suggested that previous work using CK19 as a marker should be reassessed in view of the present finding.

Artifacts

Disentangling the perturbational effects of amino acid substitutions in the DNA-binding domain of p53.

The spectrum of somatic cancer-associated missense mutations in the human TP53 gene was studied in order to assess the potential structural and functional importance of various intra-molecular properties associated with these substitutions. Relating the observed frequency of particular amino acid substitutions in the p53 DNA-binding domain to their expected frequency, as calculated from DNA sequence-dependent mutation rates, yielded estimates of their relative clinical observation likelihood (RCOL). Several biophysical properties were found to display significant covariation with RCOL values. Thus RCOL values were observed to decrease with increasing solvent accessibility of the substituted residue and with increasing distance from the p53 DNA-binding and Zn2+ -binding sites. The number of adverse steric interactions introduced by an amino acid replacement was found to be positively correlated with its RCOL value, irrespective of the magnitude of the interactions. A gain in hydrogen bond number was found to be only half as likely to come to clinical attention as mutations involving either a reduction or no change in hydrogen bond number. When the difference in potential energy between the wild-type and mutant DNA-binding domains was considered, RCOL values exhibited a minimum around changes of zero. Finally, classification of mutated residues in terms of their protein/solvent environment yielded, for somatic p53 mutations, RCOL values that resembled those previously determined for inherited mutations of human factor IX causing haemophilia B, suggesting that similar mechanisms may be responsible for the mutation-related perturbation of biological function in different protein folds.

Amino Acid Substitution

Intracellular metabolism of a 2'-O-methyl-stabilized ribozyme after uptake by DOTAP transfection or asfree ribozyme. A study by capillary electrophoresis.

The uptake and cellular metabolism of a fluorescein-labelled synthetic ribozyme stabilized by 2'- O -methyl modification and a 3' inverted thymidine have been studied, employing capillary gel electrophoresis as a novel and efficient analytical method. After internalization by DOTAP transfection, electrophoretic peaks of intact ribozyme and different degradation products were easily resolved and the amount of intracellular intact ribozyme was quantified to >10(7) molecules/cell at the peak value after 4 h transfection. On further incubation the amount of intracellular intact ribozyme decreased due to both degradation and efflux from the cell. However, even after 48 h incubation there were still >10(6) intact ribozyme molecules/cell. Clear differences both in uptake and in metabolism were seen when comparing DOTAP transfection with the uptake of free ribozyme. Fluorescence microscopy studies indicated that the ribozyme was mainly localized in intracellular granules, probably not accessible to target mRNA. This implies that agents able to release the intact ribozyme from intracellular vesicles into the cytosol should have a considerable potential for increasing the biological effects of synthetic ribozymes.

Base Sequence

Differential expression patterns of S100A2, S100A4 and S100A6 during progression of human malignant melanoma.

Three members of the S100 gene family, S100A2, S100A4 and S100A6, have been suggested to be associated with cancer development and metastasis. To study their involvement in the tumorigenesis of human melanoma, we examined the mRNA expression levels of the 3 genes in 45 melanoma metastases and in 20 benign nevi. Interestingly, whereas none of the metastases expressed S100A2 mRNA, and the expression level was low in 6 cell lines established from primary melanomas, all nevi showed moderate to high expression levels. Our results suggest that loss of S100A2 gene expression may be an early event in melanoma development. A significant correlation was found between the expression of S100A6 in melanoma metastases and both the survival time of the patients and the thickness of the corresponding primary tumors. For the S100A4 gene, however, no relationship was found between gene expression and clinical parameters of melanoma malignancy. The observed differences in expression patterns of the 3 S100 genes suggest distinct roles of their products in melanoma tumorigenesis and/or metastasis, and the results encourage studies to evaluate the potential value of using S100A2 and S100A6 expression levels as markers in the clinical management of melanoma.

Blotting, Southern

Ectopic expression of target genes may represent an inherent limitation of RT-PCR assays used for micrometastasis detection: studies on the epithelial glycoprotein gene EGP-2.

Our objective was to develop and study the feasibility of a quantitative, nested reverse-transcription polymerase chain reaction (RT-PCR) assay for detection of micrometastatic, epithelial tumor cells using the epithelial glycoprotein EGP-2 gene as a target. Several carcinoma cell lines and peripheral blood samples of 10 healthy volunteers were screened for levels of EGP-2 mRNA. The assay included EGP-2 competitor molecules, carrying an internal deletion, that had been titrated by limiting dilution. Seven carcinoma cell lines showed a wide spectrum of EGP-2 mRNA expression levels, with the highest values (20-100 molecules/cell) seen in 3 breast-cancer cell lines. Unexpectedly, a consistent low level of EGP-2 mRNA expression (0.0004 molecules/cell) was observed in peripheral blood mononuclear cells, probably representing ectopic non-functional expression. Because of this background level, spiking experiments with T47D breast-carcinoma cells added to blood mononuclear cells exhibited a detection limit that was not better than approximately one tumor cell in 2 x 10(4) normal cells. Together with the considerable variation of EGP-2 transcript levels that is observed in different carcinoma cell lines, the extent of expression in normal blood cells would prevent a reliable estimation of low numbers of carcinoma cells in clinical samples. A similar situation might well apply for other target genes. This emphasizes the need for a critical evaluation of the different steps involved in the methods used for RT-PCR detection of micrometastatic tumor cells.

