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Clonal analysis of cytolytic T lymphocyte-mediated lysis of target cells with inducible antigen expression: correlation between antigen density and requirement for Lyt-2/3 function.

The lysis by allospecific cytolytic T lymphocytes (CTL) of the BALB/c lymphoma ST-4.5, a cell line that can be induced by interferon-gamma (IFN-gamma) to express increased amounts of major histocompatibility complex (MHC) class I antigens, was investigated. Culture of ST-4.5 in IFN-gamma increased the surface expression of Kd molecules from originally low levels and Dd from undetectable amounts by approximately fivefold as determined by fluorescence-activated cell sorter (FACS) analysis, whereas the levels of several other antigens (Ld, I-Ad, Thy-1, Lyt-2, L3T4, and LFA-1) were not affected. The lysis of ST-4.5 by Dd- and Ld-specific CTL clones correlated with the expression of those antigens on target cells as determined by both FACS and biochemical analysis. Lysis of ST-4.5 by CTL clones specific for Kd antigen fell into two distinct groups: those that could lyse targets cultured either normally or in IFN-gamma, and those that could only lyse targets that had been precultured in IFN-gamma. The apparent sensitivity to antigen exhibited by the Kd-specific CTL clones predicted their sensitivity to inhibition of target lysis by anti-Lyt-2/3 antibody. Those CTL clones that were only active against ST-4.5 expressing higher amounts of surface antigen (resulting from IFN-gamma preculture) were readily inhibited by anti-Lyt-2/3 antibody, whereas those CTL capable of lysing normally cultured targets having lower amounts of surface antigen were heterogeneous in their sensitivity to anti-Lyt-2/3; some were inhibitable, whereas others were resistant. In addition, another CTL clone that was resistant to inhibition by anti-Lyt-2/3 alone was readily inhibited by a synergistic combination of anti-Lyt-2/3 plus anti-Kd (but not anti-Dd or Ld) antibodies. These results indicate that CTL antigen receptor sensitivity to (or affinity for) antigen and the level of specific antigen expression by the target cell may both be important criteria in assessing Lyt-2/3 molecule function in CTL-mediated cytolysis. The function of recognition-associated molecules such as Lyt-2/3 may be to strengthen and increase the number of receptor-ligand binding events that facilitate CTL-target membrane interactions that lead to the lysis of the target cell.

Animals↗

Clonal analysis of the anti-Qa-1 cytotoxic T lymphocyte repertoire: definition of the Qa-1d and Qa-1c alloantigens and cross-reactivity with H-2.

To characterize the four common Qa-1 allelic products, we examined in detail the CTL-defined determinants encoded by Qa-1. In previous studies with anti-Qa-1 CTL and alloantisera, investigators have described antigenic determinants present on Qa-1a and Qa-1b antigens, but they have defined Qa-1c and Qa-1d exclusively by their cross-reactivity with Qa-1a and/or Qa-1b determinants. To delineate further the CTL-defined determinants encoded by Qa-1d, we generated CTL clones with Qa-1d specificity and demonstrated that the Qa-1d molecule expressed determinants that were not detected on Qa-1a, Qa-1b, or Qa-1c target cells. Other CTL clones derived from anti-Qa-1d MLC recognized new antigenic determinants on Qa-1c that cross-reacted with Qa-1d. Each of the four common Qa-1 phenotypes was shown to exhibit unique antigenic determinants. In addition, Qa-1d anti-Qa-1a and Qa-1d anti-Qa-1b CTL confirmed extensive cross-reactivity among these Qa-1 alloantigens. Analysis of CTL from these four immunizations also resulted in the isolation of Qa-1a-specific and Qa-1d-specific CTL clones that cross-reacted with H-2Df and H-2Ks, respectively.

Animals↗

Clonal analysis of the primary and secondary B cell responses of neonatal, adult, and xid mice to (T,G)-A--L.

