Search PubMed⌕ Search

Biomedical subjects

L Crawford

Publications and source records attributed to L Crawford.

At least 55 records · Page 3Linked to original sources

Steroidal alkaloid toxicity to fish embryos.

Embryos of two species of fish were evaluated for their suitability as model systems for steroidal alkaloid toxicity, the Japanese rice fish, medaka (Oryzius latipes) and the rainbow trout (Oncorhynchus mykiss). Additionally, the equine neurotoxic sesquiterpene lactone repin, was also tested. A PROBIT program was used to evaluate the EC1, EC50 and EC99 as well as the associated confidence limits. The steroidal alkaloids tested were the Solanum potato glycoalkaloids alpha-chaconine, alpha-solanine, the aglyclones solanidine and solasodine and the Veratrum alkaloid, jervine. Embryo mortality, likely due to structural or functional abnormalities in the early development stages of the embryo, were the only response observed in both species. The rainbow trout exhibited a toxic response to chaconine, solasidine, repin and solanine but the medaka embryos were only affected by the compounds, chaconine and solanine. Rainbow trout may indeed serve as a good lower vertebrate model for studying the toxicity of steroidal alkaloids.

Abnormalities, Drug-Induced↗

Trans-activation of the adenovirus E2 promoter by human papillomavirus type 16 E7 is mediated by retinoblastoma-dependent and -independent pathways.

In common with the adenovirus E1A and simian virus 40 large T oncoproteins, the E7 protein of human papillomavirus (HPV) type 16 interacts with the retinoblastoma (Rb) tumour suppressor protein (pRb). The functional importance of this interaction for HPV-16 E7 protein was investigated by analysis of the transactivating function of E7 at the adenovirus E2 promoter in a set of breast tumour cell lines. Trans-activation by HPV-16 E7 in two pRb-deficient cell lines demonstrated that pRb is not essential for E7-mediated trans-activation, but reconstitution of Rb expression indicated the existence of an Rb-mediated pathway of E7 trans-activation. This pathway results from suppression by E7 of a trans-repressing function encoded by the Rb gene. The E7 protein is shown to be capable of interacting in vivo with the Rb-related protein p107. Furthermore, analysis of a fusion construct between the amino terminus of Rb and the carboxy terminus of p107 suggests that, in common with pRb, the p107 protein trans-represses the adenovirus E2 early promoter. Therefore it is proposed that the pRb-independent pathway of E7 trans-activation is a consequence of the suppression of trans-repression by p107.

Adenovirus E2 Proteins↗

HPV16 E7 protein associates with the protein kinase p33CDK2 and cyclin A.

E7 is the major transforming protein of human papillomavirus type 16 (HPV16). It has been found to associate with the retinoblastoma protein Rb1. We investigated whether HPV16 E7 protein was associated with other cellular proteins, in particular with those involved in cell cycle control. Immunoprecipitates from CaSki cell extracts with an anti E7 monoclonal antibody contained a histone H1 kinase. Recombinant E7, synthesized in yeast, when mixed with protein extracts from epithelial cells bound histone H1 kinase activity in vitro. The in vivo and the in vitro-formed E7-kinase complex had the same periodicity of activity during the cell cycle, being most active in S and G2/M. Immunoblotting of E7 immunoprecipitates with an antibody raised against the p33CDK2, revealed a 33 kDa protein band not detected by an anti-p34cdc2 antibody, suggesting that the E7-associated kinase activity is due to the p33CDK2. The interaction appears to be via cyclin A, since probing of similar immunoblots showed a 50 kDa band corresponding to cyclin A. The association of E7 with cyclin A appeared to be direct, not involving Rb 1 or other proteins.

Cyclins↗

Prospects for cervical cancer vaccines.

