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Biomedical subjects

G Jay

Publications and source records attributed to G Jay.

At least 73 records · Page 4Linked to original sources

The human T-lymphotropic virus type I tax gene can cooperate with the ras oncogene to induce neoplastic transformation of cells.

Epidemiologic studies have linked infection by the human T-lymphotropic virus type I (HTLV-I) with the development of adult T-cell leukemia. The low penetrance of the virus and the long latency for disease manifestation are factors that obscure the role of HTLV-I infection in oncogenesis. We have used an in vitro transformation assay system to determine directly whether the HTLV-I tax gene has transformation potential. Transfection of the tax gene alone into early-passage rat embryo fibroblasts did not induce morphological alterations. However, cotransfection of tax with the selectable marker plasmid pRSVneo gave rise to G418-resistant colonies that could be established as immortalized cell lines. Cotransfection of tax with the ras oncogene into rat embryo fibroblasts gave rise to foci of transformed cells that were highly tumorigenic in nude mice. These data represent a direct demonstration of the oncogenic potential of the tax gene in nonlymphoid cells and establish HTLV-I as a transforming virus.

Animals↗

Suppression of MHC class I RNA in highly oncogenic cells occurs at the level of transcription initiation.

The oncogenic potential of some transformed cell lines has been shown in animal tumor models to be the direct result of MHC class I mRNA suppression. Rodent cells established with the highly oncogenic human adenovirus type 12 exhibit greatly reduced levels of class I Ag compared with cells derived with the nononcogenic adenovirus type 5. By using seven independently derived adenovirus-transformed cell lines, we have investigated the mechanism responsible for down-regulation of class I RNA expression. In all adenovirus 12-transformed cells examined, class I RNA suppression was the result of a block in transcription initiation. Highly oncogenic cell lines derived from a spontaneous melanoma and a chemically induced sarcoma also showed greatly reduced transcription of class I genes. We conclude that suppression of MHC class I RNA in a variety of highly oncogenic cells results largely from a substantial decrease in transcription initiation.

Adenoviruses, Human↗

Prevention of allogeneic bone marrow graft rejection by H-2 transgene in donor mice.

Rejection of bone marrow grafts in irradiated mice is mediated by natural killer (NK) cells and is controlled by genes linked to the major histocompatibility complex (MHC). It has, however, not been possible to identify the genes or their products. An MHC class I (Dd) transgene introduced in C57BL donors prevented the rejection of their bone marrow by NK cells in irradiated allogeneic and F1 hybrid mice expressing the Dd gene. Conversely, H-2Dd transgenic C57BL recipients acquired the ability to reject bone marrow from C57BL donors but not from H-2Dd transgenic C57BL donors. These results provide formal evidence that NK cells are part of a system capable of rejecting cells because they lack normal genes of the host type, in contrast to T cells, which recognize cells that contain abnormal or novel sequences of non-host type.

Animals↗

Exocrinopathy resembling Sjögren's syndrome in HTLV-1 tax transgenic mice.

Human T-cell leukaemia virus 1 (HTLV-1) is a retrovirus aetiologically associated with adult T-cell leukaemia (ATL), tropical spastic paraparesis (TSP) and possibly multiple sclerosis (MS) in humans. Three founder lines of transgenic mice containing the HTLV-1 tax gene under the control of the viral long terminal repeat (LTR) have previously been shown to develop neurofibromas. Further analysis of these animals has now revealed that they also develop an exocrinopathy involving the salivary and lachrymal glands. This pathology resembles Sjögren's syndrome, a disease of presumed autoimmune aetiology, features of which are sometimes reported in HTLV-1 associated conditions. Mice with an HTLV-1 tax transgene might be a useful model for studying the development of Sjögren-syndrome-like pathology.

Animals↗

Glucocorticoid-enhanced neoplastic transformation of human keratinocytes by human papillomavirus type 16 and an activated ras oncogene.

