Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0023418 (leukemia)
93,477 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

We report the development of extrathymic lymphoblastic lymphomas in RadLV-inoculated congenitally athymic nude mice. Thus, a leukemogenic virus which appears to require the presence of a thymus for its replication in normothymic mice can infect and transform target cells in the absence of this organ in the athymic host. The cells of one of these lymphomas have been established in vitro as a permanent cell line, BALB/Nu1. This cell line as well as a lymphoma induced in NIH/Swiss nude mice exhibit several T-cell markers, including terminal deoxynucleotidyl transferase activity, Thy-1.2, and Ly-2.2, but not Ly-1.2 nor TL. Ig determinants were not detected. The characteristics of the tumor cells support the view that cells with T-cell markers may normally exist in nude mice and undergo neoplastic transformation and clonal expansion after infection with a leukemogenic virus. The alternative possibility that virus-induced differentiation of prothymocytes may lead to the expression of Thy-1.2 and Ly-2.2 antigens is also considered. BALB/Nu1 cells release large numbers of type C viral particles. The virus, designated radiation leukemia virus (RadLV)/Nu1, has RTase activity and the protein profile characteristic of murine leukemia virus (MuLV). In radioimmunoassays, it cross-reacts completely with RadLV/VL3, a virus obtained from RadLV-induced C57BL/Ka thymic lymphoma cells in culture, and slightly with a xenotropic virus (BALB:virus-2) and with AKR MuLV. On inoculation into C57BL/Ka mice it has thymotropic and leukemogenic activity. In vitro it is B-tropic, poorly fibrotropic, and has limited xenotropic activity. Thus, RadLV/Nu1 appears to be biologically and serologically similar or identical to its parent virus, RadLV.
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PMID:T-cell lymphoma induction by radiation leukemia virus in athymic nude mice. 21 7

Interferon treatment appears to induce a number of changes in the plasma membrane of uninfected cells. Interferon treatment altered the surface exposure of gangliosides of both Ly and KB cell membranes. The differences were found in the amount and pattern of incorporation of tritium after galactose oxidase treatment. In AKR,C- (AKR-2B) mouse cells, not only was there an apparent increase in the number of intramembranous particles in response to treatment with interferon but also the kinetics of the increase followed that of the establishment of the antiviral activity. The buoyant density of plasma membrane was also found to be significantly increased in interferon-treated cells. Moloney murine leukemia virus produced in interferon-treated mouse thymus and bone marrow cells had a high particle to infectivity ration. This virus contained a prominent glycoprotein with a molecular weight of about 85,000. This large glycoprotein was only a very minor component of Moloney leukemia virus produced in control TB cells and might be an uncleaved precursor to gp 69-71.
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PMID:Membrane alterations following interferon treatment. 21 15

A complementary DNA (cDNA) probe to mouse mammary tumor virus (MMTV) RNA was synthesized using calf thymus DNA oligonucleotides as a random primer. This probe was then used to study the expression of MMTV RNA in cell lines from BALB/c tumors induced in vivo either spontaneously or in response to viral, chemical, or hormonal stimuli. The cDNA had a length of approximately 400 to 500 nucleotides and specifically hybridized to MMTV RNA and BALB/c lactating mammary gland RNA, but not to Moloney leukemia virus RNA. Calf thymus DNA-primed cDNA could protect 50% of iodinated MMTV RNA from S1 nuclease digestion at cDNA-RNA ratios of 1:1 and 90% of labeled viral RNA at ratios of 10:1. Thermal denaturation of MMTV RNA-cDNA hybrids yielded a T(m) of 88.5 degrees C, indicative of a well-base-paired duplex. Screening of mouse mammary tumor cells for MMTV sequences revealed that three out of five lines of BALB/c origin had undetectable levels of viral RNA (<three molecules per cell) by RNA excess hybridization. Two of the three "virus-negative" cell lines were derived from tumors induced by the chemical carcinogen 7,12-dimethylbenz(alpha)anthracene, whereas the third tumor occurred spontaneously. Two lines from tumors induced by either viral (mammary tumor virus) or hormonal (17-beta-estradiol) stimulus contained between three and nine molecules of MMTV RNA per cell by both RNA excess and cDNA excess hybridization. Clonal derivatives of these tumor lines had levels of viral RNA comparable to those of their parental lines. Therefore, it appears that the presence of detectable MMTV RNA sequences is not a necessary requirement for the maintenance of all murine mammary gland neoplasias.
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PMID:Detection of mouse mammary tumor virus RNA in BALB/c tumor cell lines of nonviral etiologies. 21 78

