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Biomedical subjects

F Breitburd

Publications and source records attributed to F Breitburd.

At least 19 recordsLinked to original sources

Linkage of regression and malignant conversion of rabbit viral papillomas to MHC class II genes.

Human papillomaviruses associated with cutaneous and anogenital cancers induce intraepithelial precursor lesions which may regress spontaneously or progress into invasive carcinomas. Cell-mediated immune responses are probably involved in regression of precancerous lesions and the polymorphism of the genes responsible may thus have a key role in the variability of the host response. Skin warts and cancers induced in rabbits by Shope papillomavirus provide a model to test this hypothesis. We analysed a restriction-fragment-length polymorphism of major histocompatibility complex class I and class II genes and T-cell receptor beta-chain genes in infected domestic rabbits. We found a strong linkage between wart regression and a DR alpha EcoRI fragment, and an increased relative risk of malignant transformation associated with a DQ alpha PvuII fragment. This indicates a genetic control of wart evolution, involving genes in the class II region of the major histocompatibility complex.

Animals

Human papillomavirus type 1 E4 proteins differing by their N-terminal ends have distinct cellular localizations when transiently expressed in vitro.

Two major human papillomavirus type 1 (HPV-1) E4 proteins are found in large amounts in productively infected differentiating wart cells, a 17-kDa protein translated from an E1-E4 transcript and a processed 16-kDa protein lacking the E1 amino acids at least. The functions of the E4 proteins are still unknown. We have designed an in vitro system allowing the transient expression of three forms of HPV-1 E4 proteins: the 17-kDa E1-E4 protein, an E4 protein without the five E1 amino acids (E4-3200), and E4 protein initiated at the E4 ATG located upstream of the splice acceptor site (E4-3181). The E4-3181 protein has five additional N-terminal amino acids compared with E4-3200. The E4-3181 protein has not yet been detected in vivo but could, in principle, be translated from any transcript encoding the E2 protein. The constructs were transfected in two keratinocyte lines, one derived from a rabbit transplantable carcinoma (VX2R) and the other from a human penile carcinoma (SK-p). E4 transcripts with the expected size were detected in both cell lines by Northern (RNA) blot analysis. Surprisingly, the E4 proteins were found only in the VX2R cells by radioimmunoprecipitation and immunofluorescence experiments. The E1-E4 and the E4-3200 proteins were both cytoplasmic and were associated with granules reminiscent of the cytoplasmic inclusions pathognomonic of the HPV-1 infection. Moreover, each protein showed a specific staining pattern of the inclusions. In contrast, the E4-3181 protein was essentially intranuclear and perinuclear. Thus, HPV-1 E4 proteins differing in their N-terminal ends have distinct cellular localizations and arrangements. It is tempting to assume that this may relate to different roles.

Base Sequence

Expression of the human papillomavirus type 16 genome in SK-v cells, a line derived from a vulvar intraepithelial neoplasia.

The SK-v cells, established from a premalignant vulvar lesion, contain human papillomavirus type 16 (HPV-16) sequences integrated at a single cellular site and derive from a cell clone present in vivo. Transcription of the HPV-16 genome in SK-v cells was analysed by cDNA heteroduplex mapping and sequencing, and by RNase mapping. Viral sequences were shown to be transcribed into virus-cell fusion messengers. The two major transcripts have a coding capacity for a truncated E6 protein, an E7 protein and an E1-E4 fusion protein, but differ in their 3' virus-cell junction. Minor transcripts have a coding capacity for a full-length E6 protein and another truncated version of E6. The transcription pattern in the E6-E7 region was found to be the same both in SK-v cells and in CaSki cells, a line derived from an invasive cervical carcinoma. Immunoprecipitation experiments showed that the E6 protein (18K) and, predominantly, the E7 protein (20K) are expressed in SK-v cells as in CaSki cells. The E7 protein was found in a two- to threefold lower amount in SK-v cells, but showing the same half-life (about 1 h).

Base Sequence

A new method for studying epidermalization in vitro.

