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Biomedical subjects

G Orth

Publications and source records attributed to G Orth.

At least 55 records · Page 3Linked to original sources

A mouse model for studying epidermodysplasia-verruciformis-associated carcinogenesis.

Epidermodysplasia verruciformis (EV) is considered as a model of genetic cancer due to unusual susceptibility to EV-specific human papillomaviruses (HPVs). We established an in vivo experimental system for long-term propagation of EV tissue which should facilitate the study of tumor progression in EV. Skin fragments from benign and early pre-malignant lesions of 6 EV patients were grafted under the kidney capsule of athymic mice. After several months the grafted tissue formed epidermal cysts. These cysts showed typical EV cytopathic effect, in situ hybridization revealed the presence of HPV 5, 8, 9, 12 and 36 DNA, and immunoperoxidase staining detected papillomavirus-group-specific antigens in the permissive cells of the cysts. In some cysts, there were numerous mitoses and downward proliferation of the epidermis with slight dyskeratotic changes. The experimental system described constitutes a model for studies on the role of HPV and other co-factors in human cutaneous carcinogenesis.

Animals↗

Increased tumorigenicity of human keratinocytes harboring human papillomavirus type 16 is associated with resistance to endogenous tumor necrosis factor-alpha-mediated growth limitation.

The aim of this study was to evaluate the relationship between tumorigenicity of cell sublines derived from weakly tumorigenic SKv-e and SKv-l keratinocytes harboring human papillomavirus type 16 (HPV16) and their susceptibility to autocrine growth limitation mediated by tumor necrosis factor-alpha (TNF-alpha). These sublines displayed different in vitro proliferative potential which correlated with tumorigenicity in nu/nu mice. Recombinant TNF-alpha inhibited in vitro growth of weakly tumorigenic parental SKv cell lines while it did not affect proliferation of their respective highly tumorigenic sublines. Resistance to TNF-alpha correlated with both increased in vitro proliferation and tumorigenicity. Anti-TNF-alpha antibodies (Ab) significantly increased in vitro proliferation of weakly tumorigenic parental SKv cells up to the levels of their highly tumorigenic sublines. Growth of highly tumorigenic SKv cells was not affected. On the other hand, proliferation of SKv cells was affected neither by transforming growth factor-beta (TGF-beta) nor by anti-TGF-beta Ab. All SKv cell sublines tested spontaneously released TNF-alpha, as evaluated by a specific radioimmunoassay; however, the levels of the endogenous cytokine were not related to their proliferative potential and tumorigenicity. An increased resistance to the anti-proliferative effect of TNF-alpha may be associated with decreased expression of TNF-alpha receptors (TNF-alpha R) inasmuch as evaluation of 125I-TNF-alpha binding and Northern-blot analysis of TNF-alpha R-specific mRNA showed that highly tumorigenic SKv cell sublines expressed significantly lower numbers of TNF-alpha R than their respective parental cells. These results show that an increased tumorigenicity of HPV16-harboring SKv keratinocytes may be, at least partially, due to escape from autocrine TNF-alpha-mediated growth limitation.

Animals↗

Analysis of the nucleotide sequence variation of the antigen-binding domain of DR alpha and DQ alpha molecules as related to the evolution of papillomavirus-induced warts in rabbits.

We previously found that regression of skin warts induced by the Shope cottontail rabbit papillomavirus in New Zealand White rabbits, as well as malignant conversion of persistent warts, are linked to a restriction fragment length polymorphism of the major histocompatibility complex class II DR alpha and DQ alpha genes. To find out whether this immunogenetic control could be connected with the antigen binding and presentation function of the alpha 1 domain of class II molecules, we have sequenced the exon 2 of the four DR alpha EcoRI and six of the seven DQ alpha PvuII restriction fragment length polymorphism alleles identified, and deduced the encoded amino acid sequences. We found no amino acid polymorphism among DR alpha alleles, indicating that the alpha 1 domain of the DR alpha chain does not condition wart regression or cancer development. In contrast, 27 of the 82 amino acids of the DQ alpha 1 domain were found variable, defining five amino acid sequence alleles. The restriction fragment length polymorphism allele linked to regression and another allele not linked to regression share the same alpha 1 domain, indicating that wart regression is rather conditioned by a closely linked gene. The most divergent DQ alpha 1 allele, however, was that associated with a higher risk of cancer. Alignment of rabbit and human DQ alpha exon 2 alleles disclosed that amino acid charge variations occur at positions assumed to be important for peptide binding in humans. By modulating the affinity for tumor-specific antigenic peptides, such transitions could affect immune surveillance and, thus, condition the risk for progression to carcinoma of papillomavirus-associated lesions.