As we have seen, the technical problems of developing cheap, effective vaccines against HPV associated tumours are formidable, but they are by no means insuperable. Experiments in cows with BPV2 show that both therapeutic and prophylactic vaccines work to some extent and the immunogens used are by no means the best that could now be envisaged. The fact that human trials are now under consideration or in progress with both protein vaccines and recombinant vaccinia virus vectors is also very encouraging. There are still both practical and ethical problems, as with any sexually transmitted disease, but the main problem is one of support. Pharmaceutical companies see no immediate profit in vaccines of this type, preferring to invest in drugs for treatment or diagnostic kits for detection. Vaccines against HPV are unlikely to be forthcoming, and indeed, the people most in need of protection against cervical cancer are the least able to afford any sort of treatment, especially a preventive one. This leaves the cancer charities, and these in their present financial difficulties are understandably reluctant to commit substantial resources to the long term programmes that are needed to tackle the problems of developing and evaluating candidate vaccines. It seems certain that intervention against HPV and cervical cancer will come in time, but with the present level of commitment, progress is inevitably going to be less rapid than one would like.

Female↗

Epitope-mapped monoclonal antibodies against the HPV16E1--E4 protein.

The human papillomavirus (HPV) E1--E4 protein is the only nonstructural late protein encoded by the virus. We have isolated three hybridomas producing monoclonal antibodies to the E1--E4 protein of HPV16, which is the HPV type most frequently associated with cervical cancer. The three antibodies (TVG 401, 402, and 403) detect adjacent epitopes within the major seroreactive region of the molecule and show no reactivity against the E4 proteins of HPV1, HPV2, HPV4, or HPV6. The E1--E4 protein migrates as a 10K species on SDS-gel electrophoresis and forms cytoplasmic inclusion granules in infected cells in vitro similar in appearance to those produced by HPV1 in benign warts. In naturally occurring HPV16-induced tumors the E1--E4 protein was detected in the cytoplasm of cells in the upper layers of the lesion in areas in which HPV16 DNA replication was occurring, as determined by in situ hybridization. Although the epitopes recognized by these monoclonal antibodies survive brief fixation in 5% formaldehyde, reactivity was destroyed by prolonged fixation. These monoclonal antibodies represent the first against HPV16 E1--E4 and should complement those already available to E7 and L1 for the screening of frozen sections of clinical biopsies and will be of value in monitoring the progression of HPV infection from benign lesions to invasive cancer.

Amino Acid Sequence↗

Definition of linear antigenic regions of the HPV16 L1 capsid protein using synthetic virion-like particles.

Mice of three haplotypes (H-2d, H-2b, and H-2d/b) were immunized with synthetic HPV16 virus-like particles (VLPs), produced using a vaccinia virus doubly recombinant for the L1 and L2 proteins of HPV16. The resultant anti-VLP antisera recognized HPV16 capsids by ELISA assay and baculovirus recombinant HPV16 L1 and L2 protein on immunoblot. Overlapping peptides corresponding to the HPV16 L1 amino acid sequence were used to define the immunoreactive regions of the L1 protein. The majority of the L1 peptides were reactive with IgG from the mice immunized with the synthetic HPV16 capsids. A computer algorithm predicted seven B epitopes in HPV16 L1, five of which lay within peptides strongly reactive with the murine antisera. The murine anti-VLP antisera failed to react with the two peptides recognized by anti-HPV16L1 monoclonal antibodies raised by others against recombinant L1 fusion protein. We conclude that the immunoreactive epitopes of HPV16 defined using virus-like particles differ significantly from those defined using recombinant HPV16 L1 fusion proteins, which implies that such fusion proteins may not be the antigens to look for HPV16L1 specific immune responses in HPV-infected patients.

Amino Acid Sequence↗

Lack of immortalizing activity of a human papillomavirus type 16 variant DNA with a mutation in the E2 gene isolated from normal human cervical keratinocytes.

The oncogenic potential of a human papillomavirus type 16 (HPV16) variant cloned from normal human cervical keratinocytes has been tested in vitro using primary rodent epithelial cells and human cervical keratinocytes. The HPV16 variant was able to extend the lifespan of, but failed to immortalize, human keratinocytes. It could however cooperate with an activated ras oncogene to transform primary rodent cells. Radioimmunoprecipitation assays of the rodent cells showed that they expressed the E7 protein. DNA sequence analysis of the URR/E6/E7 and E5 regions of the HPV16 showed them to be fully functional, but a deletion in the viral E2 open reading frame was detected. This truncated E2 only weakly stimulated transcription of the viral regulatory region. Complementation assays using the HPV16 variant and a full-length E2 enabled the cloned variant to immortalize human cervical keratinocytes with wild-type efficiency. These results suggest that other viral gene products in addition to E6/E7 may play an important role in the in vitro immortalization of cervical keratinocytes in HPV16 and the development of cervical cancer.

