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Biomedical subjects

L Crawford

Publications and source records attributed to L Crawford.

At least 73 records · Page 4Linked to original sources

Mutations of the human papillomavirus type 16 E7 gene that affect transformation, transactivation and phosphorylation by the E7 protein.

The human papillomavirus type 16 (HPV-16) E7 gene cooperates with an activated ras oncogene to transform primary rodent cells and is important in the immortalization of cervical keratinocytes. We have generated a series of point mutations within the E7 gene and show that mutation of residues serine 31 and serine 71 affect the phosphorylation of the E7 protein, but do not alter its ability to cooperate with ras. Further mutations which alter cysteine residues in a -Cys-X-X-Cys- motif decrease transformation markedly, although they do not abolish it entirely. All the mutations generated displayed a decreased ability to transactivate the adenovirus E2 promoter. These results show that neither phosphorylation of E7 nor its ability to transactivate are required for transformation by E7.

Animals↗

Increased antibody responses to human papillomavirus type 16 L1 protein expressed by recombinant vaccinia virus lacking serine protease inhibitor genes.

The L1 gene of human papillomavirus type 16 (HPV-16) driven by the vaccinia virus major late 4b gene promoter has been inserted into three different sites of the vaccinia virus genome. Insertion into the thymidine kinase (TK) gene was achieved by selection of TK- mutants in BUdR on TK- cells. Insertion into two vaccinia virus serine protease inhibitor (serpin) genes was achieved by co-insertion of the Escherichia coli xanthine guanine phosphoribosyltransferase gene linked to the vaccinia virus 7.5K promoter and selection of mycophenolic acid-resistant recombinant viruses. Each recombinant virus expressed a 57K L1 protein at similar levels and with similar kinetics. However, immunization of mice with these recombinant viruses induced different levels of antibody to the L1 protein. Viruses lacking serpin genes B13R and B24R induced significantly higher antibody levels than did viruses lacking the TK gene. The presence of functional B13R and B24R gene products is therefore somehow immunosuppressive at least for antibody responses to the L1 protein of HPV-16.

Animals↗

Identification of a high molecular weight steroid response element binding protein.

In this study we report the identification of a Steroid Response Element-Binding Protein (SRE-BP) present in whole cell extracts of HeLa cells and GH3 pituitary tumor cells which specifically binds to two classes of functionally distinct SREs. In gel retardation experiments SRE-BP binds preferably to oligonucleotides containing an estrogen response element (ERE) or a symmetrical glucocorticoid response element (GRE); it binds less well to a mutant GRE and poorly, if at all, to a thyroid response element (TRE). The SRE-BP does not recognize transcription factor binding sites present in the promoter of the Herpes Simplex Virus thymidine kinase gene. We have shown, using gel filtration chromatography that the SRE-BP has a relative molecular weight under nondenaturing conditions of 205 K (+/- 20 K). The SRE-BP is not a steroid receptor as evidenced by different DNA sequence specificity, cell type distribution, and molecular weight. We propose that by modulating the interaction of steroid receptors with target SREs, the SRE-BP plays a role in specificity of steroid hormone action.

Base Sequence↗

Continued expression of HPV-16 E7 protein is required for maintenance of the transformed phenotype of cells co-transformed by HPV-16 plus EJ-ras.

The close association between HPV-16 and cervical cancer implies some role for the virus in development of this cancer. Recent studies have shown that the HPV-16 E7 gene encodes the major transforming activity of the virus in baby rat kidney (BRK) cell transformation assays. To investigate the requirement for continued E7 expression in BRK cells transformed by HPV-16 E7 plus EJ-ras, we have developed a system for inducible expression of the E7 gene. The studies reported here show that continued expression of the HPV-16 E7 gene is required for maintenance of the transformed phenotype in these cells. The implications these observations bear on the role of the E7 gene in cervical carcinoma are discussed.

Animals↗

Amplification and overexpression of c-myc proto-oncogene correlate with the loss of glucocorticoid dependence in rodent cells transformed by human papillomavirus type 16.

