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E Stockert

Publications and source records attributed to E Stockert.

At least 73 records · Page 4Linked to original sources

Structural analysis of TL genes of the mouse.

Three Tla region-specific probes have been generated from the BALB/c genomic cosmid clone C6.3. One probe, pTL1, corresponds to 3' sequences of a thymus leukemia (TL)-encoding gene, whereas pTL2 and pTL3 detect noncoding flanking sequences. The TL specificity of pTL1 was demonstrated by studies of RNA from thymocytes of TL+ and TL- mouse strains and from TL+ and TL- leukemias; presence/absence of pTL1+ transcripts correlated with presence/absence of TL antigens detected serologically. Nine Tla haplotypes were defined by restriction fragment polymorphism with pTL1, and the number of TL genes has been estimated to be greater than or equal to 4 in Tlaa, Tlac and Tlae mice, greater than or equal to 3 in Tlad mice, and greater than or equal to 2 in Tlab and Tlaf mice. A TL-encoding gene (C25.1) from the C57BL/6TL+ leukemia ERLD has been cloned and sequenced, and the exon/intron organization of C25.1 has been deduced from the structure of pTL1+ cDNA clones and from the known organization of H-2 genes. The major structural differences between TL and H-2 genes are in exons coding for the cytoplasmic domain.

Alleles↗

A monoclonal antibody that recognizes an Ly-6-linked antigen inhibits the generation of functionally active T cell subsets.

A monoclonal antibody (mAb) generated against the chemically-induced BALB/c Meth A sarcoma, designated HD42, reacts in cytotoxic tests with Meth A as well as with BALB/c peripheral lymph node cells and mitogen-activated spleen cells. The antigen was detected by FACS analysis on BALB/c spleen and lymph node cells, and by absorption assays on all normal lymphoid cells of BALB/c but not B6 mice. The expression of the antigen was not found on normal adult lung fibroblasts, on brain, nor on an extensive panel of tumors of BALB/c and B6 origin. Because the strain distribution of the antigen is reciprocal to that of Ly-6.2 and is not expressed in congenic C3H.Ly-6b mice, we have tentatively defined it as Ly-6.1 and referred to the mAb as alpha-Ly-6.1. The presence of alpha-Ly-6.1 abrogates both the Con A-induced and the IL 2-dependent proliferative response of normal T cells, whereas the response of normal B cells to LPS remains unaffected. alpha-Ly-6.1 is a potent suppressor of the primary in vitro plaque-forming cell (PFC) response to SRBC. Pretreatment of normal splenic T cells with alpha-Ly-6.1 and complement had no effect on the ability of these cells to generate in vitro either T helper cells (TH) or T suppressor cells (TS) to SRBC. However, addition of antibody in the absence of complement during the generation of TH or TS, or posttreatment of these T cell subsets with antibody and complement after in vitro education, completely removed the functional activity of these cell types. Addition of alpha-Ly-6.1 to MLC suppressed the MLR as well as the generation of cytotoxic lymphocytes (CTL), whereas the presence of the antibody during a cell-mediated lympholysis (CML) had no effect. Therefore, it appears that alpha-Ly-6.1 recognizes an antigen that is important for the generation of TH and TS cell subsets.

Animals↗

SMX-1 virus-induced inhibition of ecotropic and recombinant proviral sequence amplification in thymuses of AKR mice.

SMX-1 virus delays the appearance of spontaneous thymomas in AKR mice which have been inoculated as young adults by the intrathymic route. Analyses of high-molecular-weight thymus DNAs from SMX-1 virus-inoculated AKR mice indicated the absence of 3' recombinant proviral-cellular DNA junction fragments generated by EcoRI and PvuII digestion. An average of five recombinant proviral fragments were detected in DNAs from spontaneous thymomas that developed in medium-injected control mice. Preleukemic mice that amplify murine leukemia virus-related antigens on their thymocyte surface contained unintegrated proviruses in their thymus DNAs, and 2.3-kilobase EcoRI and 2.1-kilobase PvuII recombinant DNA fragments were detected.