Amino Acid Sequence↗

The hygromycin-resistance-encoding gene as a selection marker for vaccinia virus recombinants.

Hygromycin B (Hy), an inhibitor of RNA translation, was shown to block the replication of vaccinia virus (VV) in cultured cell lines. Insertion of the Escherichia coli Hy resistance-encoding gene (hph) into the VV genome under control of early or late synthetic VV promoters could overcome inhibition of viral replication. When hph was inserted into VV in tandem with the human papillomavirus type 16 (HPV16) L1 open reading frame, hph recombinant viruses could be selected which expressed HPV16 L1.

Base Sequence↗

Specific interaction between HPV-16 E1-E4 and cytokeratins results in collapse of the epithelial cell intermediate filament network.

The human papillomaviruses (HPV) are associated specifically with epithelial lesions, ranging from benign warts to invasive carcinoma. The virus encodes three late proteins, which are produced only in terminally differentiating keratinocytes, two of which are structural components of the virion. The third, E1-E4, is derived primarily from the E4 open reading frame, which represents a region of maximal divergence between different HPV types. E1-E4 does not seem to be a component of the virus particle or to be needed for transformation in vitro, but accumulates in the cytoplasm, where in certain benign lesions it can comprise 20-30% of total cell protein. We show here that expression of the HPV-16 E1-E4 protein in human keratinocytes (the natural host cell for HPV infection) results in the total collapse of the cytokeratin matrix. Tubulin and actin networks are unaffected by E1-E4, as are the nuclear lamins.

Animals↗

Anti-sense phosphorothioate oligonucleotides have both specific and non-specific effects on cells containing human papillomavirus type 16.

A range of specific nuclease resistant phosphorothioate oligodeoxynucleotides (S-oligos) complementary to mRNA of human papillomavirus type 16 (HPV16), were tested for their ability to inhibit cell proliferation and to alter the level of HPV-specific mRNA and proteins in CaSki cells, a human cervical carcinoma cell line containing HPV16 DNA. Only certain of the S-oligos to the viral upstream regulatory region (URR) and the early viral open reading frames (ORF), E6 and E7, were found to display any activity on the cells. These S-oligos were found to exhibit potent anti-proliferative activity at concentrations between 0.25 microM and 20 microM, inhibiting the uptake of [3H]-thymidine into CaSki cells by up to 90% at higher concentrations. The rate of synthesis of E6 and E7 proteins and the steady state level of the E7 protein however remained largely unchanged. E7 protein exhibited a greater decrease in phosphorylation in the presence of only one of the antisense oligos. Other S-oligos including a random sequence, unmodified sequences or O-methylphosphonate modified oligos, had no specific effect on the cells. The results imply that the anti-sense S-oligonucleotides had both specific anti-HPV16 and other non-specific effects on cell proliferation and synthesis of virally encoded proteins.

Base Sequence↗

The induction of cytotoxic T-lymphocyte precursor cells by recombinant vaccinia virus expressing human papillomavirus type 16 L1.

Expression of the major coat protein L1 of human papillomavirus type 16 by recombinant vaccinia viruses using a vaccinia late promoter and their use in generating antibodies have already been reported (Zhou et al., 1990). We have now constructed recombinant vaccinia viruses (VVs) which express the L1 protein from an early promoter with the intention of inducing cell-mediated immunity. This necessitated the removal of sequence motifs (TTTTTNT) from the L1 gene which would otherwise have caused transcription termination when expressed from a vaccinia virus early promoter. The nucleotide sequence was mutated to retain the correct amino acid sequence of the L1 protein. Full-length mRNA and L1 protein were generated in cells infected with the recombinant virus containing the mutant sequence, whereas the wild-type sequence generated only truncated mRNA and no detectable protein. Mice were immunized with VV expressing L1 from the mutant sequence and from the wild-type sequence in constructs with either early or late vaccinia virus promoters. Only the early promoter constructs were effective in priming cytotoxic T lymphocytes (CTL). Moreover the mutant sequence was significantly more effective than the wild-type sequence. The same L1 sequences, expressed from a vaccinia virus late promoter or coexpressed with MHC Class I molecules also expressed from a late promoter, produced high levels of L1 protein in both cases but nevertheless failed to elicit CTL activity. This is the first report of an HPV-specific CTL response and we have reaffirmed the importance of choosing the correct promoter and sequence expressed when using recombinant vaccinia viruses to induce cytotoxic T lymphocytes. These data are relevant for the design of vaccines to generate cell-mediated immunity against human papillomavirus infection.

