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Biomedical subjects

L Gissmann

Publications and source records attributed to L Gissmann.

At least 55 records · Page 3Linked to original sources

Antibodies to human papillomavirus type 11 virus-like particles in sera of patients with genital warts and in control groups.

We analysed by ELISA a total of 478 human sera for the presence of antibodies to HPV-11 virus-like particles. The sera were obtained from patients with current genital warts (group CO), from males attending the hospital for fertility disorders (group MA), from blood donors (group BD) and from patients hospitalized for reasons unrelated to HPV infections (group HO). Antibody prevalence was higher in male patients of group CO (23.0%) as compared to males of groups MA (3.2%; P < 0.0001), HO (5.3%; P = 0.01) and BD (16.7%; NS). In addition, there was a significant difference in antibody titre between the males of group CO compared to group MA. Within the whole sample the absorbance of sera from females was higher than in specimens from males (P < 0.0001). A small subset of the sera was also tested by radioimmunoprecipitation assay (RIPA). There was good agreement between the data obtained by ELISA and RIPA.

Adolescent↗

Immunologic responses to human papillomavirus infection.

The immune mechanisms following papillomavirus infections are barely characterized. However, the association of serum antibodies to HPV proteins with HPV-related diseases is now well-established. Antibodies to some early viral proteins but also to virus capsids (as measured by using VLPs) are found in a significant proportion of patients with benign and malignant HPV-related diseases. A small number of patients, however, are devoid of detectable antibodies. It is not clear whether the missing immune response is of any biologic significance for the patient or merely reflects differences in antigen presentation during the course of infection. Clearly, the relatively low sensitivity of serologic assays renders them unsuitable for diagnostic purposes. However, certain combinations of assays may reach a higher predictive value, and hence a particular disease may be diagnosed by a pattern of positive (and negative?) reactions. The humoral immune response in patients with subclinical infections is less well characterized, but such studies are currently being performed in different laboratories.

Antibody Formation↗

Early phase in the infection of cultured cells with papillomavirus virions.

The fate of full bovine papillomavirus (BPV) virions and virus-like particles after binding to C127 or CV-1 cells was studied by electron microscopy and indirect immunofluorescence. After incubation at 4 degrees for 1 hr, BPV virions were found to be bound to the plasma membrane, and most viruses were absorbed by the cells after 30 min incubation at 37 degrees. Ninety minutes after the virions had been bound to the plasma membrane, the uptake of the virions was completed and most of the antigen was found to be localized in the nucleus. The viruses were transported in phagosomes and the uptake and transportation could be inhibited by cytochalasin B and taxol, suggesting the possible involvement of microfilaments and microtubules in the virus particle uptake and transportation. The capsid proteins could be detected for about 14 hr, until degradation and deposit of the viral antigen in the Golgi complexes. Although binding to the plasma membrane and uptake of virions into large cytoplasmic vesicles could be monitored by electron microscopy, no complete virions were observed in the nucleus of infected cells despite a very strong nuclear fluorescent staining for both L1 and L2 proteins. This may indicate that disintegration of the virions occurs in the cytoplasm and the L1/L2 proteins migrate to the nucleus via their nuclear localization signals.

Animals↗

Sequences required for the nuclear targeting and accumulation of human papillomavirus type 6B L2 protein.

The L2 protein of the human papillomaviruses is a minor structural protein and is not necessary for the major L1 protein to assemble into capsids. However L2 protein binds DNA and enhances the efficiency of HPV capsid assembly, suggesting an important role in the production of infectious papillomaviruses. L2 accumulates rapidly in the nucleus after synthesis in the cytoplasm. To identify L2 sequences responsible for nuclear targeting and accumulation, full-length HPV6bL2 protein and L2 proteins containing sequence deletions were expressed in CV-1 cells, using recombinant vaccinia viruses. beta gal protein fused to C-terminal and N-terminal L2 sequences were localized in the nucleus and demonstrated that both the C-terminal putative nuclear localization signal (NLS) and N-terminal DNA binding sequences of the L2 protein, which are rich in arginine and lysine, are functional in targeting proteins into the nucleus. L2 mutants lacking amino acids (aa 286-306) do not accumulate in nucleus even when the C-terminal NLS and N-terminal DNA binding sequences are intact. Accumulation in the nucleus of L2 protein lacking aa 286-306 could be also achieved by increasing the L2 protein size via insertion of a portion of L1 protein. Amino acid sequence alignment of L2 proteins from sequenced papillomaviruses showed that sequences in this region are relatively conserved. Our results indicate that in the L2 protein, the nuclear targeting and accumulation are controlled by two different sequences and the rapid nuclear translocation and accumulation may play an important role in papillomavirus life cycle.