The splenic focus assay was used to clone B cells from neonatal, adult and xid mice in order to examine their primary and secondary responses to (T,G)-A--L. Adult precursor cell frequencies to (T,G)-A--L were achieved late in neonatal ontogeny. Primary xid B cells responded to DNP-HY but not to (T,G)-A--L in the splenic focus assay. The frequency of secondary B cells from (T,G)-A--L-primed xid mice was less than or equal to 10% that of secondary B cells from wild-type (non-xid or X/Xxid heterozygous) mice. Although xid B cells were poorly responsive to (T,G)-A--L in the splenic focus assay, (T,G)-A--L-primed xid mice could provide help as recipients for stimulation of wild-type primary and secondary B cells. It seems likely that the B2 subset contributes most of the splenic focus response to (T,G)-A--L. The fine specificities of antibodies produced by neonatal, xid, and adult (wild-type) B cell clones were analyzed using analogues of (T,G)-A--L. A specificity shift was observed between the adult primary and secondary antibody responses to (T,G)-A--L. Less than 10% of adult primary clones produced antibodies cross-reactive on (Phe,G)-A--L (recognizing A--L determinants or Phe,Glu determinants), whereas more than 70% of primary clones produced Tyr,Glu side-chain specific antibodies cross-reactive on GT. The percentage of clones producing GT-binding antibodies diminished in the secondary response, while the percentage of clones producing antibodies cross-reacting on (Phe,G)-A--L increased. Neonatal clones also produced mostly GT-binding antibodies but gave a higher percentage of (Phe,G)-A--L-cross-reacting antibodies than adult primary clones. The specificities of secondary antibodies produced by xid and wild-type B cell clones were dissimilar. First, xid secondary clones were "primary-like" in that no anti-A--L antibodies were detected. Second, clones whose antibodies bound side-chain determinants but not GT were produced in higher frequency by xid than by wild-type secondary B cells. The differential responsiveness of B cell subsets to antigen and regulatory signals may influence memory B cell generation and the specificity of antibodies produced in the primary vs secondary response.

Aging↗

Clonal analysis of the BALB/c secondary B cell repertoire specific for a self-antigen, cytochrome c.

mAb to rat cytochrome c (cyt c), totaling 556, were produced by individual clones of secondary B lymphocytes from nine groups of five BALB/c mice each in vitro using the splenic focus culture system. Inasmuch as rat and mouse cyt c are identical, these B cells can be considered specific for a self-antigen. The mAb were categorized into specificity groups based on their reactivities with a panel of seven cyts c that differ at two to six amino acid residues. The number of distinct specificities for the native protein was restricted to fewer than 20. Different groups of mice expressed the same specificities at comparable frequencies, including a single dominant one, and the total number of secondary cyt c-specific B cells was constant among groups of mice. This suggests that the acquisition of the secondary B cell specificity repertoire for this self-antigen is regulated. However, it is indeed possible that each specificity group may comprise a number of distinct mAb molecules that have arisen stochastically. Specificities expressed by as few as 1% of the total mAb were observed. Thus, it is likely that the identified specificities reflect the secondary B cell specificity repertoire for rat cyt c. The dominant specificity expressed by 50% of the mAb was characterized by elimination of antigen recognition as a result of replacement of aspartic acid by glutamic acid at position 62. Minor specificities expressed by 19% of the mAb were characterized by more subtle affects of an amino acid change at position 62 and/or an amino acid substitution from rat cyt c at position 60. Antibodies in other specificity groups reacted with epitopes in the region of residues 44 and 47. Whereas substitutions at positions 44, 47, 60, and 62 eliminated recognition by most of the mAb, changes at position 92 and at 103 also appeared to affect the binding of some mAb in the region around residues 60 and 62. The amino acid residues implicated in the recognition by murine mAb of murine cyt c have been shown previously to be involved in the epitopes of foreign mammalian cyt c. Therefore, self-tolerance cannot fully explain the restriction of the epitopes to these regions on foreign mammalian cyt c.

Animals↗

Clonal analysis of the actions of the murine leukemia inhibitory factor on leukemic and normal murine hemopoietic cells.