Animals↗

Status of c-myc, p53 and retinoblastoma genes in human papillomavirus positive and negative squamous cell carcinomas of the anus.

We have examined a series of squamous cell carcinomas (SCC) of the anus, anal intraepithelial neoplasia grade III (AINII) lesions and haemorrhoids for the presence of sequences from transforming human papillomavirus (HPV) types by polymerase chain reaction (PCR)/Southern blotting. In addition, the same DNAs have been analysed for abnormalities in the c-myc, p53 and retinoblastoma (Rb-1) gene loci by Southern blotting. HPV16 sequences were detected in a total of 38 of 50 (76%) and HPV18 sequences in 4 of the 50 cancers (8%). Of 12 haemorrhoids examined, none contained HPV16 or HPV18 sequences. Amplification of c-myc was demonstrated in 15 of the 50 cancers (30%), of which 13 were HPV16 positive, and one also positive for HPV18. Amplification of c-myc was not observed in the 5 AINIII or any of the 41 haemorrhoid DNAs analysed. Rearrangement of c-myc was not seen in any of the DNAs. Gross rearrangement, or loss of p53 or Rb-1 loci was not observed in any normal or tumor tissue. However, in preliminary analysis of p53 sequence, three tumours negative for HPV were heterozygous for p53 point mutation whereas six HPV positive tumours and two haemorrhoids were wild-type sequence throughout exons four to ten.

Anus Neoplasms↗

Identification of glyoxylate cycle enzymes in chick liver--the effect of vitamin D3: cytochemistry and biochemistry.

Information regarding the presence of the glyoxylate cycle in chick liver was sought. This metabolic pathway has long been thought to be absent from vertebrate tissues. Previous studies in other tissues have shown that, when present, this pathway is sensitive to vitamin-D. Thus, the effect of long-term vitamin-D deficiency and subsequent vitamin-D replacement on liver structure was studied by light microscopy. In addition, specific biochemical assays for the presence of glyoxylate cycle enzymes were performed. Light microscopy of lipid extracted tissues, light microscopic histochemistry, and quantitative histochemistry showed that the hepatocytes from vitamin-D-deficient animals contained primarily lipid. Hepatocytes from normal and vitamin-D-replete livers contained primarily carbohydrate as judged by their staining with periodic acid-Schiff (PAS). Also, malate synthase positive peroxisomes were seen in hepatocytes from normal and vitamin-D-treated chicks. Structures positive for this glyoxylate cycle enzyme were rarely seen in the hepatocytes from vitamin-D-deficient animals. Biochemical analyses showed the presence of the two unique glyoxylate cycle enzymes, isocitrate lyase and malate synthase, in chick hepatocytes. The activity of these enzymes was markedly increased in the vitamin-D-replete livers. In addition, chick hepatocytes demonstrated the capacity to oxidize fatty acid in the presence of cyanide. This activity, which is characteristic of peroxisomal B-oxidation rather than mitochondrial, was stimulated by vitamin-D treatment. Lastly, incubation of chick liver in the presence of a fatty acid substrate (palmitate) led to higher tissue glycogen content. The latter was further increased in liver from vitamin-D-replete animals. These data show the presence of glyoxylate cycle enzymes in a higher vertebrate and indicate that this tissue is endowed with the capacity to convert lipid to carbohydrate.

Animals↗

Detection of novel splicing patterns in a HPV16-containing keratinocyte cell line.