Amino Acid Sequence↗

Papillomavirus capsid binding and uptake by cells from different tissues and species.

The inability of papillomaviruses (PV) to replicate in tissue culture cells has hampered the study of the PV life cycle. We investigated virus-cell interactions by the following two methods: (i) using purified bovine PV virions or human PV type 11 (HPV type 11) virus-like particles (VLP) to test the binding to eukaryotic cells and (ii) using different VLP-reporter plasmid complexes of HPV6b, HPV11 L1 or HPV11 L1/L2, and HPV16 L1 or HPV16 L1/L2 to study uptake of particles into different cell lines. Our studies showed that PV capsids bind to a broad range of cells in culture in a dose-dependent manner. Binding of PV capsids to cells can be blocked by pretreating the cells with the protease trypsin. Penetration of PV into cells was monitored by using complexes in which the purified PV capsids were physically linked to DNA containing the gene for beta-galactosidase driven by the human cytomegalovirus promoter. Expression of beta-galactosidase occurred in < 1% of the cells, and the efficiency of PV receptor-mediated gene delivery was greatly enhanced (up to 10 to 20% positive cells) by the use of a replication-defective adenovirus which promotes endosomal lysis. The data generated by this approach further confirmed the results obtained from the binding assays, showing that PV enter a wide range of cells and that these cells have all functions required for the uptake of PV. Binding and uptake of PV particles can be blocked by PV-specific antisera, and different PV particles compete for particle uptake. Our results suggest that the PV receptor is a conserved cell surface molecule(s) used by different PV and that the tropism of infection by different PV is controlled by events downstream of the initial binding and uptake.

Animals↗

Targeted expression of the E6 and E7 oncogenes of human papillomavirus type 16 in the epidermis of transgenic mice elicits generalized epidermal hyperplasia involving autocrine factors.

The E6 and E7 early genes of human papillomavirus type 16 have been shown in vitro to play a central role in the transforming capability of this virus. To explore their effects on differentiating epithelial cells in vivo, we used a bovine cytokeratin 10 (K10) promoter to target the expression of E6 and E7 to the suprabasal layers of the epidermis of transgenic mice. In two different lines of mice efficiently expressing the transgene, animals displayed generalized epidermal hyperplasia, hyperkeratosis and parakeratosis in the skin and the forestomach, both known to be sites of K10 expression. Northern (RNA) blot analysis revealed high levels of E6 and E7 transcripts, and in situ hybridizations localized these transcripts to the suprabasal strata of epidermis. In vivo labeling of proliferating cells showed two distinct effects of E6 and E7 expression in the epidermis: (i) an increase in the number of growing cells in the undifferentiated basal layer and (ii) abnormal proliferation of differentiated cells in the suprabasal strata. The expression of c-myc in the skin of transgenics was higher than that in control animals. The induction of c-myc transcription by topical application of tetradecanoyl phorbol acetate was prevented by simultaneous treatment with transforming growth factor beta 1 in nontransgenic skin but not in transgenic skin. In addition, transforming growth factor alpha was found to be overexpressed in the suprabasal layers of the transgenic epidermis. These findings suggest that autocrine mechanisms are involved in the development and maintenance of epidermal hyperplasia. Animals of both lines developed papillomas in skin sites exposed to mechanical irritation and wounding, suggesting that secondary events are necessary for progression to neoplasia. Collectively, these results provide new insights into the tumor promoter activities of human papillomavirus type 16 in epithelial cells in vivo.

Animals↗

Relation between skin cancer, humoral responses to human papillomaviruses, and HLA class II molecules in renal transplant recipients.