Alleles↗

NK-cell activity in patients with HPV16-associated anogenital tumors: defective recognition of HPV16-harboring keratinocytes and restricted unresponsiveness to immunostimulatory cytokines.

Peripheral blood mononuclear cells (PBMC) from patients with active HPV16-associated pre-malignant and malignant anogenital lesions display a significantly decreased NK-cell activity against HPV16-harboring SKv keratinocytes (NK/SKv) while their cytotoxicity against erythroleukemic K562 cells (NK/K562) remains unaffected. A similar defect can also be seen in some healthy individuals displaying no symptoms of HPV infection (low responders). Analysis with specific Leu IIa monoclonal antibodies (MAbs) has revealed that all patients as well as weakly responding control subjects had normal numbers of circulating CD16+ NK cells. However, PBMC from patients with active disease and weakly responding controls displayed a significantly decreased ability to bind SKv cells. Binding of K562 was in the normal range. In patients in whom the lesions were successfully removed or regressed spontaneously (patients with no lesions), NK/SKv activity did not differ from that of normally responding healthy subjects and the ability of their PBMC to bind SKv cells was unaffected. To determine whether an abrogated NK/SKv cytotoxicity may be corrected by NK-cell stimulatory cytokines. PBMC were pre-incubated overnight with IL-2 and interferon-alpha. Both cytokines stimulated NK/K562 activity in all tested groups. Significant stimulation of NK/SKv activity was observed in PBMC from normal and weakly responding controls as well as patients with no lesions. No increase could be seen in patients with active disease. Evaluations of NK-cell activity before and after surgical removal or spontaneous regression of the lesions showed normalization of primarily depressed NK/SKv activity. Malignant progression was associated with a significant drop in SKv cell killing. Our results suggest that abrogation of NK-cell activity against HPV16-harboring targets in patients with HPV16-associated anogenital neoplasia is associated with restricted inability to recognize the disease-specific target cells, and may depend on persistence of the lesions.

Anus Neoplasms↗

Cytopathic effect in human papillomavirus type 1-induced inclusion warts: in vitro analysis of the contribution of two forms of the viral E4 protein.

Myrmecia warts induced by human papillomavirus type 1 (HPV1) are characterized by abundant eosinophilic inclusions associated with HPV1 E4 gene products. The major HPV1 E4 proteins are a 17-kilodalton (kDa) E1-E4 fusion protein and a 16-kDa species lacking the five E1 amino acids and a few E4 residues. To study the contribution of E4 proteins to the formation of myrmecia inclusions, we used a previously designed transient expression system in the rabbit VX2-R keratinocyte line. We find that the E1-E4 and an E4 protein without the E1 residues (E4-3200) form eosinophilic inclusions. Ultrastructural and immunoelectron microscopic studies show that the electron-dense, keratohyalin-like myrmecia inclusions are recognized by anti-E4 antibodies. They are associated with tonofilament bundles at their periphery in the cytoplasm or free of filaments in the nucleus. The E1-E4 inclusions formed in vitro are also homogeneously electron dense, and are usually associated with tonofilaments at their periphery in the cytoplasm and free of filaments in the nucleus. The E4-3200 inclusions are exclusively cytoplasmic and heterogeneously electron dense, with a fibrillar structure made of entangled 10-nm filaments. The expression of either protein in VX2-R cells does not result in the collapse of the cytokeratin network, as shown by immunofluorescence double-labeling experiments. This is in contrast to data reported for the HPV16 E1-E4 protein. Our findings indicate that the E1-E4 protein by itself accounts for the formation of myrmecia inclusions, and suggest that the five N-terminal E1 amino acids play a major role in the interaction of E4 proteins with intermediate filaments.

