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Biomedical subjects

P M Howley

Publications and source records attributed to P M Howley.

At least 163 records · Page 9Linked to original sources

Interferon induces morphologic reversion with elimination of extrachromosomal viral genomes in bovine papillomavirus-transformed mouse cells.

The effect of mouse L-cell interferon on bovine papillomavirus type 1 (BPV-1) transformation of murine cells was examined. Mouse interferon reduced the level of BPV-1-induced transformation of mouse C127 cells by 95%. Long-term treatment of established BPV-1-transformed mouse cell clones with mouse L-cell interferon led to a decrease in the average number of the plasmid viral genomes present in these cells to 1/3 to 1/8. Although revertant lines could not be isolated from these lines in the absence of treatment with interferon, flat revertants were easily selected from two independent clonal transformed lines carried for 60 generations in the continued presence of 200 units of interferon per ml. These flat revertants had the biological characteristics of nontransformed C127 cells and could be retransformed by BPV-1. Southern blot hybridization failed to detect BPV-1 DNA in any of eight independent revertant lines examined under conditions that could detect 0.2 copies per cell. We conclude that interferon treatment has resulted in a selective reduction of the amount of extrachromosomal BPV-1 DNA in transformed cells and has cured some treated cells completely of their viral DNA.

Bovine papillomavirus 1↗

The human papillomaviruses.

The human papillomaviruses (HPVs) have long been recognized as the etiologic agents of a variety of benign cutaneous and mucosal proliferative entities. Currently, 11 distinct HPVs have been described, and each seems preferentially associated with a distinct clinical entity. In animal species, some papillomaviruses (PVs) are associated with lesions that can become malignant. What role specific HPVs may play in cutaneous or mucosal malignant squamous cell neoplasms is under investigation in a number of different laboratories. There is a subgroup of PVs that can malignantly transform fibroblasts of heterologous species. This system provides a model for studying the malignant potential of the PVs and for determining the cellular and viral events associated with PV-induced malignant transformation. A unique characteristic of this system is that the HPV genome exists exclusively nonintegrated as a DNA plasmid in transformed cells.

Animals↗

Mouse cells transformed by bovine papillomavirus contain only extrachromosomal viral DNA sequences.

The viral DNA sequences in mouse C127 cells transformed by bovine papillomavirus type 1 (BPV-1) virions, by full-length linear BPV-1 DNA, or by a defined transforming subgenomic DNA segment of BPV-1 were examined by reassociation kinetics and blot hybridization. In all cases, the transformed cells contained multiple copies of BPV-1 DNA, present exclusively as supercoiled or nicked circular extrachromosomal molecules or as a slowly migrating complex of circular viral DNA molecules. In the transformed cell lines established from cells transfected with full-length linear BPV-1 DNA, there was recircularization of the input DNA which in some cases resulted in the loss of the restriction site used in the linearization of the DNA. In the transformed cell lines established with the defined subgenomic segment there was circularization of the DNA accompanied by the acquisition of new sequences or duplication and rearrangement of the BPV-1 sequences. In contrast to other well-studied virus transformation systems, no integration of the BPV-1 genome into the host chromosome could be detected under conditions sensitive enough to detect 0.1-0.2 viral genome equivalent. It was concluded that maintenance of transformation may be mediated by nonintegrated viral DNA.

Animals↗

Presence of human papilloma viral antigens in juvenile multiple laryngeal papilloma.

Juvenile laryngeal papillomas, solitary laryngeal papillomas of the adult, and cylindric cell papillomas of the nose and sinuses were examined for the presence of papillomavirus antigens by means of immunocytochemistry. By using an antiserum capable of recognizing a common group antigen that reacts with papillomavirus antigens of different species, it was found that half of the juvenile laryngeal papillomas studied contained cells staining for papillomavirus antigens. No positive cells were found in adult solitary papillomas or cylindric cell papillomas. These results strongly implicate a human papillomavirus as the causative agent of juvenile multiple laryngeal papillomas.

Antigens, Viral↗

Kinetics of inhibition of papovavirus DNA synthesis by superinfection with adenovirus 2 and non-defective adenovirus 2-simian virus 40 hybrid viruses.