Human papillomaviruses (HPV), especially the epidermodysplasia verruciformis (EV)-associated HPV 5, 8, 14, 17, 20, and 47, are thought to play a role in the pathogenesis of some skin cancers in recipients of renal allografts. MHC class I and class II genes are involved in the cellular immune response to viral and tumor Ag. Little is known about humoral responses to HPV in recipients with and without skin cancer. We investigated the prevalence of antibodies to the early (E) protein E7 and the major capsid late (L) protein L1 of HPV 8. In addition, we studied the association of HLA class II molecules with these antibody responses. The E7 and L1 open reading frames of HPV 8 were bacterially expressed as beta-galactosidase fusion proteins, which were purified by preparative gel electrophoresis. Serum samples from 36 renal transplant recipients with and 91 recipients without skin cancer were screened for the presence of IgG and IgM antibodies to HPV 8 E7 and L1, by Western blot analysis. The detection of anti-HPV 8 L1 antibodies represents the immune response to HPV 8 and possibly other EV-associated HPV, because cross-reactivity between the representatives of this HPV subgenus can occur. The antibody responses to HLA Ag were used as controls. Recipients who had IgM antibodies but no IgG antibodies to L1 of HPV 8 (patients with no apparent class switch from IgM to IgG) had skin cancer in 50% of cases, whereas recipients who produced IgG antibodies (patients with an apparently good humoral response to L1 of HPV 8) had skin cancer in only 18% of cases. The estimated relative risk of skin cancer in recipients with no class switch, compared with the risk in those with a good humoral response, was 4.5 (95% confidence interval, 1.1 to 18.1). We found no association between the antibody response to HLA Ag and the occurrence of skin cancer. A strong linkage between the absent class switch of antibody production in response to L1 of HPV 8 and HLA-DR7 was observed (relative risk, 26.2). Renal transplant recipients who have no apparent class switch from IgM to IgG production in response to Ag encoded by L1 of HPV 8 or possibly other EV-associated HPV are at an increased risk of skin cancer. The association with HLA-DR7 indicates a genetic control of skin cancer development or regression, involving genes in the class II region of the MHC.

Amino Acid Sequence↗

Major histocompatibility complex and human papillomavirus type 16 E7 expression in high-grade vulvar lesions.

To determine whether expression of the human papillomavirus (HPV) type 16 E7 open reading frame influences expression of major histocompatibility complex (MHC) antigens on the surface of squamous epithelial cells, serial frozen sections from seven HPV type 16-positive, high-grade vulvar intraepithelial neoplasia (VIN 2-3) lesions were tested for viral transcription by RNA-RNA in situ hybridization, for MHC expression by immunohistochemical staining with antibodies to MHC class I and II molecules, and for keratinocyte differentiation by immunohistochemical staining with anti-filaggrin and cytokeratin 10 antibodies. Despite the histologic appearance of high-grade VIN lesions, expression patterns of cytokeratin 10 and filaggrin suggested a certain degree of keratinocyte differentiation in all specimens. These differentiation markers were especially prominent in parakeratotic and hyperkeratotic superficial areas, which did not express MHC antigens or contain E7 mRNA. Expression of MHC class I molecules within dysplastic tissues was greater than within HPV type 16-negative, normal vulvar epithelium from the same patients. In five of the VIN 2-3 specimens anti-MHC class I antibodies reacted more strongly with cells of the basal and suprabasal layers than with cells of the epithelial surface. In one lesion basal cells stained less intensively than surface cells, whereas in another specimen all epithelial layers were equally MHC class I positive. Staining with anti-MHC class II antibodies was generally restricted to isolated foci, representing invading lymphocytes, tissue macrophages, and Langerhans cells. In two lesions, however, there was heterogeneous keratinocyte expression of MHC class II proteins, perhaps due to inflammation. Major histocompatibility complex antigen detection was independent of the presence or distribution pattern of E7-specific transcripts. Hence, a correlation between MHC and E7 expression appears unlikely in warty VIN lesions.

Adult↗

Cell-type-specific activity of the human papillomavirus type 18 upstream regulatory region in transgenic mice and its modulation by tetradecanoyl phorbol acetate and glucocorticoids.