Adolescent

Database of p53 gene somatic mutations in human tumors and cell lines: updated compilation and future prospects.

In recent years, there has been an exponential increase in the number of p53 mutations identified in human cancers. The p53 mutation database consists of a list of point mutations in thep53 gene of human tumors and cell lines, compiled from the published literature and made available through electronic media. The database is now maintained at the International Agency for Research on Cancer (IARC) and is updated twice a year. The current version contains records on 5091 published mutations and is expected to surpass the 6000 mark in the January 1997 release. The database is available in various formats through the European Bioinformatics Institute (EBI) ftp server at: ftp://ftp.ebi.ac.uk/pub/databases/p53/ or by request from IARC (p53database@iarc.fr) and will be searchable through the SRS system in the near future. This report provides a description of the criteria for inclusion of data and of the current formats, a summary of the relevance ofp53 mutation analysis to clinical and biological questions, and a brief discussion of the prospects for future developments.

Databases, Factual

A BRCA1 founder mutation, identified with haplotype analysis, allowing genotype/phenotype determination and predictive testing.

We searched for a founder mutation in a population from one geographic region of Norway with prevalent breast/ovarian cancer families. We sampled 33 breast/ovarian cancer families and determined haplotypes of four markers linked to the BRCA1 region. Of the affected 33 index women, 13 (39.4%) shared one haplotype. In five (15% of total), an identical mutation was indicated by an abnormal truncated protein test (PTT) of exon 11 and shown to represent a 1675delA mutation. In the other index women, PTT of exon 11 showed no abnormality. No other BRCA1 founder mutation of this prevalence is likely because no other haplotype was more frequent in affecteds than in controls. All families with the 1675delA mutation in this geographic region may be considered as part of one large kindred. This allows a genotype-phenotype correlation to be precisely determined and used in genetic counselling for predictive testing within this kindred. Identification of identical haplotypes between unrelated affected individuals may be used to estimate the extent of founder effects for any mapped disease, without knowledge of the specific founder mutation.

Adult

Reversal of the in vivo metastatic phenotype of human tumor cells by an anti-CAPL (mts1) ribozyme.

The putative role of the CAPL gene in enhancing the development of human cancer metastasis was examined by transfecting human high-expressing osteosarcoma cells with a hammerhead ribozyme directed against the gene transcript. The ability of the ribozyme to cleave target mRNA in intact cells was demonstrated in a 5'-rapid amplification of cDNA ends assay. In transfected cells, a suppression of the capacity to give skeletal metastases upon intracardial injection into nude rats was observed in cell clones with reduced expression of CAPL mRNA and protein, whereas in vitro and in vivo cell proliferation and tumorigenicity were unchanged. The results provide direct evidence that the expression level of the CAPL-encoded protein can determine the metastatic potential of osteosarcoma cells, and they demonstrate an association between reduced gene expression and proliferation-independent inhibition of the metastatic capacity of human tumor cells. The effects of the specific cleavage of CAPL mRNA indicate that the gene product is involved in key cellular functions associated with the metastatic process and suggest that therapeutic modulation of the protein function may represent a novel approach for inhibiting the metastatic spread of cancer cells.

Animals

Somatic point mutations in the p53 gene of human tumors and cell lines: updated compilation.

In 1994 we described a list of approximately 2500 point mutations in the p53 gene of human tumors and cell lines which we had compiled from the published literature and made available electronically through the file server at the EMBL Data Library. This database, updated twice a year, now contains records on 4496 published mutations (July 1995 release) and can be obtained from the EMBL Outstation-the European Bioinformatics Institute (EBI) through the network or on CD-ROM. This report describes the criteria for inclusion of data in this database, a description of the current format and a brief discussion of the current relevance of p53 mutation analysis to clinical and biological questions.

CD-ROM

CDKN2A (p16INK4A) somatic and germline mutations.