Adenovirus E4 Proteins↗

Childhood condyloma acuminatum: association with genital and cutaneous human papillomaviruses.

We studied 25 children, age 7 months to 12 years 6 months, with anogenital warts, and their parents. In most children the warts were localized in the anal area, in 3 of 18 girls perianally and on the vulva, and in 4 girls exclusively on the vulva. Southern blot hybridization studies disclosed an association of condylomata with human papillomaviruses (HPV) 6 and 11 in 74% and HPV 2 in 17.4% of patients. The clinical features were similar in warts induced by genital and cutaneous HPVs. Even the HPV 2-associated warts in the vulva of two girls were typical of condyloma acuminatum. In all children with HPV 2-induced condylomata, cutaneous common warts coexisted, also induced by HPV 2. However, three mothers had cutaneous warts, and the children's condylomata were associated with HPV 6. Thus, the mere presence of skin warts in family members does not rule out other sources of infection. Sexual abuse was suspected in four girls and two boys, but was not confirmed in any. Nonsexual transmission could occur by persons with the lesions taking care of children. Perinatal transmission also appears to be an important route of infection in small babies. Infection in utero was probable in one girl in whom anal warts appeared in the first week of life and whose mother had cervical condylomata during pregnancy. This study provides further confirmation of possible nonsexual transmission of genital HPVs and the not infrequent association of childhood condylomata with HPV 2.

Anus Neoplasms↗

Sporadic cases of Heck disease in two Polish girls: association with human papillomavirus type 13.

Two sporadic cases of Heck disease in Polish girls were associated with human papillomavirus 13. No other children and nobody from their surroundings had similar lesions. The course of the disease was chronic in both patients. The lesions regressed spontaneously in one girl within several years after some of the papules were excised. The second girl's warts persist after eight years.

Child↗

Genetic heterogeneity of oncogenic human papillomavirus type 5 (HPV5) and phylogeny of HPV5 variants associated with epidermodysplasia verruciformis.

Variants of oncogenic human papillomavirus type 5 (HPV5), specifically associated with epidermodysplasia verruciformis, were recognized on the basis of the genetic heterogeneity of the E6 open reading frame (ORF). To further evaluate the genetic heterogeneity of HPV5, we sequenced the long control region (LCR), the E7 ORF, and the terminal parts of the E2 ORF of five previously characterized HPV5 variants and compared the data with the published HPV5a1 and HPV5b sequences. Alignment of the variants showed 140 (7.6%) variable nucleotides of 1,854 sequenced. Nucleotide substitution rates varied from 3.6% in the E7 ORF to 11% in the E6 ORF. By sequencing the variable region encompassing the LCR 3' part and the E6 ORF of isolates from six additional epidermodysplasia verruciformis patients, we identified three new variants and three already known variants, indicating the stability of HPV5 variants. This stability was further demonstrated by the identity of isolates obtained years later from benign and malignant lesions of three patients. Phylogenetic analysis of the 10 HPV5 variants distributed them into three groups, tentatively defining subtypes a, b, and c. The phylogenetic grouping shows no geographical dependence, a fact that may be related to the host restriction that characterizes HPV5 infections. No differences in the enhancer potential of the LCR or in the transactivating properties of the E2 protein assayed in vitro were observed among HPV5 variants. Whether HPV5 variants possess distinct biological properties in vivo remains to be determined.

Base Sequence↗

[Focal epithelial hyperplasia. An unusual clinical aspect].

We report a case of focal epithelial hyperplasia in a child born in France of Algerian parents. The clinical appearance was unusual in that certain lesions were verrucous and pediculate. A virological study revealed the presence of papillomavirus 32, one of the two types of HPV specifically associated with this entity.

Africa, Northern↗

Autocrine growth limitation of human papillomavirus type 16-harboring keratinocytes by constitutively released tumor necrosis factor-alpha.