A new method for studying epidermalization in vitro is described. It consists of inserting a punch biopsy that serves as a source of epidermis into dermal equivalent freshly made up, with fibroblasts mixed in a collagen matrix. Fibroblasts cling to collagen fibrils and contract the matrix, leading in 3 days to a resistant dermal equivalent holding the punch biopsy firmly in place. At day 5, a culture medium favouring epidermal growth was used and a fringe of a new epidermis appeared around the punch, the area of which grew linearly with time. This new epidermis showed a pattern of differentiation similar to epidermis in vivo, with cuboidal basal cells, keratohyalin granules, membrane coating granules and the expression of the 65-67 kd keratin subset. The method seems to combine the advantages of the explant technique and of classical keratinocyte cultures, providing the researcher with a large quantity of differentiated epidermis, the pharmacologist with simple and quantitative system in which to study modifications of growth and differentiation of epidermis, and the plastic surgeon with a possible material for skin grafting.

Biopsy

The L2 open reading frame of human papillomavirus type 1a encodes a minor structural protein carrying type-specific antigens.

The proteins encoded by the open reading frames of papillomavirus genomes and the minor polypeptides detected in purified virions are still poorly defined. We show here by its expression in Escherichia coli that the open reading frame L2 of human papillomavirus type 1a codes for a minor structural protein of Mr 76,000. Antisera raised against a truncated L2-beta-galactosidase fusion protein in which the conserved N-terminal region of L2 is missing are type specific for human papillomavirus type 1 virions and are reactive at high dilutions. Expression of the L2-encoded type-specific antigens thus provides a powerful new tool for the identification of papillomaviruses.

Antigens, Viral

A type-II DNA topoisomerase and a catenating protein from the transplantable VX2 carcinoma.

It has recently been suggested that topoisomerases could be important targets for several DNA intercalating drugs used in cancer therapy. This prompted us to purify and characterize a type II topoisomerase in a highly tumorigenic transplantable rabbit tumor isolated from a skin carcinoma associated with cottontail rabbit papillomavirus. We have found that the decatenating activity present in tumor cells was 40-100 times higher than that in the rabbit liver, while no activity could be found in skin extracts. The type II topoisomerases purified from tumor and liver cells consist of two subunits with molecular masses of about 160 kDa. The conditions of the reactions of relaxation, unknotting and decatenation catalyzed by these topoisomerases II were found to be similar to those observed with enzymes of other eukaryotic cells. In the course of the purification of the VX2 enzyme, we isolated and characterized a protein of about 30 kDa in whose presence the topoisomerase II was able to catenate very efficiently supercoiled DNA molecules. This protein has the same electrophoretic mobility as an H1-2 histone, and cross-reacts with an anti-H1 antiserum. The VX2 topoisomerase II as well as the VX2 tumor should constitute useful models for assays of antitumoral drugs.

Animals

Two Shope papillomavirus-associated VX2 carcinoma cell lines with different levels of keratinocyte differentiation and transplantability.

Two cell lines, named VX2T and VX2R, were isolated from the transplantable VX2 carcinoma, a wholly anaplastic tumor established from a carcinoma induced by the Shope cottontail rabbit papillomavirus (CRPV) (J.G. Kidd and P. Rous, J. Exp. Med. 71:813-838, 1940). The CRPV genome was found to be maintained and transcribed in both cell lines, as in the VX2 carcinoma. The VX2T cells retained the tumor-producing capacity in the rabbit and the low expression of epidermal keratinocyte differentiation of the VX2 tumor cells. The VX2R cells, although tumorigenic for nude mice, were no longer serially transplantable in the rabbit and expressed differentiated functions of keratinocytes. These data indicate that the anaplastic characteristic and the transplantability of VX2 carcinoma cells to immune competent allogenic hosts may be lost without any detectable modification of the physical state and transcription of the CRPV genome.

Animals

Multiple cutaneous papillomas and carcinomas that develop spontaneously in a mouse mutant, the repeated epilation heterozygote Er/+.