Simian Virus 40 (SV40) DNA synthesis is inhibited in monkey cells by superinfection with adenovirus 2 (Ad2) and various non-defective Ad2-SV40 hybrid viruses. Similarly, BKV (a human papovavirus) DNA synthesis is inhibited in human cells by superinfection with Ad2. Kinetic studies indicate that inhibition begins during the early phase of the Ad2 lytic cycle. Superinfection with Ad2 does not significantly alter the formation of SV40 T antigen. Superinfection with Ad2 late in SV40 lytic cycle is less efficient in the inhibition of SV40 DNA synthesis, and the onset of Ad2 DNA synthesis is delayed, compared to superinfection early in the SV40 lytic cycle. These findings suggest that the Ad2 and SV40 genomes may compete to bind an early AD2 protein which is essential for Ad2 replication, but which blocks SV40 replication.

Adenoviruses, Human↗

Analysis of JC virus DNA purified directly from human progressive multifocal leukoencephalopathy brains.

Human polyomavirus JC DNA was purified directly from the diseased brain tissue of two patients with progressive multifocal leukoencephalopathy (PML) by a method employing differential salt precipitation (B. Hirt, J. Mol. Biol. 26:365-369, 1967). Each of the viral genomes (JC-NIH-1 and JC-NIH-2) was molecularly cloned intact in Escherichia coli, using pBR322, at their unique EcoRI (0.00 map unit) and BamHI (0.51 map unit) sites. The JC-NIH-1 genome was approximately 50 base pairs larger and the JC-NIH-2 genome was approximately 50 base pairs smaller than the prototype human polyomavirus JC (Mad-1) DNA. Analysis of the restriction endonuclease cleavage fragments of these two DNAs and the human polyomavirus JC (Mad-1) DNA revealed only slight differences which mapped in a region of the genome extending from 0.67 to 0.74 map unit. From previous homology studies, this region of variance corresponds to the noncoding region to the late side of the origin of DNA replication.

Brain↗

Bovine papilloma virus deoxyribonucleic acid: a novel eucaryotic cloning vector.

A novel eucaryotic vector derived from the transforming region of bovine papilloma virus was established and demonstrated to be highly effective for introducing foreign genes into animal cells. The foreign deoxyribonucleic acid (DNA) is replicated and actively transcribed as an episome, and the transcripts are translated into an authentic gene product. We have constructed a DNA hybrid molecule, BPV69T-rI1, containing the transforming region of bovine papilloma virus DNA and the rat preproinsulin gene I (rI1), and used it to transform susceptible mouse cells. DNA hybridization analysis has demonstrated the presence of multiple unintegrated copies of hybrid DNA molecules, with the bovine papilloma virus 1 DNA segment and the rI1 gene covalently linked in selected transformed cell lines. S1 nuclease analysis revealed the presence of a correctly spliced coding segment of the preproinsulin transcript similar or identical in its electrophoretic mobility to that of messenger ribonucleic acid produced in rat insulinoma cells. Significant levels of a protein immunoreactive with anti-insulin serum were detected by radioimmunoassay in the culture medium of transformed cells. Immunoprecipitation analysis in conjunction with competitive binding to bovine proinsulin established the identity of the protein as that of rat proinsulin.

Animals↗

Cloning of human papilloma virus genomic DNAs and analysis of homologous polynucleotide sequences.

The complete DNA genomes of four distinct human papilloma viruses (human papilloma virus subtype 1a [HPV-1a], HPV-1b, HPV-2a, and HPV-4) were molecularly cloned in Escherichia coli, using the certified plasmid vector pBR322. The restriction endonuclease patterns of the cloned HPV-1a and HPV-1b DNAs were similar to those already published for uncloned DNAs. Physical maps were constructed for HPV-2a DNA and HPV-4 DNA, since these viral DNAs had not been previously mapped. By using the cloned DNAs, the genomes of HPV-1a, HPV-2a, and HPV-4 were analyzed for nucleotide sequence homology. Under standard hybridization conditions (Tm = --28 degrees C), no homology was detectable among the genomes of these papilloma viruses, in agreement with previous reports. However, under less stringent conditions (i.e., Tm = --50 degrees C), stable DNA hybrids could be detected between these viral DNAs, indicating homologous segments in the genomes with approximately 30% base mismatch. By using specific DNA fragments immobilized on nitrocellulose filters, these regions of homology were mapped. Hybridization experiments between radiolabeled bovine papilloma virus type 1 (BPV-1) DNA and the unlabeled HPV-1a, HPV-2a, or HPV-4 DNA restriction fragments under low-stringency conditions indicated that the regions of homology among the HPV DNAs are also conserved in the BPV-1 genome with approximately the same degree of base mismatch.