Transformation of baby mouse kidney epithelial cells by human papillomavirus (HPV) type 16 is dependent both upon the cooperating oncogene and on the hormonal conditions after transfection. With v-fos as the oncogene, the transformed cells require glucocorticoid hormone, such as dexamethasone, for proliferation. This requirement is lost on continued passage of cell lines, and the cells become dexamethasone independent. Steroid-independent cell lines are also produced by growth of the HPV16/v-fos cells in 17 beta-estradiol following transfection, but cell lines produced in this manner showed no subsequent requirement for estradiol or dexamethasone. Expression of the c-myc proto-oncogene was measured in dexamethasone-dependent and independent cell lines. Dexamethasone-dependent cell lines all exhibited low level c-myc expression, but this markedly increased in the cell lines that had become dexamethasone independent as a result of continued in vitro growth. The low level of c-myc expression in some early passage dexamethasone-dependent cell lines appears to be associated with rearrangement of the c-myc locus, whereas late passage dexamethasone-independent cell lines contain amplified c-myc sequences. Dexamethasone-independent cell lines derived by growth in 17 beta-estradiol showed higher levels of c-myc expression, together with higher c-myc copy number, than dexamethasone-dependent lines. Taken together, these studies indicate that the steady-state level of c-myc expression affects the continued requirement of HPV16-transformed cells for dexamethasone.

Cell Division↗

Plasma dopamine-beta-hydroxylase and preschool behavior in children with conduct disorder.

The preschool behavior history and a history of abuse or neglect were compared between emotionally disturbed boys with and without conduct disorder (CD), and between boys with high and low plasma dopamine-beta-hydroxylase (D beta H) activities and CD. Boys with CD had the expected increase in preschool behaviors associated with attention deficit disorder (ADD) and CD as well as more reports of abuse or neglect. A higher percentage of boys with low D beta H were reported to have preschool behaviors associated with ADD. In contrast, more high D beta H subjects were reported as abused or neglected.

Attention Deficit Disorder with Hyperactivity↗

Lymphoproliferative response to fusion proteins of human papillomaviruses in patients with cervical intraepithelial neoplasia.

The cell-mediated immune response (CMI) to E6 and E4 fusion proteins of human papillomavirus type 16 (HPV-16), E6 fusion protein of HPV-18, and to control proteins similarly produced, was analysed in 29 patients with cervical intraepithelial neoplasia (CIN) and in 15 age-matched laboratory personnel using a lymphocyte proliferation assay (LPA). Compared to controls without any added proteins, a positive response (stimulation index greater than 2.0) to the highly purified E6 control protein was found in only one patient. Positive responses to the E4 control protein which contained beta-galactosidase were noted in three patients and two controls. With control proteins as baseline, the lymphocytes from nine patients (28%) and three laboratory personnel (20%) responded to at least on HPV fusion protein after 7 days in culture. Stimulation indices were low in both groups with a range of 2.06-4.69 and the difference in incidence of positive responses between the groups is not significant. Proliferative responses to HPV-1 and HPV-2 virion antigens were noted in 6/23 (26%) of the patients and 2/15 (18%) of the other group. No correlation between responsiveness and degree of dysplasia or presence of koilocytes was found in the patient group. The relevance of the low proliferative responses is discussed.

Adult↗

Constitutive expression of c-myc oncogene confers hormone independence and enhanced growth-factor responsiveness on cells transformed by human papilloma virus type 16.

The effect of constitutive expression of the c-myc oncogene on the biological properties of cells transformed or immortalized by human papilloma virus type 16 (HPV16) was studied. Whereas transfection of HPV16 alone into primary baby mouse kidney (BMK) cells failed to generate any immortalized cell lines unless the tumor promoter phorbol 12-myristate 13-acetate was present, cotransfection of HPV16 with a plasmid that constitutively expresses murine c-myc (pSVc-myc-1) generated numerous rapidly growing colonies of cells. Cell lines transformed by HPV16 and pSVc-myc-1 did not require phorbol ester or steroid hormones for growth and were tumorigenic in syngeneic immunocompetent mice. Transfection of pSVc-myc-1 into established cell lines transformed by HPV16 and the v-fos oncogene increased the growth rate and saturation density of these lines severalfold, allowed growth in low-serum medium, and abolished the requirement of these cell lines for glucocorticoids or progestogens. Transfection of the EJ-ras oncogene into these lines did not significantly affect any of these properties.

Animals↗

Characterization of the human p53 gene promoter.

Transcriptional deregulation of the p53 gene may play an important part in the genesis of some tumors. We report here an accurate determination of the transcriptional start sites of the human p53 gene and show that the majority of p53 mRNA molecules do not contain a postulated stem-loop structure at their 5' ends. Recombinant plasmids of the human p53 promoter-leader region fused to the bacterial chloramphenicol acetyltransferase gene (cat) were constructed. After transfection into rodent or human cells, a 350-base-pair fragment spanning the promoter region conferred 4% of the CAT activity mediated by the simian virus 40 early promoter/enhancer. We monitored the efficiency with which 15 3' and 5' promoter deletion constructs initiated transcription. Our results show that an 85-base-pair fragment, previously thought to have resided in exon 1, is all that is required for full promoter activity.