The upstream regulatory region (URR) of human papillomavirus type 18 (HPV-18) harbors transcriptional promoter and enhancer elements which are thought to determine the cell-type specificity of the virus. In order to study the regulation of HPV-18 expression in vivo, we constructed transgenic mice carrying the bacterial lacZ gene under the control of the HPV-18 URR. Analysis of beta-galactosidase activity by histochemical staining of tissue sections of four independent transgenic mice showed that the viral promoter was specifically active in epithelial cells within a variety of organs (e.g., tongue, ovary, uterus, testis, and small intestine). Very strong staining was observed in newborn transgenic mice in contrast to a weak activity found during fetal life. Determination of beta-galactosidase activity in crude extracts from tissues of three lines of transgenic mice proved to be a useful tool for a quantitative analysis of transgene expression. In mice from two different transgenic lines treated with dexamethasone such measurements revealed a biphasic effect of the hormone on the activity of the enzyme in the stratified epithelium of the tongue (transient increase followed by a decrease). Northern (RNA) blot analysis showed similar changes in beta-galactosidase mRNA in that tissue. Treatment with tetradecanoyl phorbol acetate (TPA) led to a twofold increase in both enzymatic activity and mRNA levels. Finally, combined treatments with dexamethasone and TPA showed that both factors interfered with each other in their respective effects on transgene expression, suggesting that a cross-talk mechanism between transcription factors could be involved in the regulation of the HPV-18 URR.

Animals↗

Efficient self-assembly of human papillomavirus type 16 L1 and L1-L2 into virus-like particles.

The L1 genes of two human papillomavirus type 16 (HPV16) isolates derived from condylomata acuminata were used to express the L1 major capsid protein in insect cells via recombinant baculoviruses. Both L1 major capsid proteins self-assembled into virus-like particles (VLP) with high efficiency and could be purified in preparative amounts on density gradients. The yield of VLP was 3 orders of magnitude higher than what has been obtained previously, using L1 derived from the prototype HPV16. DNA sequence comparison identified a single nonconserved amino acid change to be responsible for the inefficient self-assembly of the prototype L1. VLP were also obtained by expressing L1 of HPV6, HPV11, and cottontail rabbit papillomavirus, indicating that L1 from a variety of papillomaviruses has the intrinsic capacity to self-assemble into VLP. Coexpression of HPV16 L1 plus L2 by using a baculovirus double-expression vector also resulted in efficient self-assembly of VLP, and the average particle yield increased about fourfold in comparison to when L1 only was expressed. Coimmunoprecipitation of L1 and L2 and cosedimentation of the two proteins in a sucrose gradient demonstrated that L2 was incorporated into the particles. The ability to generate preparative amounts of HPV16 L1 and L1-L2 VLP may have implications for the development of a serological assay to detect anti-HPV16 virion immune responses to conformational epitopes and for immunoprophylaxis against HPV16 infection.

Animals↗

A high frequency of human papillomavirus DNA sequences in cervical carcinomas of Indian women as revealed by Southern blot hybridization and polymerase chain reaction.

Ninety-six colposcopically directed biopsies from squamous epithelial carcinoma of the uterine cervix and 22 age-matched normal control biopsy specimens were examined by both Southern blot hybridization and polymerase chain reaction (PCR) for the presence of different human papillomavirus (HPV) DNA types. Cancer of the uterine cervix, which is the most common malignant disease in Indian women, showed a high frequency (98%) of HPV as compared to those reported from other parts of the world. HPV type 16 was found to be the dominant (64%) type while the frequency of HPV type 18 was very low (3%). On individual typing of HPV, no biopsy was found to contain any other known HPV types under stringent conditions of hybridization except a single case of HPV type 11. Only one case of double infection with HPV types 16 and 18 was recorded. Under low stringency conditions of hybridization with a mixed probe of HPV types 16 and 18, 29 additional biopsies were found to be positive. Southern blot hybridization alone detected HPV DNA in 92% of the cases but none in the controls. By PCR, six (6.25%) more cases and four (18.18%) healthy women were found to be positive for HPVs. Analysis of the physical state of HPV 16 indicated integration in about 70% of carcinoma cases while 30% of them were in episomal form. The findings suggest that infection with HPV is an important etiologic factor for the development of cervical cancer, that a number of such tumours may arise without HPV infection, and that integration of the viral DNA into host genome is not always essential for malignant progression.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Molecular cloning, analysis, and chromosomal localization of a mouse genomic sequence related to the human papillomavirus type 18 E5 region.