Normal mouse sera were tested for cytotoxic antibody to surface antigens of cultured monolayer cells infected with AKR-derived ecotropic MuLV, xentropic MuLV, or dualtropic MCF 247 MuLV. Antibody to ecotropic MuLV-infected cells was found in a proportion of C57BL/6, C3Hf/Bi, AKR-Fv-1b, and (C3Hf/Bi X AKR)F1 mice, but not AKR or (AKR X C3Hf/Bi)F1 mice. Antibody to xenotropic MuLV-infected cells was virtually restricted to C57BL/6 mice. Antibody to MCF 247-infected cells was found in all strains tested, including AKR mice. Absorption analysis of (C3Hf/Bi x akr)f1 and AKR-Fv-1b sera with selective reactivity for MCF 247-infected cells showed that these sera recognize distinctive antigens on MCF 247-infected cells that are not present on ecotropic or xenotropic MuLV-infected cells. The transplantable AKR spontaneous leukemia AKSL2 was found to be uniquely sensitive to the cytotoxic action of naturally occurring antibody to MCF 247-related antigens and absorption tests with AKSL2 as the target cell and sera from a single AKR-Fv-1b mouse have permitted the definition of a new MuLV-related cell surface antigen, which has been designated G(AKSL2). Thymocytes from young mice of high leukemia-incidence strains (AKR, C58, and PL) express G(AKSL2), whereas thymocytes from 12 other strains do not. In AKR mice, the antigen is expressed in higher amounts on cells from thymus and bone marrow than on spleen cells. All AKR spontaneous leukemias tested express G(AKSL2), as did three MuLV-induced leukemias arising in G(AKSL2)- strains. Five X-ray-induced leukemias of G(AKSL2)- strains were G(AKSL2)-, as were MuLV+ and MuLV- chemically induced sarcomas. In the limited survey conducted to date, natural antibody to G(AKSL2) has been restricted to strains expressing G(AKSL2) in their normal tissues: AKR, AKR congenic mice AKR-Fv-1b and AKR hybrid mice (C3Hf/Bi x akr)f1 and (C57BL/6 X AKR)F1. In vitro G(AKSL2) induction tests involving MuLV infection of cultured monolayer cells showed that 8 of 12 newly isolated dualtropic MuLV shared the property of G(AKSL2) induction with the prototype MCF MuLV, MCF 247. Of the 12 ecotropic MuLV tested, only the N-tropic MuLV isolated from a leukemia originally induced by Passage A Gross virus induced G(AKSL2). The xenotropic and amphotropic MuLV isolates tested lacked G(AKSL2) inducing activity. Recognition of the g(aksl2) system provides a way to trace the origin and natural history of a class of dualtropic MCF MuLV in the mouse and to determine whether natural antibody to G(AKSL2) plays a role in AKR leukemogenesis.
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PMID:G(AKSL2): a new cell surface antigen of the mouse related to the dualtropic mink cell focus-inducing class of murine leukemia virus detected by naturally occurring antibody. 21 64