Human papillomaviruses (HPV) are known etiological agents of benign proliferation of the skin and mucosa (papillomas and warts). They have also been implicated in the development of cervical dysplasia and anogenital carcinoma. The close association of HPV type 16 DNA with the majority of cervical carcinomas suggests the involvement of the virus in this type of cancer. We have developed an in vitro multistep model for human epithelial cell carcinogenesis. Primary human epidermal keratinocytes acquired an indefinite lifespan in response to transfection with HPV 16 DNA but did not undergo malignant conversion. Addition of Kirsten murine sarcoma virus (Ki-MSV), which contains an activated K-ras oncogene, to these cells induced morphological alterations associated with the acquisition of neoplastic properties. The frequency of transformation by Ki-MSV was markedly enhanced by the inclusion of glucocorticoid. At optimal conditions, a 125-fold stimulation was observed. These findings demonstrate the malignant conversion of human primary epithelial cells in culture by the cooperation of HPV type 16 and an activated ras oncogene and support a multistep process for neoplastic conversion. The availability of a human epithelial cell transformation model should facilitate studies of the interaction between HPV and human epithelial cells.

Blotting, Western↗

Intensive induction chemotherapy for poor risk non-seminomatous germ cell tumours.

An increase in initial chemotherapy intensity was evaluated in 29 patients with high risk metastatic non-seminomatous germ cell tumours (NSGCT) of the testis, defined by the presence of multiple large lung metastases, liver, bone or brain metastases, or the combination of large abdominal mass with high serum concentration of the tumour markers alpha-foetoprotein (AFP) or beta subunit of human chorionic gonadotrophin (HCG) (AFP greater than 500 ku/l or HCG greater than 1000 iu/l). Four courses of bleomycin, vincristine and cisplatin (BOP) were given at 7 day intervals, followed by three courses of etoposide, cisplatin with or without bleomycin (BEP or EP) at 21 day intervals for a total of 13 weeks of chemotherapy. Twenty-three (85%) of 27 evaluable patients have remained continuously free from disease progression at a median of 24 months (range 14-38 months) from chemotherapy and the actuarial 2 year freedom from progression rate is 86% (95% CI = 73-99%). Three patients died from non-malignant causes, two of bleomycin pneumonitis and one from complications of cystic fibrosis. Thus cause specific overall survival in the total population of treated patients is 79%. With appropriate limitation of bleomycin dosage, this approach is well tolerated and results compare favourably with less intensive induction schedules based on initial 21-28 day cycles.

Adolescent↗

Transgenic mouse model for human gastric carcinoma.

To understand the pathogenesis that may be induced by human adenovirus type 12 (Ad12), we have generated transgenic mice carrying the Ad12 early region 1 under control of the mouse mammary tumor virus long terminal repeat. Eleven of 11 male founder mice, but only 2 of 12 females, died between 3 to 4 mo of age. Death was associated with presence of tumors at or near the squamocolumnar junction of the stomach. Microscopically, these multifocal tumors appeared to arise from hyperplastic epithelium and showed features consistent with adenocarcinoma or adenosquamous carcinoma. High levels of expression of both the Ad12 E1A and E1B genes were seen in the tumor-bearing stomach. Various levels of expression were also detected in other tissues, although the stomach was the only organ with detectable pathology. These observations suggest an organ-specific action of the Ad12 early region 1 gene products. This transgenic mouse model provides an experimental system for studying the development of human carcinomas at sites of transition from squamous to columnar epithelium.

Adenovirus Early Proteins↗

trans activation of granulocyte-macrophage colony-stimulating factor and the interleukin-2 receptor in transgenic mice carrying the human T-lymphotropic virus type 1 tax gene.