Base Sequence↗

Overexpression of normal human p53 in established fibroblasts leads to their tumorigenic conversion.

Some, but not all, mouse p53 genes are able to cooperate with an activated ras oncogene to transform primary cells. Overexpression of what is presumed to be wild-type murine p53 is sufficient to confer a tumorigenic phenotype on established cell lines. We have investigated the effect of overexpression of normal human p53 genes on the growth and morphology of both primary and established mouse and rat cells. When plasmids containing functional human p53 genes under the control of strong viral promoter/enhancer elements were transfected into NIH3T3 cells or Rat-1 cells, no gross alterations in cell shape or morphology were observed. When stable NIH3T3 transfectants were established by co-transfection of the p53 plasmids with pSV2neo and subsequent selection in medium containing G418, many of the lines generated exhibited altered growth characteristics. While, again, the cells did not form foci above the monolayer and were not capable of growing in soft agar, they showed a reduced dependence on serum for growth, were able to grow to higher saturation densities, and displayed markedly enhanced tumorigenicity when inoculated into nude mice. The expression of human p53 in the transfectants was assessed by immunoblotting with a monoclonal antibody, PAb1801, which is reactive to human but not mouse p53. There was a clear correlation between the extent of p53 overexpression and acquisition of the tumorigenic phenotype. None of nine human p53 constructs was capable of cooperating with an activated ras oncogene to transform primary cells under conditions where a mouse clone, pLTRp53cG, could do so efficiently. None of the human p53 constructs was capable of rescuing primary rat cells from senescence. Taken together, these data show that overproduction of normal human p53 can confer an enhanced tumorigenic phenotype on established fibroblasts and support the idea that mutational activation may be necessary for p53 to express its full oncogenic potential.

Animals↗

Transformation of primary human fibroblast cells with human papillomavirus type 16 DNA and EJ-ras.

Human papillomavirus type 16 (HPV type 16) has been implicated as an etiological agent in human cervical cancer. This virus contains sequences which, under the proper transcriptional control, can increase the tumorigenicity of established mouse cells and cooperate with EJ-ras in transforming primary baby rat kidney (BRK) cells. These data argue that this virus contains oncogenic sequences. Because this is a human virus, it was important to study the effect on primary human cells of HPV type-16 DNA in both the presence and absence of EJ-ras. We now present data which demonstrate that HPV type-16 DNA, under the transcriptional control of Moloney murine leukemia viral long terminal repeats (MoMuLV-LTR), can extend the life span of primary human fibroblast cells in culture. Co-transfection of the HPV type-16 DNA containing plasmid together with an activated EJ-ras oncogene gives rise to transformed cells which grow faster, are morphologically different from and more aneuploid than cells established with only HPV type-16 DNA. Molecular analysis of these established and partially transformed human cells reveals that they contain and express the transfected DNA. These data argue that primary human cells can be transformed with HPV type-16 and EJ-ras sequences, whereas cells harboring only HPV type 16 DNA are largely normal but have an extended life span.

Animals↗

p53 in chronic myelogenous leukemia. Study of mechanisms of differential expression.

The p53 is a nuclear protein that is associated with normal cellular proliferation and can cooperate with Ha-ras in causing cellular transformation in vitro. Lineage association is known to exist between p53 expression and normal lymphopoiesis, but not myelopoiesis. We studied the expression of p53 using chronic myelogenous leukemia (CML) cell lines, somatic hybrids of these cells, and leukemic cells from CML patients. Lymphoid CML lines expressed both p53 mRNA and protein. We also analyzed p53 synthesis by two B-lymphoid lines from the same CML patient; cells of one line were derived from the neoplastic clone, cells of the other were derived from the normal clone. Both synthesized equal amounts of a phosphorylated p53 protein. None of the myeloid CML lines expressed detectable p53 protein and two of four expressed negligible p53 mRNA. Two other myeloid CML lines and myeloid cells from three of four patients expressed p53 mRNA. These findings suggest that expression of the gene is not regulated normally in CML. Several approaches were pursued to explore the differential expression of p53. Southern blot analyses showed no gross alterations in the p53 gene from cells of either the expressing or the nonexpressing lines. No difference in the pattern of demethylated CpG sites was noted in the region of the p53 gene in cells from K562 (myeloid p53 nonexpressor) and in BV173 (lymphoid p53 expressor). The sites of demethylation clustered in and around the p53 promoter in both cell lines. Somatic hybrids formed between a p53 mRNA nonexpressor myeloid line (K562) and the parental p53 expressor lymphoid lines (Daudi, PUT) produced p53 mRNA and protein, suggesting that p53 is a dominantly expressed protein and that lack of expression in myeloid cells is not mediated by a trans-acting negative regulatory protein. DNA transfection experiments performed using the indicator gene chloramphenicol acetyltransferase attached to promoter sequences of p53 showed that these constructs were equally activated in BV173 (p53 expressor) and K562 (p53 mRNA nonexpressor). The mechanism of p53 regulation in CML remains unclear.