The cell cycle is composed of a series of steps that can be negatively or positively regulated by various factors. A group of low-molecular-weight proteins have recently been identified that specifically inhibit the function of cyclin-dependent kinases in mammalian cells. Inactivation of the CDKN2A gene (also known as p16INK4A and MTS1) attracted considerable interest after it was mapped to 9p21, a locus for familial melanoma. In an effort to standardize the information regarding human CDKN2A mutations detected in cancers, a database with information of 146 point mutations has been created. Cancer type, origin of cells, specific mutation, amino acid change, literature citation, and other data are provided for each mutation entry. Studies of biochemical and biological functions of both wild-type and mutant proteins are central to our understanding of the role of p16INK4a mutations in tumorigenesis, a summary of these studies is also included in the present update.

Carrier Proteins

Involvement of the pRb/p16/cdk4/cyclin D1 pathway in the tumorigenesis of sporadic malignant melanomas.

Biopsies from 61 sporadic metastatic malignant melanomas and five melanoma cell lines were examined for homozygous deletions and mutations in the CDKN2 gene (p16). As the p16 protein is involved in a cell cycle regulatory pathway consisting of at least pRb, cdk4 and cyclin D1, the tumours were also screened for amplifications of the last two genes. Moreover, the transcript levels of the genes were determined and the results compared with the immunohistochemically assessed expression of pRb. Altogether, homozygous deletions of CDKN2 were found in seven tumours (11%) and two of five cell lines, whereas a mutation was detected in only one biopsy, indicating that in sporadic melanomas the former mechanism is predominant for inactivating this gene. Notably, in total 59% of the metastatic lesions lacked detectable expression of p16 mRNA, whereas all the biopsies were found to express pRb. In accordance with the postulated negative feedback loop between p16 and pRb, one melanoma cell line showed overexpression of CDKN2 mRNA together with very low levels of the Rb protein. Amplification of the other two genes may not be important in the tumorigenesis of melanomas, as only one CDK4 and no CCND1 amplification was observed. However, highly elevated CDK4 mRNA levels, compared with that seen in a panel of normal tissues, were observed in 76% of the tumours, accompanied in 71% of the cases by high expression of the CCND1 cyclin activator. Although a low frequency of CDKN2 DNA aberrations was observed, the high number of tumours that lacked CDKN2 expression but showed overexpression of CDK4 and/or CCND1, suggest that functional inactivation of pRb through this pathway may be involved in the development or progression of sporadic human melanomas.

Base Sequence

Somatic spectrum of cancer-associated single basepair substitutions in the TP53 gene is determined mainly by endogenous mechanisms of mutation and by selection.

The spectrum of somatic TP53 single basepair substitutions detected in 955 cancers was compared with that of 2,224 different germline mutations in 279 different human genes (other than TP53), reported as the cause of inherited disease. This comparison reveals that, disregarding a relatively small subset (12%) of TP53 mutations that probably result from the action of exogenous mutagens, both the relative rates and the nearest-neighbor spectra of single basepair substitutions are similar in the two datasets. This spectral resemblance suggests that a substantial proportion of cancer-associated somatic TP53 mutations result from endogenous cellular mechanisms. The likelihood of clinical observation of a particular mutation type differs, however, between tumors and genetic diseases, when the chemical properties of the resulting amino acid substitutions are considered. Together with a sixfold higher observation likelihood for mutations at evolutionarily conserved residues, this finding argues that selection is a critical factor in determining which TP53 mutations are found to be associated with human cancer.

Base Sequence

Homozygous deletion frequency and expression levels of the CDKN2 gene in human sarcomas--relationship to amplification and mRNA levels of CDK4 and CCND1.

Homozygous deletions of the putative tumour-suppressor gene CDKN2, which encodes an inhibitor of cdk4, have been detected in a high percentage of cancer cell lines of various histological types. In the present study, 109 human sarcomas were examined for homozygous deletions and for mRNA expression levels of the CDKN2 gene. Altogether, deletions were found in only eight (7%) of the cases, but, interestingly, in two (of eight) malignant Schwannomas and in two (of five) rhabdomyosarcomas. In comparison, such deletions were seen in only one (of 21) osteosarcomas and in none of 20 MFHs and 21 liposarcomas. Notably, highly elevated CDKN2 mRNA levels were found in 33% of the sarcomas, whereas no detectable transcript was present in 12 normal tissues. Amplifications of CDK4 and CCND1 (cyclin D1) were observed in 11% and 4% of the sarcomas respectively, but never in tumours with CDKN2 deletions. The level of CDK4 mRNA expression was increased in nine tumours in addition to the 12 samples with CDK4 amplification. Increased levels of the cyclin D1 transcript was found in 37 cases, four with and 33 without amplification. The data indicate that aberrations of these functionally related genes, or in regulation of the expression of the kinase, the activator or the inhibitor, may participate in sarcoma development. Furthermore, the data suggest that homozygous CDKN2 deletions may be of dissimilar significance in different sarcoma subtypes.