Three lines of transgenic mice carrying the human T-cell lymphotropic virus type 1 tax gene have previously been reported to develop neurofibromas composed of perineural fibroblasts (S. H. Hinrichs, M. Nerenberg, R. K. Reynolds, G. Khoury, and G. Jay, Science 237:1340-1343, 1987; M. Nerenberg, S. H. Hinrichs, R. K. Reynolds, G. Khoury, and G. Jay, Science 237:1324-1329, 1987). Tumors from these mice and tumor cell lines derived from them expressed high levels of tax RNA and protein. They also expressed high levels of the granulocyte-macrophage colony-stimulating factor (GM-CSF) gene as measured by proliferative responses of FD-CP1 target cells using conditioned media from tumor cells and by Northern (RNA) blot analysis of RNA from tumors and tumor cell lines. Although other tissues, such as salivary glands and muscles, in the transgenic mice also expressed high levels of tax, they did not express the gene for GM-CSF. This indicates that tissue-specific cellular factors, in addition to tax, are required for GM-CSF gene expression. Systemic effects of excessive GM-CSF production were demonstrated by infiltration of polymorphonuclear leukocytes into tumor tissues which are not necrotic, by peripheral granulocytosis, and by splenomegaly resulting from myeloid hyperplasia. The interleukin-2 (IL-2) receptor was also found to be expressed by the tumors and tumor cell lines as measured by IL-2-binding and cross-linking studies. This is the first demonstration that the IL-2 receptor can be activated by tax in a nonlymphoid cell type. These in vivo findings are consistent with other reports which have demonstrated in vitro cis-regulatory elements within the 5'-flanking regions of the genes for GM-CSF and the IL-2 receptor which are responsive to trans activation by the tax gene.

Animals↗

Neoplastic transformation of human keratinocytes by polybrene-induced DNA-mediated transfer of an activated oncogene.

Polybrene, in conjunction with dimethyl sulfoxide (DMSO) shock has been shown to increase the frequency of DNA-mediated gene transfer to mammalian cells as compared with the frequency obtained with calcium phosphate transfection. We have successfully adapted this procedure for use with human epidermal keratinocytes. Non-tumorigenic human epidermal epithelial cells immortalized by SV40 tumor antigen were neoplastically transfected, using Polybrene at a concentration of 10 micrograms ml-1, followed by a 4 min shock, with 30% DMSO, with a plasmid carrying the activated H-ras gene from the EJ bladder carcinoma cell line. The transfected cells showed morphological alterations and induced carcinomas when transplanted into nude mice. They contained integrated copies of the transfected H-ras gene and expressed high levels of the p21 protein. Polybrene-induced DNA transfection, therefore, offers the opportunity to transfer genes effectively into human epidermal keratinocytes and should accelerate the study of the interaction between oncogenes and human epithelial cells. This study appears to represent the first neoplastic conversion of nontumorigenic, immortalized human epidermal keratinocytes by an activated human oncogene.

Animals↗

Transgenic approach for the study of pathogenesis induced by human viruses.

An understanding of the pathogenesis of human viral diseases has been hampered by the lack of suitable animal models. However, with the advent in the last decade of transgenic technology, it is now possible to introduce one or more viral genes into the germ-line of animals. Thus, transgenic technology allows for the study of viral gene expression and function in the context of the whole animal. The focus of this review is to define the advantages and disadvantages of the transgenic approach in studies of viral pathogenesis. Studies involving a human DNA tumor virus (JCV) and a human retrovirus (HIV) will be described to illustrate these points.

Animals↗

Natural resistance against lymphoma grafts conveyed by H-2Dd transgene to C57BL mice.

The H-2Dd transgenic strain D8 on C57BL background was more resistant to subcutaneous challenge of RBL-5 lymphoma cells than B6 controls. The direct role of the H-2Dd antigen was investigated by the use of (D8 x B6)F1 crosses and (D8 B6) x B6 backcrosses. The latter showed cosegregation with regard to Dd antigen expression and lymphoma resistance, both of which were inherited in a pattern consistent with control by a single dominant gene. The rejection potential in (D8 x B6)F1 mice appeared as strong as that seen in crosses between B6 and MHC congenic mice (on B10 background) carrying H-2Dd. The lymphoma resistance could be abrogated by treatment with anti-asialo GM1 antiserum or anti-NK 1.1 mAb, indicating a role for NK cells.

Animals↗

Expression of heat-shock and glucose-regulated genes: differential effects of glucose starvation and hypertonicity.