Blast Crisis↗

Analysis of human papillomavirus sequences in cell lines recently derived from cervical cancers.

The DNA and RNA from four cell lines recently derived from cervical carcinomas (HX151c, HX155c, HX156c, and HX160c) were analyzed for the presence of human Papillomavirus DNA. Each contained HPV-16 DNA in a multicopy integrated form of varying complexity. Each also expressed RNA transcripts of similar sizes to CaSki cell transcripts. The splice acceptor position within the E6 coding region of the cell line HX156c was identical to CaSki, SiHa, and HeLa cells as well as a cell line derived from mouse fibroblasts transformed with HPV-16 sequences in a retrovirus vector. Immunoprecipitation with an anti-HPV-16 E6 polyclonal antiserum demonstrated that HX160c cells contain the E6 polypeptide derived from unspliced transcripts.

Base Sequence↗

Comparison of the in vitro transforming activities of human papillomavirus types.

The association of certain human papillomavirus (HPV) types with the majority of human cervical carcinomas suggests a role for the virus in the development of this type of cancer. In this paper, we have examined the transforming properties of several HPV types where the early region genes of the virus are under the control of a strong heterologous promoter and show that major differences exist between the HPV types in their ability to transform primary rat kidney epithelial cells in conjunction with an activated ras oncogene. Those HPV types most commonly found in carcinomas--types 16, 18, 31 and 33--are capable of co-operating with ras to transform primary cells, but those types most commonly found in benign lesions--types 6 and 11--are not. We further demonstrate that the E7 gene of HPV16 by itself is sufficient to co-operate with activated ras to produce transformed cells which are tumorigenic in immunocompetent animals.

Adenocarcinoma↗

Analysis of human papillomavirus type 16 polypeptides in transformed primary cells.

The close association between human papillomavirus type 16 and cervical cancer implies some role for the virus in the development of this cancer. It has been demonstrated that HPV-16 DNA sequences in the presence of activated ras are capable of transforming primary baby rat kidney cells. This communication describes the characterization of these transformed cells. All cell lines are shown to be tumorigenic in immunocompetent rats and there is continued expression of the HPV-16 E6 and E7 polypeptides in a number of the cell lines analyzed, suggesting a role for at least one of these proteins in the maintenance of the transformed phenotype.

Animals↗

Human papillomavirus type 16 cooperates with activated ras and fos oncogenes in the hormone-dependent transformation of primary mouse cells.

The effect of human papillomavirus (HPV) and activated oncogenes on the growth and morphology of primary baby mouse kidney (BMK) cells has been studied. Early region DNA from HPV types 16, 18, 31, and 33, but not type 6, under the transcriptional control of a heterologous, retroviral promoter cooperated with EJ-ras to produce cell lines that gave rise to carcinomas in syngeneic immunocompetent animals. The same HPV constructs, when cotransfected with a plasmid containing sequences from the Finkel-Biskis-Jinkins murine sarcoma virus provirus (v-fos), produced cell lines that were tumorigenic in nude mice. None of the other activated oncogenes tested, including activated c-myc, displayed any activity with HPV in this cotransfection assay. When the heterologous promoter was replaced by the homologous HPV16 promoter, the transforming effect of HPV16 with either EJ-ras or v-fos required the presence of either glucocorticoid or progestogen. Cell lines derived from transfection of HPV16 with either EJ-ras or v-fos required the continued presence of hormones for proliferation.

Animals↗

Human papillomavirus type 16 DNA cooperates with activated ras in transforming primary cells.

The close association of human papillomavirus type 16 DNA with a majority of cervical carcinomas implies some role for the virus in this type of cancer. To define the transforming properties of HPV-16 DNA in vitro we have now performed transfection experiments on baby rat kidney cells using HPV-16 DNA in conjunction with an activated ras gene. We have demonstrated that a 6.6-kb DNA fragment, containing the early genes of HPV-16 under the control of Moloney murine leukaemia virus long terminal repeats (MoMuLV-LTRs), cooperates with EJ-ras in transforming these cells. Both DNAs are required and neither alone is effective. The cooperating activity appears to reside in a protein or proteins derived from the E6/E7 region of the HPV-16 genome.

Animals↗