The in vitro actions of leukemia inhibitory factor (LIF) purified from Krebs tumor conditioned medium, were analyzed on murine leukemic M1 and WEHI-3B D+ cells and on normal hemopoietic progenitor cells. LIF has no observable effects on WEHI-3B D+ cells but rapidly induced macrophage differentiation and loss of clonogenicity in M1 cells, resulting in the formation of abortive clones or differentiating colonies of reduced size and number. These effects were observable within one to two cell divisions in the presence of LIF and were irreversible. Addition of macrophage-colony-stimulating factor (CSF) but not granulocyte/macrophage-CSF, granulocyte-CSF, or multi-CSF reduced the LIF-induced suppression of colony numbers and size. G-CSF had a slower differentiation-inducing action on M1 cells than LIF but potentiated the differentiation-inducing effects of low concentrations of LIF. LIF had no colony-stimulating activity for normal granulocyte-macrophage progenitor cells and did not alter their quantitative responsiveness to CSF. However, culture of normal progenitor cells in the presence of LIF, but initial absence of CSF, reduced the survival of these cells. The differing actions of LIF and G-CSF on M1 leukemic cells suggest the existence of distinct mechanisms for inducing macrophage differentiation in these leukemic cells.

Animals↗

Clonal analysis of liver-derived T cells of patients with primary biliary cirrhosis.

Lymphocyte infiltration in liver tissue is one important histological finding in primary biliary cirrhosis (PBC). So far, functional analyses of lymphocytes in PBC have focused on circulating lymphocytes, whereas lymphocytes at the involved site, the liver, have not been examined functionally. We have established interleukin 2 (IL-2)-dependent T lymphocyte lines (TLL) and clones (TLC) from liver biopsies of 14 patients with PBC. Phenotypic analysis using the monoclonal antibodies MT910 (CD2), MT811 (CD8), and MT151 (CD4) revealed that in nine of 14 TLL cytotoxic-suppressor T cells predominated (CD8+:52-84%; CD4+:14-48%), whereas in five of 14 TLL a preponderance of the CD4+ subpopulation was found (CD4+:56-73%; CD8+:28-45%). From 10 patients 137 TLC were generated which phenotypically correlated to the TLLs. We have tested the cytotoxic potential of seven TLL and 43 TLC in LDCC (lectin-dependent cell-mediated cytotoxicity), NK (natural killing) and ADCC (antibody-dependent cell-mediated cytotoxicity) assays. All TLL and all but one CD8+ TLC tested showed high activity in the LDCC assay, reflecting the cytolytic activity of cytotoxic T cells (CTL). CD4+ clones with LDCC activity were rarely found. NK activity and K cell activity could only be found in two clones. For the first time TLC and TLL from liver tissue of PBC patients could be generated. The high cytotoxic activity displayed by T cells derived from the liver indicates an important role for this immunological mechanism in the tissue damaging process.

Adult↗

Clonal analysis of murine graft-vs-host disease. I. Phenotypic and functional analysis of T lymphocyte clones.

Acute and chronic graft-vs-host disease (GVHD) due to non-MHC histocompatibility differences differ histopathologically. Acute GVHD is characterized by the cytotoxic destruction of recipient tissues, whereas chronic GVHD is characterized by increased collagen deposition. In an attempt to determine if acute and chronic GVHD represent two phases of the same pathophysiologic process or two distinct processes, the T lymphocytes from the C57BL/6 (B6) recipients of LP spleen cells (non-H-2 GVHD) have been cloned and compared to clones from immune mice (LP anti-B6). Acute GVHD (G) clones were established on day 10-14 posttransplant and chronic GVHD (CG) clones on day 50 from animals with clinical chronic GVHD. Immune (I) clones were established 10 to 14 days after immunization. All I clones exhibited B6-specific blastogenesis and cytotoxicity and had a Thy-1.2+, Lyt-2.2+, L3T4- phenotype. All CG clones were noncytotoxic, had I-Ab-specific blastogenesis, and had a Thy-1.2+, Lyt-2.2-, L3T4+ phenotype. The acute GVHD (G) clones were heterogeneous. Fourteen of 23 clones exhibited B6-specific blastogenesis and had a Lyt-2.2+, L3T4- phenotype (B6-G clones). Seven of 9 B6-G clones were cytotoxic for B6 targets. Nine of 23 G clones exhibited I-Ab-specific blastogenesis, and all but one clone had a Lyt-2.2-, L3T4+ phenotype as the did CG clones. Thus, the principal clonogenic T lymphocytes from mice with acute and chronic GVHD differ in terms of 1) their antigenic specificity, 2) their cytotoxic capacity, and 3) their surface phenotype. The presence of I-Ab-specific T lymphocytes with a phenotype identical to CG clones early after transplantation suggests that the immunologic events that result in chronic GVHD begin soon after transplantation. These results indicate that acute GVHD is due primarily to recipient-specific cytotoxic donor T lymphocytes, whereas chronic GVHD is due to autoreactive helper T lymphocytes.