Animals↗

Detection of a unique antigen on radiation leukemia virus-induced leukemia B6RV2.

Radiation leukemia virus-induced leukemia of a male C57BL/6 mouse, B6RV2, is immunogenic to female BALB/c X C57BL/6 F1 mice. In these mice, B6RV2 tumors regressed after initial growth, and after tumor regression the mice were resistant to repeated inocula of up to 10(8) B6RV2 cells. Serum from these mice reacted with B6RV2 in mixed hemadsorption or protein A assays, and absorption analysis indicated that the antigen was restricted to B6RV2; it could not be detected in normal thymocytes or spleen concanavalin A blasts from different inbred strains, nor in 16 C57BL/6 or BALB/c leukemias. Spleen cells from mice in which the tumor had regressed were cytotoxic to B6RV2 after in vitro stimulation with B6RV2, as shown by 51-chromium release assay. This cytotoxicity was eliminated by pretreatment of the cells with anti-Thy-1.2, anti-Lyt-2.2, anti-Lyt-3.2, and complement, indicating that the effector cells were T-cells. The specificity of T-cell killing of B6RV2 was examined by competitive inhibition assays with unlabeled cells; only B6RV2 inhibited killing, while eight other C57BL/6 leukemias did not inhibit. Thus, the antigen on B6RV2 defined serologically and by cytotoxic T-cells is a unique antigen. However, it was not revealed by antibody-blocking test whether the unique determinant defined serologically was related to that recognized by T-cells; B6RV2 antiserum did not block lytic activity in the absence of added complement, irrespective of whether the target cells were untreated or anti-H-2b-treated B6RV2. H-2Kb antisera, but not H-2Db antisera, blocked lysis. This indicated that the H-2Kb molecule was exclusively involved in recognition of B6RV2 by cytotoxic T-cell.

Animals↗

Polymorphism and diversity in the Tla gene system.

The TL products of mouse strains carrying the Tlaa, Tlad, and Tlae haplotypes were analyzed by comparative peptide mapping. As expected from their known serologic differences, TL antigens from strain A (Tlaa), A.CA strain (Tlad) and P/J strain (Tlae) mice showed structural variation. However, comparable variations were also observed in the TL product derived from strains expressing the serologically indistinguishable Tlaa allele (A, NFS/N, SJL/J, C57BR, and C58) demonstrating additional unexpected polymorphism in the TL system. When compared with the structural diversity of the H-2 K and D gene products, the structural variation of the TL antigens was small. Taken together, the results of our analysis of the TL products suggest that Tla polymorphism is more extensive than previously thought; however, the structural diversity of the products is still low compared with K and D gene products.

Alleles↗

Characterization of interleukin 2-dependent cytotoxic T-cell clones: specificity, cell surface phenotype, and susceptibility to blocking by Lyt antisera.

Cytotoxic T-cells were derived from the peritoneal cavity of a C57BL/6 mouse immunized with BALB/c sarcoma Meth A and from the spleens of BALB/c x C57BL/6 F1 (hereafter called CB6F1) mice immunized with BALB/c leukemia RL male 1. The cells were cultured in interleukin 2 and cloned by limiting dilution, and their specificity was determined by direct tests and competitive inhibition assays. C57BL/6 anti-Meth A effector cells recognized H-2Dd determinants. CB6F1 anti-RL male 1 effector cells recognized a unique cell surface antigen of leukemia RL male 1. The specificity was maintained in long-term culture. The cell surface phenotype of the cloned effector cell lines as determined by absorption analysis was Thy-1.2+, Lyt-1.2+, 2.2+, and 3.2+. Cytotoxicity was blocked at the target cell level by antisera against H-2Dd, but not H-2Dk or H-2b, and at the effector cell level by antisera against Lyt-2.2 and 3.2, but not Lyt-1.2, Ly-5.1 or Thy-1.2.

Animals↗

Structural evidence that the small subunit found associated with the TL antigen is beta 2-microglobulin.