The E5 open reading frame (ORF) from bovine papillomavirus type 1 (BPV 1) as well as the E5 ORFs from human papillomaviruses (HPV) type 6 and type 16 have been reported to transform immortalized rodent cells. In an analysis of murine and human tumors for the presence of putative papillomavirus-related sequences, we cloned amplified cellular sequences from the mouse cell line Eb that cross-hybridized with the E5 ORF of HPV 18. A 2.1-kb fragment termed HC1 was sequenced. In normal murine cells, it was present as a single-copy genomic sequence located on chromosome 8. A region of 213 nucleotides corresponded to the E5 gene (HC1 E5), based on the best alignments and on the presence of direct and inverted repeats bearing a central sequence motif. These structural elements are also present in the HPV 18 E5 ORF. HC1 E5 contained an ORF that was transcribed bidirectionally. The transcription in the E5 direction was enhanced in RNA obtained from organs and tumors from carcinogen-treated animals and C127 cells. The polypeptide deduced from the sequence was related to E5 proteins from genital papillomaviruses, to the putative product of the Q300 mouse gene, and to several viral and human growth factors. The data suggest that there may be several cellular counterparts to the viral E5 proteins.

Amino Acid Sequence↗

Antibodies to HPV-16 E6 and E7 proteins as markers for HPV-16-associated invasive cervical cancer.

Transforming proteins E6 and E7 of human papillomaviruses (HPVs) are consistently expressed in HPV-associated cervical cancers. In ELISA with four HPV-16 E6-E7 peptides, patients with HPV-16-associated invasive cervical cancer (group 1) had a greater seroreactivity than all other groups, which included patients with HPV-16-associated cervical intraepithelial neoplasia, invasive cervical cancer patients without HPVs, and unaffected controls. A larger proportion of group 1 sera, as compared to sera of all other groups, was reactive with at least one peptide (49% vs 17-27%), and with two or more peptides (22% vs 0-6%). A clear difference between group 1 and all other groups was also found for high ELISA absorbance values to at least one peptide (22% vs 0-8%). This high seroreactivity of group 1 sera was confirmed by a radioimmunoprecipitation assay with in vitro transcribed and translated HPV-16 E7 protein. Sera from 50% of group 1 but only 3% of controls were reactive in this test. Antibodies to HPV-16 E6 and E7 proteins appear to be virus-specific and disease state-specific markers of HPV-associated cervical cancer.

Amino Acid Sequence↗

Detection of antibodies to the E4 or E7 proteins of human papillomaviruses (HPV) in human sera by western blot analysis: type-specific reaction of anti-HPV 16 antibodies.

To determine the cross-reactivity between early (E) proteins of different human papillomavirus (HPV) types, 346 serum samples were tested with E4 and E7 of HPV 16. Two hundred and sixteen of them were also tested with HPV 1 E4, 21 with HPV 11 E4 and E7, and 109 with HPV 18 E4 and E7. Viral fusion proteins were expressed in Escherichia coli and used as antigens in Western blot experiments. The sera were obtained from patients with HPV-associated genital lesions or cervical cancer, from renal transplant recipients and from patients hospitalized for reasons unrelated to HPV infections (the controls). In contrast to findings relating to HPV 16 E4 specific antibodies, the prevalence of anti-HPV 1 E4 antibodies was not greater in renal transplant recipients than in the controls. In each age group of the control population more sera reacted with HPV 1 E4 than with HPV 16 E4. Sera of patients with HPV-associated cervical diseases and cervical cancer reacted less frequently with HPV 11 E4 or E7 and HPV 18 E4 or E7, respectively, than with the corresponding HPV 16 proteins. Thirty of 117 HPV 16 E4 or E7 positive sera showed reactivity to the corresponding protein of either HPV 1, 11 or 18. As demonstrated by cross-absorption experiments performed with 26 of the double-reacting sera, 24 contained two populations of antibodies reacting with proteins of different HPV types whereas only two contained cross-reacting antibodies. We concluded that in the majority of sera antibodies to the HPV 16 E4 and E7 proteins are type-specific.

Adolescent↗

Papillomaviruses and human oncogenesis.

During the past year, significant advances have been made in understanding the functions of the oncoproteins, E6 and E7, of human papillomaviruses that are associated with malignant genital tumors. In addition, important new information is now available on the responses of both the keratinocyte and of the individual following papillomavirus infection.

Female↗