The W12 cell line was derived from a low grade cervical lesion, and is unique among HPV16-containing cell lines in carrying its HPV16 genome as a multicopy episome. As such it is thought to be more representative of a premalignant HPV16-induced tumor than the cervical cancers from which other cell lines have been derived. Using the polymerase chain reaction (PCR), we report here the identification and cloning of a number of novel cDNA species, which appear to be characteristic of the W12 cell line. Two species were identified with E6* coding capacity (E6*I and E6*III). The smaller of these (1009 bp) was predicted to encode a novel E6*III polypeptide containing C-terminal amino acids derived from an out of frame region of the E2/E4 ORFs. The larger species (1480 bp) contained, in addition to the E6*I ORF, an intact E7 ORF and probably represents the transcript for E7 expression, as the E7 protein was readily detectable in the W12 cell line. Both species appeared to be transcribed from the p97 promoter which has been shown to be active in other cell lines. A putative E2 repressor cDNA (891 bp), an E1/E4 message (883 bp), and two novel late cDNA species (1757 and 2031 bp) were also detected, allowing the identification of a splice acceptor immediately in front of the L1 open reading frame (nt 5637) and a splice donor at nt 3631. Although the 1757-base species has the capacity to encode a full-length L1 protein, both messages use a splice donor at nt 1301, and are thus not analogous to late species previously identified in HPV11. Of the six cDNAs cloned, only the 1480-bp E7 message has been observed in other HPV16-containing cell lines. The presence of L1 transcripts, and an E2 repressor mRNA, although unexpected, may reflect the different origins of the W12 cell line.

Amino Acid Sequence↗

The effects of low levels of dietary toxic weed seeds (jimson weed, Datura stramonium and sicklepod, Cassia obtusifolia) on the relative size of rat liver and levels and function of cytochrome P-450.

Preliminary studies and previous work by other investigators have shown that jimsonweed and sicklepod seeds are very toxic. Such seeds and others are co-harvested and are often found mingling with commercial grain destined for human consumption. Low levels of these seeds were studied here to determine whether such levels would show signs of intoxication in rats by modulating growth, liver weight and relative size, cytochrome P-450 levels and function, and other relevant parameters proven to be sensitive to low levels of toxicants. Assessment of these factors showed that jimson weed does give indications of intoxication at low levels, whereas the highly toxic sicklepod does not give discernible indications.

Administration, Oral↗

Co-transformation by human papillomavirus types 6 and 11.

Human papillomavirus (HPV) types 6 and 11 are usually found in benign genital lesions and laryngeal papillomas. However, the occasional occurrence of their DNAs in carcinomas of the genital tract and larynx suggests that they have some tumorigenic activity. In this paper, we have examined the cotransforming and transactivation activities of the E7 genes from these virus types and show that they cooperate with ras to transform primary cells, but at a greatly reduced level compared to HPV-16 E7. Although the efficiencies of transformation in vitro by HPV-6 and HPV-11 are low, it is striking that the cells that are transformed are highly tumorigenic in vivo in immunocompetent animals. Transactivation studies using the adenovirus E2 promoter demonstrated that both HPV-11 E7 and HPV-16 E7 could stimulate transcription to a similar degree. These results separate the transactivation and co-transforming activities of HPV E7 genes.

Animals↗

Transformation of primary BRK cells by human papillomavirus type 16 and EJ-ras is increased by overexpression of the viral E2 protein.

The close association between human papillomavirus type 16 (HPV-16) and cervical cancer implies some role for the virus in the development of this disease. Recent studies have shown that HPV-16, under the control of strong heterologous promoters, can cooperate with the activated ras oncogene to transform primary baby rat kidney cells. Virus types associated with benign lesions, e.g. HPV-6 and -11, do not function in this system. The discrimination between virus types associated with benign and tumorigenic lesions by this assay implicate it as a useful system for the study of transformation in vitro. The studies reported here investigate the activity of the HPV-16 early gene product E2 in transformation. In the presence of exogenous E2, endogenous viral promoters are stimulated sufficiently to give a high efficiency of transformation in primary epithelial cells. This transactivation by E2 obviates the need for heterologous promoters, and implicates increased viral gene expression as a prerequisite for transformation. The stimulatory effect of E2 appears to be mediated through increased levels of expression of the E7 protein, which has been shown in similar assays to be sufficient to give transformation in cooperation with ras. CAT assays confirm that HPV-16 E2 can transactivate the HPV-16 early promoters. These studies demonstrate some of the elements in a complex series of events likely to be involved in the development of cervical carcinomas.

Animals↗