Comparative tryptic peptide mapping and partial amino-terminal primary sequence analysis of the light chain component associated with the TL antigens showed that the small subunit of TL was identical to the beta 2m light chain associated with the H-2K or D product of the same strain. Peptide comparison of the beta 2m from the Tla products of an A strain X-ray induced leukemia RADA1 (Tlaa) and of a C57BL/6 strain X-ray induced leukemia ERLD (Tlab) showed differences to the extent of 25-35% in their peptides. This is consistent with previous results showing beta 2m allelic variations between these mouse strains. The data prove the structural identity of the beta 2m molecules from TL and H-2K, D antigens as well as reveal the strain specific polymorphism of the beta 2m associated with these products.

Alleles↗

Expression on normal lymphocytes of two cell surface antigens, XenCSA and GIX, related to the major glycoproteins (gp70) of murine leukemia viruses.

XenCSA and GIX are two cell surface antigens related to the major envelope glycoproteins (gp70) of murine leukemia viruses. The levels of expression of these gp70 determinants were assessed in 36 recombinant inbred mouse strains and selected backcrosses derived from crosses between C57BL/6 with DBA/2 and C3H/He. These two antigens segregated in backcross mice and showed a different strain distribution pattern among the recombinant inbred mice, demonstrating that XenCSA and GIX are distinct genetic markers for different endogenous gp70 sequences. It was also shown that independent sets of gene regulate the expression of XenCSA and GIX.

Animals↗

A cell surface antigen of the mouse related to xenotropic MuLv defined by naturally occurring antibody and monoclonal antibody. Relation to Gix G(rada1), G(aksl2) systems of MuLV-related antigens.

A new cell surface antigen of the mouse related to xenotropic murine leukemia virus (MuLV) is described. The antigen, designated G(erld), is defined by cytotoxic tests with the B6-x-ray-induced ERLD and naturally occurring antibody. G(erld) is distinct from all previously defined cell surface antigens. Monoclonal antibody with the same specificity has been developed. Inbred mouse strains are classified as G(erld)+ or G(erld)- according to the presence of absence of the antigen on lymphoid cells. G(erld)+ strains differ with regard to quantitative expression of G(erld) on normal thymocytes. The emergence of G(erld)+ tumors in G(erld)- strains indicates the presence of genes coding for the antigen even in strains not normally expressing the antigen. G(erld) has the characteristic of a differentiation antigen in normal mice. In G(erld)+ strains, high levels of the antigen are found on thymocytes with lower levels being detected on cells of spleen, lymph nodes and bone marrow. No G(erld) was detected in brain or kidney or on erythrocytes. The segregation ratios for G(erld) expression on thymocytes in backcross and F2 mice of crosses between G(erld)+ (B6, 129, and B6-Gix+) and G(erld)- (BALB/c) strains suggest that G(erld) expression is controlled by a single locus in B6, by two unlinked loci in 129, and by three unlinked loci in B6-Gix+ mice. Induction of the antigen by MuLV infection of permissive cells in vitro indicates that G(erld) is closely related to xenotropic and dualtropic MuLV; all xenotropic and dualtropic MuLV tested induced the antigen, whereas the majority of ecotropic and the two amphotropic MuLV failed to do so. As dualtropic MuLV are thought to be recombinants between ecotropic and xenotropic MuLV sequences, G(erld) coding by dualtropic MuLV may signify the contribution of the xenotropic part in the recombinational event. Serological and biochemical characterization indicates that G(erld) is related to the gp 70 component of the MuLV envelope. The relation of G(erld) to the previously defined gp 70-related cell surface antigens (Gix, G(rada), and G(aksl2) is discussed, particularly with regard to their characteristics as differentiation antigens, the genetic origin of dualtropic MuLV, and the leukemogenicity of MuLV.

Animals↗

Structural comparisons of TL antigens derived from normal and leukemia cells of Tl+ and TL- strains and relationship to genetically linked H-2 major histocompatibility complex products.