Acute Disease↗

Clonal analysis of murine graft-vs-host disease. II. Leukokines that stimulate fibroblast proliferation and collagen synthesis in graft-vs. host disease.

T lymphocyte clones were established from mice with acute and chronic graft-vs-host disease (GVHD) [C57B6/6 (B6) mice transplanted i.v. with LP/J spleen cells] and immune mice (LP/J mice immunized intraperitoneally with B6 spleen cells). To determine the role of leukokines in the increased collagen production that characterizes chronic GVHD, the supernatants of in vitro stimulated clones were assayed for their effect on 1) B6 embryonic fibroblast proliferation, 2) total fibroblast collagen secretion, and 3) collagen secretion per fibroblast. Four of nine chronic GVHD (CG) clones stimulated both total collagen secretion and collagen secretion per fibroblast, but none stimulated fibroblast proliferation. Six of 10 immune (I) clones stimulated fibroblast proliferation, and none stimulated collagen secretion per fibroblast. Acute GVHD (G) clones were heterogeneous; 2/10 G clones stimulated fibroblast proliferation, 5/10 stimulated total collagen secretion, and 4/10 stimulated collagen secretion per fibroblast. I and CG clones may act synergistically in vivo. The presence of CG-like clones in mice with acute GVHD suggest that the immunologic events that culminate in chronic GVHD are initiated early after transplantation.

Acute Disease↗

T lymphocyte control of human eosinophilic granulopoiesis. Clonal analysis in an idiopathic hypereosinophilic syndrome.

The idiopathic hypereosinophilic syndrome (HES) comprises a heterogeneous group of disorders with unknown pathogenesis characterized by persistent peripheral blood and bone marrow eosinophilia and eosinophilic infiltrates of multiple organs leading to severe organ dysfunction. In the present study, T lymphocyte clones were randomly established from the blood of a patient with HES and propagated in culture with mitogen and interleukin 2. Whereas 28 of 29 clones were able to stimulate myeloid colony formation when co-cultured with normal bone marrow cells in a double-layer micro-agar culture system, one third of these clones preferentially stimulated pure eosinophil colonies (up to 98% of all colonies). This pattern differed markedly (p less than 0.001) from the pattern of release of hemopoietic factors by 126 T cell clones established from four other individuals. Eosinophil colony stimulation was due to the release of a lineage-specific eosinophilic colony-stimulating factor (Eo-CSF) by these clones after appropriate stimulation. Production of Eo-CSF in vitro was inhibited by hydrocortisone or cyclosporin A. All Eo-CSF-producing clones had the T4+8-phenotype and were capable of producing in addition interleukin 2 and interferon-gamma. Southern blot analysis of the T cell receptor beta-chain rearrangement of the Eo-CSF-producing clones showed a different rearrangement pattern for each clone. These studies suggest a reactive T cell-mediated eosinophilia as the pathogenetic mechanism in this case of HES and, for the first time, point to a biologic relevance of a lymphokine-induced stimulation of hemopoiesis.

Adult↗

Clonal analysis of chimaeric patterns in aortic endothelium.