After a chance observation that multiple cutaneous papillomas and squamous cell carcinomas occurred in 2 adult mice heterozygous for the repeated epilation gene Er, we surveyed a panel of 10 +/+ (wild type) and 30 Er/+ (heterozygous) mice from birth to over 2 years of age. Homozygous Er/Er mice could not be included since their defect is lethal at birth. Whereas no cutaneous tumors developed in the +/+ mice, 20 of the Er/+ mice, males and females, had developed 1-5 cutaneous papillomas and at least 1 cutaneous invasive squamous cell carcinoma by 2 years of age. No lesions were seen in mice younger than 6 months old. Although almost all Er/+ mice died with their tumor burden, no metastases have yet been proven histologically. The Er/+ mouse should serve as a useful model for the exploration of genetic factors in cutaneous squamous cell carcinomas in humans.

Alopecia

Monoclonal antibodies to the major capsid protein of human papillomavirus type 1.

Two stable monoclonal hybridoma cell lines secreting type-specific antibodies against the human papillomavirus type 1 (HPV-1) were isolated. The monoclonal antibodies detected HPV-1 antigens in frozen sections of HPV-1-induced warts, using immunofluorescence or immunoperoxidase techniques, and they reacted with HPV-1 particles in an immunodiffusion test. The two monoclonal antibodies recognized the major structural viral polypeptide, with a molecular weight of 54 000, and a minor polypeptide, with molecular weight of 76 000, in both the dissociated viral particles and in the wart extracts.

Antibodies, Monoclonal

The search for a culture system for papillomavirus.

Papillomaviruses induce tumors of keratinocytes. Vegetative viral DNA replication and virion assembly are seen in those cells which are in the process of keratinizing or are keratinized. To date, no cell culture system has been developed that permits expression of the complete viral life cycle. Keratinocytes infected in culture may harbor the virus as a stable, replicating episome, but they do not support vegetative viral growth, nor do they become immortalized or transformed. The major obstacle in using keratinocyte cultures may be related to a dual need for transformation and full differentiation. Some animal papillomaviruses have been shown to be capable of transforming cultured murine fibroblasts. The fibroblast model is useful for identifying the viral-transforming gene(s) and their products.

Animals

The human papillomaviruses.

Recent biochemical and serological studies have shown the existence of at least four distinct types of human papillomaviruses (HPVs) causing benign skin lesions. These viruses show hardly no antigenic relationships; their DNAs differ by their sensitivity to restriction endonucleases, and show little, if any, sequence homology, as detected by molecular hybridization using complementary RNAs transcribed in vitro. Data on the pathogenicity of HPVs are still incomplete but indicate that some types of benign skin lesions (plantar warts, common warts, flat warts) may be preferentially associated with some types of HPV. Most interesting is that epidermodysplasia verruciformis has been found associated with two types of virus, and that malignant conversion of some lesions has been observed in all the patients infected with one of them. This suggests that at least a HPV may have a higher oncogenic potential, as do rabbit (Shope) papillomavirus and bovine alimentary tract papillomavirus. Much remains to be known on human papilloma-viruses and further studies may lead to the characterization of additional types of HPVs, especially in genital condylomata acuminata and laryngeal papillomas whose malignant conversion, although rare, may be observed. Progress in this field has been and remains hampered by the lack of cell culture systems allowing replication of these highly host and tissue specific viruses, and by the widely variable virus content of the different human lesions known to be associated with a papillomavirus. Further studies are warranted by the possible role of these widespread and epitheliotropic viruses in the origin of some carcinomas in man.

Cell Transformation, Neoplastic

Chromatin-like structures obtained after alkaline disruption of bovine and human papillomaviruses.

Four low-molecular-weight polypeptides migrating like H2a, H2b, H3, and H4 calf liver histones were detected by sodium dodecyl sulfate-acrylamide gel electrophoresis of highly purified preparations of bovine papillomavirus (BPV) and human papillomavirus (HPV). Complexes of these polypeptides and viral DNA were isolated by agarose-gel filtration of the alkaline disruption products of both viruses. When observed under the electron microscope, these complexes appeared as circular structures composed of nucleosomes with a diameter of about 8.0 nm interconnected by a naked DNA filament. The maximal frequency of nucleosomes per molecule was 30 for both viruses, corresponding to a condensation ratio of the viral DNA of 2.5.

Bovine papillomavirus 1