Comparative tryptic peptide analysis was used to probe the structure of the TL products coded for by normally expressed TL alleles (Tlaa and Tlac haplotypes) and the structure of the TL product on ERLD, a TL+ leukemia occurring in a strain that does not normally express TL antigens (Tlab haplotype). In mice that have the Tlaa haplotype, the peptide maps of TL glycoproteins from normal thymocytes and from TL+ leukemias were identical, a finding that is consistent with the indistinguishable serologically defined TL phenotype of these cells. Analysis of the TL product on ERLD leukemia cells (TL phenotype, TL.1,2,4) indicates a single TL glycoprotein species with the TL.4 determinant (restricted to leukemias of Tlab and Tlac haplotypes) coexisting on the same glycoprotein as the Tl.1 determinant (normally expressed by thymocytes of Tlaa haplotype). Comparison of the peptides of the TL product of ERLD and the products of the normally expressed Tlaa and Tlac loci showed a high degree of structural similarity (i.e., 70-80%) of shared peptides. In contrast, the products of the Tlaa, Tlab, and Tlac loci shared relatively few peptides with the products of the K, D, and L loci of the closely linked major histocompatibility complex (15-35%). The TL family, therefore, consists of alleles that are highly homologous. This contrasts with the marked diversity and polymorphism among the alleles of the K, D, and L loci.

Alleles↗

Inhibition of AKR leukemogenesis by SMX-1, a dualtropic murine leukemia virus.

Intrathymic injection of SMX-1, a dualtropic murine leukemia virus (MuLV) originally derived from Moloney murine leukemia virus stocks, protects AKR mice from developing MuLV-accelerated leukemia and spontaneous leukemia. Thymuses of SMX-1-injected mice show no change in weight, morphology, or thymocyte size, and quantitative expression of Thy-1 and Lyt-2 differentiation antigens is identical to control mice. The amplified thymic expression of MuLV-related antigens that occurs spontaneously in 6-month-old preleukemic AKR mice or that can be induced in young AKR mice by leukemogenic AKR dualtropic MuLV is prevented by SMX-1. It appears unlikely that the protective effect of SMX-1 is explicable in terms of cross-immunogenicity with transforming MuLV or transformed cells. As SMX-1 persists for long periods after intrathymic injection and does not alter levels of thymic ecotropic MuLV, SMX-1 may interfere with the generation, spread, or leukemogenicity of dualtropic MuLV that form de novo in AKR thymus during the late preleukemic phase. SMX-1 provides a way to probe the events leading to cell transformation in AKR mice.

AKR murine leukemia virus↗

Association of endogenous retroviruses with radiation-induced leukemias of BALB/c mice.

X-irradiation of BALB/c mice in the second month of life induced a high incidence of generalized lymphatic leukemia of T-cell origin, beginning at 7 months of age. Infectious ecotropic murine leukemia virus (B-tropic predominant over N-tropic) was isolable from all tumor extracts but exhibited a wide titer range among individual leukemias. Detection of infectious xenotropic virus usually required extensive amplification on indicator cells. Dual-tropic (mink cell focus-forming) virus has not been found in the leukemias. Expression of ecotropic virus in tail extracts prepared at 6.5 months of age, although greatly enhanced compared with unirradiated controls, was not found to be prognostic of tumor development in individual mice. We conclude that leukemogenesis does not show a simple dependence on infectious murine leukemia virus expression in these mice.

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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.

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.

AKR murine leukemia virus↗

Autoimmune and lymphoproliferative disease in (B6-GIX+ X 129)F1 mice: relation to naturally occurring antibodies against murine leukemia virus-related cell surface antigens.