The mosaicism in aortic endothelium of mouse aggregation chimaeras is demonstrated using the lectin Dolichos biflorus agglutinin as a strain-specific marker. The general fragmentary appearance and considerable size range of patches suggests that endothelial cells do not proliferate in a highly coherent manner. The developmental significance of the observed patterns is investigated by means of a quantitative statistical analysis-the Greig-Smith analysis of variance. This method examines the spatial distribution of patches and is able to detect and characterize pattern at various scales. The results show that (1) patches are non-randomly distributed at all scales examined and (2) 'clusters of clusters' occur at one small and one large scale, defining territories of 'primary' and 'secondary' descendent clones, which arose respectively during early and late periods in the development of the endothelium. We conclude from this analysis that (1) cell mixing is never complete, even in the early embryo and (2) cell mingling is not uniform during development. A different pattern was previously demonstrated for intestinal epithelium (Schmidt, Wilkinson & Ponder, 1985c) indicating the potential value of the method for quantitative comparison of mosaicism between tissues and also different developmental stages. Our results suggest that the analysis of patch sizes is likely to be less informative in terms of developmental mechanisms, than the analysis of the spatial arrangement of patches.

Analysis of Variance↗

Clonal analysis of intestinal crypt populations in mouse aggregation chimaeras.

The epithelium of each individual intestinal crypt in adult mouse aggregation chimaeras is composed of cells of a single parental genotype (Ponder et al. 1985). Using a carbohydrate polymorphism recognized by Dolichos biflorus agglutinin as a strain-specific marker on entire sheets of intestinal mucosa, we have analysed the two-dimensional mosaic patterns of patches of the chimaeric intestinal crypt population. The relative proportions of each genotype varied greatly along the length of any one intestine. In chimaeras with highly unbalanced proportions, the minority component occurred as discrete patches. Patches of single or a few crypts were most frequent, but a smaller number of much larger patches was always present. The size frequency distribution of discrete patches was highly concave and departed significantly from a geometric distribution (a model for non-differential proliferation), but fitted the more skewed negative binomial model. The data are consistent with the interpretation that most progenitor crypts never or rarely divide, while a minority proliferate to a greater extent. We discuss ways in which our system could be analysed further to examine this interpretation. Our results also support Whitten's (1978) conclusion from a computer simulation that the mean patch size, as it has previously been used in statistical analyses of chimaeric tissue, 'is not a reliable statistic on which to judge mosaicism'.

Animals↗

Clonal analysis of diversity in the BSp73 rat tumor.

By implantation of BSp73 ascites cells in a subcutaneous site and subsequent subcutaneous passage of either the local tumor node or metastatic lung tissue, variants were obtained which differed with respect to morphology and to metastatic capacity. The highly metastasizing variant ASML showed spherical morphology in culture, while the nonmetastatic variant AS showed adhesion and spreading. Upon cloning it was observed that colonies with fully expressed morphotypes were readily obtained from solid tissue of both variants. Parental ascites as well as the tumor line derived from the primary solid tumor gave rise to stable expression of either morphotype only after prolonged culturing. Mixing of established clones did not result in an interclonal adaptation of growth rates in vivo. Further characterization of variants AS and ASML revealed marked differences in the outer cell surface. Adhesion of AS cells onto plastic was found to be mediated by fibronectin, laminin and 4 out of 5 collagen types. ASML cells showed adhesion only with collagen type III at higher concentrations. Cytogenetic analysis revealed that the adaptation of BSp73 cells to ascitic growth ultimately led to an increase in chromosome numbers, and this was conserved in ASML cells (modal number 63, range 49-74). AS cells on the other hand showed a modal number of 47 (range 45-49). The chromosome count distribution was rather narrow in ascites cells in vivo, but it was very broad in clones derived thereof, indicating that diversity was obtained in culture rather than in vivo. The data are compatible with the assumption that the nonmetastatic variant was not preexisting in BSp73 ascites but represents a stable phenotype which infrequently arises in a particular microenvironment by chromosome loss from a hyperdiploid parental population.

Animals↗