Resistance to neoplasia caused by radiation-induced leukemia virus (RadLV) is mediated by gene(s) in the H-2D region of the major histocompatibility complex. The previous observation that rapid increases in cellular synthesis and cell-surface expression of H-2 antigens are detectable immediately after virus inoculation has suggested that altered expression of H-2 antigens may play a significant role in the mechanism(s) of host defense to virus infection. This concept is supported by the following observations. First, cell-mediated immunity against RadLV transformed or infected cells can be detected with ease when H-2-positive target cells are used in the cell-mediated lympholysis (CML) assay. (Although RadLV transformed cells obtained from overtly leukemic animals and maintained in tissue culture are H-2 negative, these cells can regain their H-2 phenotype by in vivo passage in normal animals. The H-2-negative cells are poor targets in a CML assay.) Second, resistant mice develop greater numbers of effectors when infected with RadLV than do susceptible mice. Third, injection of normal (uninfected) thymocytes into syngeneic recipients of resistant or susceptible H-2 type does not stimulate a CML response. However, injection of RadLV infected thymocytes from resistant mice produces a vigorous CMI response, and such thymocytes elicit the strongest response at a time when both H-2 and viral antigen expression is elevated. By contrast, injection of infected thymocytes from susceptible mice, which express viral antigens, but low levels of H-2 antigens, does not stimulate a CML reaction. These findings may explain the easier induction of leukemia found by many investigators when virus is inoculated into neonatal mice and the preferential thymus tropism of some oncogenic type-C RNA virus. Cells expressing very low levels of H-2, such as thymocytes, may serve as permissive targets for virus infection because they lack an important component (H-2 antigens) of the dual or altered recognition signal required to trigger a defensive host immune response.
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PMID:A role for elevated H-2 antigen expression in resistance to neoplasia caused by radiation-induced leukemia virus. Enhancement of effective tumor surveillance by killer lymphocytes. 21 30

A simple technique is presented for the identification of particular cell membrane antigens. The method employs labeled membrane antigens that are isolated immunospecifically and subjected to limited trypsin digestion followed by polyacrylamide gel electrophoresis in detergent. A large "core" peptide is produced by proteolysis of murine thymus-leukemia antigens (TLA) and from antigens of the major histocompatibility complex (MHC). The tryptic cores from H-2K and H-2D are regularly distinguishable from the thymus-leukemia antigens (TLA) by gel electrophoresis in one dimension. This chemical distinction is particularly important in the analysis of antigen mixtures isolated with antisera specific for beta 2 microglobulin. These techniques have been used to identify thymus-restricted beta 2 microglobulin-associated antigens on cell membranes from mouse, man, guinea pig, and monkey. In appropriate inbred mouse strains, these are the TLA and it is proposed that in the three other species examined they may be analogues, although not necessarily homologues, of TLA. The broad species distribution of these thymus-restricted cell membrane antigens suggests that they are involved in the differentiation of thymus-dependent lymphocytes (T cells).
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PMID:Limited trypsin cleavage distinguishes MHC and thymus-leukemia antigens. 22 40

A specific marker for an immature population of thymus cells in the rat was shown by the rosette formation between thymus cells and guinea pig erythrocytes. This method was used to classify murine leukemia virus-induced rat lymphomas. Eight of nine Gross virus-induced rat lymphoma lines, which originated in the thymus, formed rosettes; whereas Friend, Rauscher, or Moloney virus-induced rat lymphoma lines, which originated in either the thymus, spleen, or mesenteric lymph nodes, did not form rosettes. The percentage of the total cells which formed rosettes in the Gross lymphoma lines decreased with in vivo passages. If the tumor cells were exposed to trypsin treatment, then the tumor cells would form rosettes. Lymphoma lines which lacked rosette-forming cells did not show rosette formation after trypsin treatment. An immunofluorescence test showed that none of the lymphoma lines induced by Gross, Friend, Rauscher, or Moloney viruses carried the surface immunoglobulin characteristic of B-cells. These results suggest that Gross lymphomas may be derived from the thymic cortex and that Friend, Rauscher, or Moloney lymphomas may be derived from either mature thymus cells (non-rosette-forming cells) or from a subpopulation of the B-cell series which does not have the surface immunoglobulin G receptor.
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PMID:A thymus cell marker in murine leukemia virus-induced lymphomas of rats. 22 24