The hsp and grp gene families encode structurally-related proteins which are overexpressed upon physiological stress and which presumably play critical roles in protecting cells against different environmental insults. While the heat-shock proteins induced by hyperthermia have been localized to the nucleus, the glucose-regulated proteins activated by glucose deprivation have been identified in the endoplasmic reticulum. To further our understanding of the regulation of these genes, we have analyzed the expression of individual members of the two gene families under different environmental states. We have observed that, while related members of the same gene family may be coordinately induced under one physiologic state, they may also be differentially activated under a different environmental condition. Furthermore, the induction may be gradual but persistent or abrupt but transient. We have also found that related members of the two gene families may similarly be coordinately or differentially induced in response to different environmental abuses. Our observations are consistent with the belief that the regulation of the expression of stress proteins is complex.

Animals↗

Use of transgenic animals to study human retroviruses.

The purpose of transgenic technology is to introduce a gene into the germline of an animal in order to investigate its proper expression in the appropriate cell types and its effect on cellular functions. This technology has been used to explore a wide variety of genetic and biological issues including stage- and tissue-specific gene expression, development, immunology, oncology, and gene therapy. The intent of this article is to discuss the value of gene transfer technology for the study of mechanisms of viral pathogenesis. We will focus mainly on our experience with two experimental systems involving human T-lymphotropic virus Type 1 (HTLV-1) and human immunodeficiency virus Type 1 (HIV-1).

Animals↗

Multiple endocrine neoplasia induced by the promiscuous expression of a viral oncogene.

There is increasing evidence for the importance of events that govern and influence the interaction between the transformed cell and its host being ultimately responsible for the establishment of the cancer phenotype. To derive an animal model that will allow us to define some of these phenomena at the molecular level, we have chosen to induce the expression of a viral oncogene in all tissue types, with the hope of identifying sites that are more susceptible to malignant transformation. When the gene for simian virus 40 large tumor antigen (T antigen) was placed under the control of a major histocompatibility complex class I gene enhancer, the resulting transgenic mice not only developed choroid plexus papillomas, as seen with wild-type simian virus 40, but also lymphoid hyperplasia and multiple endocrine neoplasias. The development of lymphoid hyperplasia was preceded by an elevated level of expression of T antigen in these tissues at an early age. Surprisingly, the striking thymic hyperplasia has not been observed to progress toward malignancy. The multiple endocrine neoplasias developed later in life and involved the pancreas, pituitary, thyroid, adrenals, and testes. While not preceded by an elevated level of expression of T antigen, once endocrine tumors appeared they quickly progressed toward malignant growth. Although other tissues also exhibited a basal level of expression of the viral oncogene similar to that detected in endocrine tissues, they rarely developed tumors. This transgenic mouse model seems particularly suitable for a molecular understanding of events responsible for certain tissue types being so much more susceptible to neoplastic conversion, with others being so refractory.

Animals↗

Rejection of B16 melanoma induced by expression of a transfected major histocompatibility complex class I gene.

Transfection of a functional major histocompatibility complex class I gene into certain tumor cells, induced by oncogenic viruses or chemical carcinogens, can effectively abrogate their tumorigenic activity. Since experimentally induced tumors possess strong tumor-specific transplantation antigens, expression of cell surface class I antigens may present the tumor cells to appropriate immune effector cells. Most spontaneously arising tumors do not possess tumor-specific transplantation antigens, and their tumorigenicity may not be affected by the expression of a transfected class I gene. We demonstrate that the poorly immunogenic B16-BL6 melanoma can be rendered nontumorigenic in syngeneic mice by the expression of the class I H-2K antigen but not the class II I-A antigen. Furthermore, the poorly tumorigenic, class I-expressing B16-BL6-transfected cells can effectively immunize syngeneic C57BL/6 mice against the highly tumorigenic, class I-deficient B16-BL6 parental cells. Our success in experimentally manipulating the tumorigenicity of a spontaneously derived neoplasm offers hope for a potential modality for the effective treatment of human cancer.

Animals↗