TNF-alpha is known to exert antitumor and antiviral effects and to participate in the regulation of the immune response. In our study we demonstrate that human rTNF-alpha specifically blocks growth of SK-v keratinocyte cell line harboring and expressing human papillomavirus type 16 (HPV16) sequences. This inhibitory effect was shown by [3H]TdR incorporation and cell counting. Binding experiments with 125I-TNF-alpha showed that SK-v cells express about 10,000 single class TNF-alpha R per cell with affinity constant of about 0.7 nM. Binding of 125I-TNF-alpha could be inhibited by htr-9 mAb recognizing a 55/60-kDa type I TNF-alpha R but not by utr-1 mAb recognizing 75/80-kDa type II TNF-alpha R or irrelevant mAb specific for HPV16E7 protein. Addition of anti-TNF-alpha antibodies to SK-v cell culture resulted in significant (p < 0.05), dose-dependent stimulation of their proliferation. SK-v cells constitutively expressed TNF-alpha mRNA, and SK-v CM contained TNF-alpha, as demonstrated by Northern blot analysis, a specific ELISA, Western blot analysis, and a bioassay with TNF-alpha-sensitive L-M cells. HPLC gel filtration of SK-v cell CM showed that the factor cytotoxic for L-M cells coeluted with immunoreactive TNF-alpha. These results demonstrate that HPV16-harboring SK-v cells constitutively express and release immunoreactive and biologically active TNF-alpha that in turn may exert an autocrine growth inhibitory effect. This phenomenon could represent one of the self-limiting mechanisms controling growth of HPV-induced neoplasia.

Cell Division↗

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↗

Molecular and biological characterization of cottontail rabbit papillomavirus variant DNA sequences integrated in the VX7 carcinoma.

The transplantable VX7 carcinoma was derived from a tumor induced by a recoverable strain of cottontail rabbit papillomavirus (CRPV) able to replicate in domestic rabbits. Low levels of late viral gene expression have been retained through serial propagation in rabbits. We have cloned and characterized the three major types of CRPV sequences integrated in this tumor, a genome-length 8-kb DNA molecule and two rearranged 9- and 3.8-kb molecules. The VX7 8-kb DNA displays only a few differences in its restriction map, when compared to the wild-type (wt) CRPV DNA. The VX7 9- and 3.8-kb DNAs derive from the VX7 8-kb DNA since they share the same restriction site polymorphism. The VX7 9-kb DNA contains a duplication of the E6 open reading frame. The VX7 3.8-kb DNA results from the deletion of most of the E region and the insertion, between the borders of the deletion, of 174-nucleotide-long segment of the long control region potentially driving the expression of a truncated L2 protein. Both VX7 9- and 3.8-kb species potentially allow the expression of abnormal E6 fusion proteins. Nineteen point mutations were detected in the 3.8-kb DNA, compared to the wt CRPV DNA. None of these molecules were able to induce warts in domestic rabbits, in contrast to wt CRPV DNA. Furthermore, when cloned VX7 DNAs were inoculated together with wt CRPV DNA, none of the VX7 CRPV sequences, as identifiable by their specific restriction enzyme cleavage patterns, could be detected in the resulting warts. This suggests that CRPV sequences integrated in the VX7 carcinoma are no longer able to replicate as episomes, which might be a prerequisite for the production of warts.

Amino Acid Sequence↗

Human papillomaviruses associated with cervical intraepithelial neoplasia. Great diversity and distinct distribution in low- and high-grade lesions.