NZB mice X-irradiated with a single dose of 630 R when they were 1-month old developed a high incidence of histologically defined lymphocytic leukaemia 8--25 weeks later. We have screened for murine leukaemia viruses (MuLV) in the lymphoid tissues of 8 of these leukaemic mice, and in 8 "preleukaemic", apparently healthy NZBs killed 1 month post irradiation. Xenotropic, but not ecotropic or recombinant MuLV, was detected by in vitro co-cultivation of bone marrow, spleen and thymus with selectively permissive cell lines, followed by the immunofluorescence test for MuLV gs antigen, and the XC test. Our results are not consistent, therefore, with the concept that the factor causing the leukaemias was an oncogenic virus activated by X-irradiation.
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PMID:Absence of ecotropic or recombinant murine leukaemia virus in preleukaemic and leukaemic X-irradiated NZB mice. 22 88

The relative contribution of thymus-derived lymphocytes (T-cells) and of macrophages to resistance to primary infection with herpes simplex virus type 1 (HSV-1) was studied in C58 mice. Resistance was dependent on macrophage competence, but was relatively independent of T-lymphocyte competence. Although aging mice became progressively more deficient in functional T-cells, as demonstrated by a decreasing resistance to transplanted line Ib leukemia and by declining responses to T-cell nitogens (concanavalin A and phytohemagglutinin), their resistance to HSV-1 increased with increasing age. Moreover, in mice that were made selectively deficient in T-cells by the combination of adult thymectomy and treatment with anti-thymocyte serum, resistance to HSV-1 did not correlate spleen and mesenteric lymph nodes. However, selective reduction of macrophages by intraperitoneal injection of silica resulted in enhanced susceptibility to HSV-1. Furthermore, in vitro suppression of HSV-1 plaque formation in mouse embryo fibroblast cells was obtained by cocultivation of infected fibroblast monolayers with peritoneal macrophages, but not with splenic lymphocytes, from adult mice. Macrophages from weanling mice failed to suppress the development of plaques, indicating that the increase in resistance to HSV-1 with age is a result of increased macrophage competence.
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PMID:Resistance of C58 mice to primary systemic herpes simplex virus infection: macrophage dependence and T-cell independence. 23 92

Xeroderma pigmentosum (XP), Fanconi anaemia (FA), ataxia telangiectasia (AT) and Bloom disease (BS) are four rare autosomal recessive disorders in which there is defective DNA repair and/or chromosome instability and proneness to malignancy. Between 80 and 90% of patients with XP have a defect, demonstrable at cell level, of excision of DNA lesions induced by ultraviolet rays, while the remainder have a cellular error of post-replication repair. XP cells are also deficient in repairing DNA damage caused by a variety of chemical mutagens. There are at least five different complementation groups of the first, or classical, type of XP (A to D, etc.) Apparently group C patients, as well as those with defective post-replication repair, do not show the progressive neurological illness found in a proportion of the other patients. AT is heterogeneous clinically and genetically. Clinically it presents with a progressive neurological illness, progressive telangiectases and a developmental disorder of the thymus. AT is characterized by sensitivity to X-rays and AT cells are unable to repair gamma-ray-induced damage to bases in the DNA. It appears that in many cases of the disorder a chromosomally marked cellular clone is found. In BS the main defect, which results in growth retardation, sun-induced lesions of the face and susceptibility to infection, appears to be a slow DNA chain maturation during DNA synthesis. An increase of sister chromatid exchanges is characteristically seen in the chromosomes of cultured BS cells. In FA, in which there is progressive pancytopenia with eventual bone marrow exhaustion and a tendency to haemorrhage and infection, the cellular defect seems to consist of faulty removal of repair of cross-links in the DNA. In this condition, as in BS and AT, various structural chromosome changes are detected in cultured cells. Patients with XP develop skin cancers in early life and often maligant melanomas. In the other three disorders, in which an immune deficiency is often present, leukaemia and related proliferative disorders are a frequent cause of death while other malignancies also occur. There is some evidence that points to an increased risk of malignancy in heterozygotes who carry the FA and AT genes.
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PMID:DNA repair defects and chromosome instability disorders. 25 77


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