Base Sequence↗

Cloned human polyomavirus JC DNA can transform human amnion cells.

The genome of the human polyomavirus JC (Mad-1 strain) was molecularly cloned in Escherichia coli by using the plasmid vector pBR322. Recombinant DNA molecules were constructed with the entire JC genome inserted either at its unique EcoRI site at 0.0 map units or at its unique BamHI site at 0.51 map units. Viral DNA from each of these recombinant plasmids was capable of transforming human amnion cells, and cell lines established from transformed foci were positive for JC tumor antigen as assayed by indirect immunofluorescence.

Amnion↗

A rapid method for detecting and mapping homology between heterologous DNAs. Evaluation of polyomavirus genomes.

A new approach for evaluating homologous sequences among related DNAs is presented. Conventional filter hybridization techniques are employed at 35 degrees C in a range of formamide concentrations in order to perform annealings at effective temperatures as low as Tm -50 degrees C which permits the detection of regions of homology with as much as 33% base mismatch. Under such nonstringent conditions, high levels of specific annealing can be obtained at plateau levels. In combination with the Southern "blotting" technique (1975), this approach can be used to perform biochemical heteroduplex melting experiments. The homology among the genomes of the murine polyoma virus (Py), the simian virus 40 (SV40), and the human papovavirus BK was evaluated using this new methodology.

DNA, Viral↗

JC human papovavirus replication in human amnion cells.

JC human papovavirus was found to replicate in primary human amnion cells. The virus has undergone eight passages in amnion cells and was identified by serological methods as JC virus. By restriction endonuclease analysis of the viral DNA, the fragments observed were identical to those previously reported for the prototype strain.

Amnion↗

Characterization of the genome of the murine papovavirus K.

The DNA genome of the murine papovavirus K virus (KV) was characterized and compared with the genome of polyoma virus. A physical map of the KV genome was constructed by analysis of the size of DNA fragments generated by sequential cleavage with combinations of restriction endonucleases. By using one of the three EcoRI sites in the KV genome as the 0 map position, the KV physical map was then oriented to the polyoma virus genome. Of 42 restriction sites mapped within the KV genome, 7 were localized within 0.01 map unit of their respective sites in the polyoma virus genome; an eighth site mapped within 0.02 map unit. KV replication was examined and found to be bidirectional, initiating at approximately 0.70 map unit. This corresponds well to the origin of replication within the polyoma virus genome and further supports the orientation of the KV physical map.

Animals↗

Conserved polynucleotide sequences among the genomes of papillomaviruses.

The DNAs of different members of the Papillomavirus genus of papovaviruses were analyzed for nucleotide sequence homology. Under standard hybridization conditions (Tm - 28 degrees C), no homology was detectable among the genomes of human papillomavirus type 1 (HPV-1), bovine papillomavirus type 2 (BPV-2), or cottontail rabbit (Shope) papillomavirus (CRPV). However, under less stringent conditions (i.e., Tm - 43 degrees C), stable hybrids were formed between radiolabeled DNAs of CRPV, BPV-1, or BPV-2 and the HindIII-HpaI A, B, and C fragments of HPV-1. Under these same conditions, radiolabeled CRPV and HPV-1 DNAs formed stable hybrids with HincII B and C fragments of BPV-2 DNA. These results indicate that there are regions of homology with as much as 70% base match among all these papillomavirus genomes. Furthermore, unlabeled HPV-1 DNA competitively inhibited the specific hybridization of radiolabeled CRPV DNA to bpv-2 DNA fragments, indicating that the homologous DNA segments are common among these remotely related papillomavirus genomes. These conserved sequences are specific for the Papillomavirus genus of papovaviruses as evidenced by the lack of hybridization between HPV-1 DNA and either simian virus 40 or human papovavirus BK DNA under identical conditions. These results indicate a close evolutionary relationship among the papillomaviruses and further establish the papillomaviruses and polyoma viruses as distinct genera.

Base Sequence↗