All together, 30 genital human papillomavirus (HPV) types have been characterized so far. To evaluate the importance of HPV diversity in associated cervical diseases, we analyzed 188 biopsy specimens obtained from patients with a recent diagnosis of cervical HPV infection or intraepithelial neoplasia (CIN). Of these 188 specimens, 116 were classified as low-grade CIN (48 cases), high-grade CIN (53 cases), condylomata acuminata (10 cases), flat condylomas (five cases). Seventy-two specimens were considered nondiagnostic. Using probes specific for 18 genital HPV types, HPV DNA sequences were detected by Southern blot hybridization in 100 lesions and 21 nondiagnostic specimens. When further analyzed by the polymerase chain reaction, eight HPV-negative biopsy specimens, four CIN, and four nondiagnostic specimens were positive. Of the 129 positive biopsy specimens, 92 contained at least one of 18 known HPV types and 37 HPV that have not yet been identified. Nine specimens had more than one type. Thirteen HPV types were identified in CIN. The detection rate of HPV 16 increased from 21% in low-grade CIN to 57% in high-grade CIN. HPV 18 was detected in only 3% of CIN; HPV 31, 33, and 35 were found in 8%. HPV 30, 39, 45, 51, 52, 56, 58, and 61 were detected in 44% of low-grade CIN but in only 8% of high-grade CIN. Unidentified HPV were detected in about 25% of low-grade and high-grade CIN. Fifty-seven CIN positive for at least one HPV type were further analyzed by in situ hybridization. Thirty-five (65%) biopsy specimens were positive, including 21 of 24 low-grade CIN and 14 of 33 high-grade CIN. Ten of the 13 previously identified HPV types were detected. Thus, CIN represents an heterogeneous disease from a virologic viewpoint. This fact could explain their variable clinical evolution.

Adolescent↗

Human papillomavirus (HPV) types specific of epidermodysplasia verruciformis detected in warts induced by HPV3 or HPV3-related types in immunosuppressed patients.

Epidermodysplasia verruciformis (EV) is characterized by an abnormal genetic predisposition to infection with specific types of human papillomavirus (HPV). Specific defects of the cell-mediated immunity and/or of the control of HPV infection in keratinocytes are assumed to be involved in the development of the disease. As a model to test this hypothesis, we have studied the prevalence of EV-specific HPV in skin warts of 56 immunosuppressed patients. All main types of cutaneous HPV (HPV1, 2, 3, 4, 10, and 28) responsible for skin warts in the general population were detected by blot hybridization. EV-specific HPV (HPV5, 20, and 23) were detected in three patients. Four additional patients were found infected with HPV49, first characterized in the course of this study, and found to be related to EV HPV. A most important finding was that HPV5, 20, 23, and 49 were always codetected with HPV3 or the related types HPV10 and 28. None of the specimens showed the typical clinical morphology of EV lesions. In none of these specimens was the specific cytopathic effect of EV recognized; instead that of HPV3 and related types was seen. No evidence for productive EV HPV DNA replication was obtained for the three specimens that could be further analyzed by in situ hybridization. Our data suggest that HPV3 infection favors infection with EV HPV in immunosuppressed patients but that the full expression of EV HPV is usually restricted as in the general population.

Adult↗

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↗

Constitutive release of IL6 by human papillomavirus type 16 (HPV16)-harboring keratinocytes: a mechanism augmenting the NK-cell-mediated lysis of HPV-bearing neoplastic cells.

In the present study we demonstrate that the cultured human keratinocyte cell line (SK-v cells) harboring and expressing integrated human papillomavirus type 16 (HPV16) DNA sequences constitutively releases IL6, which is known as a pleiotropic immunoregulatory cytokine of potential antitumor properties. The presence of IL6 activity in SK-v cell-conditioned media (SK-v CM) was demonstrated by tritiated thymidine incorporation into IL6-dependent B9 murine plasmacytoma cells. The effect on B9 cells was specific since it could be inhibited by anti-IL6 neutralizing antibodies but not by a normal control serum. IL6 did not affect SK-v cell growth; however, it significantly augmented NK cell activity of human peripheral blood lymphocytes against both K562 erytholeukemic and SK-v cells as assessed by 51Cr release assay. SK-v CM displayed NK cell-augmenting activity that copurified with IL6 activity in both size exclusion and anion-exchange HPLC. Furthermore, SK-v cell-derived NK cell stimulatory activity could be neutralized with anti-IL6 antibodies. These results suggest that HPV-harboring neoplastic cells can release IL6 which may indirectly mediate tumor death by augmentation of NK cell activity.

Cytotoxicity, Immunologic↗