G(IX) congeneic mouse strains, C57BL/6-G(IX) (+)(B6-G(IX) (+)) and 129-G(IX) (-), have been derived from the prototype strains, B6(G(IX) (-)) and 129(G(IX) (+)). The hybrids, (B6-G(IX) (+) x 129)F(1) (G(IX) (+)F(1)) and (B6 x 129-G(IX) (-))F(1) (G(IX) (-)F(1)), differ only in regard to genetic loci controlling G(IX) antigen expression. G(IX) (+)F(1) mice spontaneously produce G(IX) antibody and often show signs of autoimmune disease and lymphoproliferative disease. G(IX) (-)F(1) mice and mice of the two parental strains (B6-G(IX) (+) and 129) of G(IX) (+)F(1) do not produce G(IX) antibody and seldom show signs of these diseases. G((ERLD)), and G((RADA1)), antibodies, natural thymocytotoxic autoantibody, and antinuclear antibodies were produced by G(IX) (+)F(1) mice. However, these four antibodies were also found in the other strains. G(IX) (+)F(1) mice develop pronounced diffuse glomerulonephritis similar to that found in systemic lupus erythematosus in man. Incidence studies in which mice were examined according to age rather than state of health showed that the lesions occurred in 38% of G(IX) (+)F(1) mice but not in G(IX) (-)F(1), B6-G(IX) (+), or 129 mice. Lymphoproliferative lesions were either reticulum cell sarcoma (RCS) type A or reactive lymphoid hyperplasia (RLH). RCS occurred more often in G(IX) (+)F(1) (38%) than in G(IX) (-)F(1) (12%) or B6-G(IX) (+) (8%). No RCS occurred in mice of the 129 strain. RLH occurred in G(IX) (+)F(1) mice (10%) but not in the other strains. From these results, the following conclusions are drawn: (i) Severe glomerulonephritis and the increased occurrence of lymphoproliferative lesions in these animals depend on the presence of G(IX) antigen; (ii) besides genes controlling G(IX) antigen expression, other genes from both parental strains are required to create the basis in the progeny F(1) mice for the development of these diseases; and (iii) the chronic production of G(IX) antibody may be necessary for the development of the severe glomerulonephritis and for the increased occurrence of lymphoproliferative diseases in G(IX) (+)F(1) mice.

Animals↗

Cytotoxic T cells: Lyt phenotype and blocking of killing activity by Lyt antisera.

WE REEXAMINED TWO QUESTIONS CONCERNING LYT ANTIGENS OF CYTOTOXIC T CELLS OF THE MOUSE: is Lyt-1 antigen expressed on cytotoxic effector cells and can cytotoxicity be blocked by antibody to Lyt antigens in the absence of added complement? A 3-hr (51)Cr-release assay with splenic effector cells and leukemia or myeloma target cells was used to measure cell-mediated cytotoxicity. The cytotoxic activity of effector cells against allogeneic targets was abolished by exposure to Lyt-1, Lyt-2, or Lyt-3 antiserum and complement. Specificity was established by tests with C57BL/6 Lyt congenic mice and absorption studies with thymocytes. Similarly, the cytotoxicity of effector cells directed against semisyngeneic myeloma targets was reduced by Lyt-1, -2, or -3 antiserum and complement. Effector cell cytotoxicity against another semisyngeneic target was only marginally affected by Lyt-1 antiserum and complement, but was abolished by Lyt-2 or -3 antiserum and complement. It appears likely that cytotoxic T cells are a heterogeneous population with regard to Lyt-1 expression and that past studies indicating an apparent absence of Lyt-1 on cytotoxic T cells revealed a quantitative, not qualitative, feature of these cells. With regard to the activity of Lyt antisera in the absence of added complement, selective blocking of effector cell cytotoxicity for allogeneic and semisyngeneic targets was found with Lyt-2 and Lyt-3 antisera but not with Lyt-1 antiserum. The specificity of blocking was established by tests with Lyt congenic mice and absorption studies with thymocytes. With the exception of blocking by antisera to the H-2 haplotype expressed by the target cell, no effector cell blocking was observed with alloantisera or heteroantisera to a range of other cell surface molecules present on mouse lymphoid cells. One possibility to account for the selective blocking by Lyt-2 and Lyt-3 antisera is that Lyt-2,3 determinants on the surface of cytotoxic T cells have a close spatial relation to the T cell receptor.

Animals↗