Animals

Semiquantitative polymerase chain reaction for t(14;18) in follicular lymphomas: a colorimetric approach.

BACKGROUND: Autologous bone marrow transplantation is increasingly being used in the management of several types of cancer, and to avoid reintroduction of malignant cells, bone marrow purging is often performed. In such cases, sensitive quantitation methods are needed both to assess the efficacy of the purging and for surveillance of patients in remission. Polymerase chain reaction (PCR) has the necessary sensitivity for this application, but it requires that the cancer cells can be recognized by a defined genetic abnormality. In addition, PCR is in principle a qualitative technique and must be modified for quantitative purposes. In follicular non-Hodgkin's lymphomas, the translocation t(14;18) (q32;q21) is common and is used here for model experiments. EXPERIMENTAL DESIGN: A PCR-based method for the quantitation of translocation-positive cells was developed on the basis of coamplification of cancer-specific target molecules with competitor molecules of known concentration. Gel electrophoresis was substituted by a colorimetric quantitation system to cope with patient PCR products of the same size as the competitor product and ease automation of the method at a later stage. Cell line Karpas 422, which contains the t(14;18) (q32;21) translocation, was used to validate the method. The method was used to assess the efficacy of a patient bone marrow purging where the initial infiltration levels were too low for traditional detection systems. RESULTS: A reproducible and near linear response was obtained between 70 pg and 200 ng K422 DNA, equivalent to 10 K422 cells and 30,000 K422 cells, respectively. Bone marrow infiltration in one patient was 0.6 to 0.7% before malignant cell removal and 3 to 7 x 10(-4) after removal. The corresponding figures for the other patient were 2% and 3 to 7 x 10(-4), respectively. CONCLUSIONS: The method presented has a sufficient dynamic range for applications like evaluation of bone marrow purging or monitoring of minimal residual disease. Adaptation of this method to other translocations is discussed.

Base Sequence

Database of p53 gene somatic mutations in human tumors and cell lines.

A data base is described in which over 2,500 mutations in the p53 gene of human tumors and tumor cell lines are compiled from a systematic search of reports published before 1 January 1994. Data from 1994 are being added intermittently, with a systematic search and update scheduled for December, 1994. The compilation has been deposited with the EMBL Data Library and is available in electronic form free of charge. This report contains a rationale for the compilation, a brief summary of the major findings and a description of the data base.

DNA Mutational Analysis

p53 abnormalities in different subtypes of human sarcomas.

In this report we examined p53 alterations at the DNA, mRNA, and protein levels on tissue from 39 patients with different subtypes of sarcoma. Loss of heterozygosity for the chromosome 17p region was found in 60, 63, and 33% of 10 informative osteosarcomas, 11 malignant fibrous histiocytomas, and 6 leiomyosarcomas, respectively. In addition, 2 of 10 tumors belonging to a heterogeneous group of soft tissue sarcomas showed loss of heterozygosity. Elevated levels of p53 mRNA were found in six tumors, four had a truncated transcript, and in six patients no mRNA was detected. In most cases, elevated transcript levels were accompanied by overexpression of protein as studied by immunohistochemistry, whereas the presence of truncated transcripts was associated with negative immunostaining. Point mutations in exons 5, 7, or 8 of the TP53 gene were detected in seven tumors. Six of these expressed high levels of mRNA and protein, probably reflecting a point mutation in one of the alleles and loss of the other. Three of the mutations have not previously been described. Taken together, p53 abnormalities were found in approximately 65% of the osteosarcomas, malignant fibrous histiocytomas, and leiomyosarcomas examined and in 30% of the other soft tissue tumors. The results indicate that the TP53 gene is involved in the tumorigenesis of several sarcoma subtypes in a higher fraction of cases than was previously recognized.

Base Sequence

Genome scanning of human breast carcinomas using micro- and minisatellite core probes.

We have analyzed tumor and lymphocyte DNA from six breast cancer patients by one- and two-dimensional DNA fingerprinting using micro- and minisatellite core probes to estimate the extent and nature of DNA alterations in tumors. Both approaches were compared regarding sensitivity in genome analysis. We find that the number of deletions and amplifications increases linearly with the number of restriction fragments analyzed using the two-dimensional approach, as compared with the number found using the more traditional one-dimensional method. A set of four micro- and minisatellite core probes resulted in a total number of approximately 70 bands per patient using one-dimensional analysis of RsaI-digested DNA. When the same DNA was analyzed with the two-dimensional approach about 300 analyzable spots were resolved. In one patient, the tumor DNA contained 11 amplified spots and 14 deleted spots when compared to the patients lymphocyte DNA. Using HaeIII-digested DNA, a maximum of 845 spots could be observed, with only three probes.

Adult