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L K Goff

Publications and source records attributed to L K Goff.

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The variable occurrence of CD45RA on CD8+ thymocytes correlates with the presence of Mtv sequences; its expression on other thymocytes is rare.

While all thymocytes express CD45, only a small fraction (less than 3% in mice) bear the high molecular weight isoform, CD45RA. It has been suggested that these cells alone constitute the generative thymocyte lineage and should, therefore, occur within every ontogenic subset. To test this, we determined CD45RA expression among thymocyte subsets defined by CD4 and CD8. In some strains, exemplified by C57BL/Icrf, very few (less than 0.2%) T thymocytes expressed CD45RA and were mostly CD4-CD8- or CD4+CD8+, inconsistent with them constituting the generative lineage. In others, exemplified by BALB/c, CD45RA was expressed on up to 3% of T thymocytes, which were mostly CD4-CD8+. The limited occurrence of CD4-CD8+CD45RA+ thymocytes suggests that they are a nonconstitutive subset playing a role in the thymus of only some strains. Their occurrence correlates with that of Mtv proviruses within the mouse genome; however, their T cell receptor V beta repertoire is diverse, suggesting they are not uniquely selected by Mtv superantigens. We propose that they may be mature CD8 T cells, possibly responsible for introducing viral superantigens into the thymus.

Animals

Characterization of constitutive and strain-dependent subsets of CD45RA+ cells in the thymus.

We have previously shown that the occurrence of CD45RA+ adult mouse thymocytes is strain-dependent, e.g. constituting approximately 0.6% in C57BL/Icrf and approximately 2.5% in BALB/c (Huby, R. and Goff, L., 1992. Eur. J. Immunol. 22:1659). Here we show that irrespective of strain, the thymus contains approximately 0.6% CD45RA+ cells which are composed of slg+ B cells (approximately 0.4%), slg- CD4-CD8- cells (< 0.2%), and CD4+ CD8+ cells (< 0.2%). In some strains an additional CD45RA+ population, representing up to approximately 2% of all thymocytes, is present and has a CD4-CD8+ phenotype. It is this CD4-CD8+CD45RA+ subset which is responsible for the observed strain difference. In BALB/c mice, this additional population comprises approximately 90% of the CD45RA+ thymic cells. They are larger than the majority of thymocytes, with a size typical of mature, single positive cells (CD4+CD8- or CD4-CD8+). Further phenotyping for co-expression of other maturation markers showed them to be distinctive; they are CD3int-hi, i.e. as bright as other CD8 single positives, which are dimmer than CD4 single positives. In addition they are CD44hi, MEL-14dim and hi, Thy-1lo, HSAlo/-, and PNAlo, suggesting them to be amongst the most mature cells in the thymus. This was corroborated by their phenotypic similarity to CD45RA+ lymph node T cells. Furthermore, in BALB/c adult thymus sections, CD45RA+ cells are localized mainly in the medulla, consistent with a mature phenotype. Comparable with most mature thymocytes, cell cycle analysis revealed this subset to be composed of resting (G0/G1) cells. The CD4-CD8+CD45RA+ cells are amongst the most mature thymocytes and yet are indistinguishable from peripheral T cell counterparts; the possibilities that they are mature thymocytes due to exit the thymus, or that they may represent recirculating peripheral T cells, are discussed.

Animals

Expression of high molecular weight isoforms of CD45 by mouse thymic progenitor cells.

We have studied the expression of isoforms of CD45 (leukocyte common antigen, LCA) among T cell precursors using the organ culture system of Jenkinson et al. (Eur. J. Immunol. 1982. 12: 583). These experiments show that cells capable of recolonizing alymphoid embryonic thymic lobes in vitro can be detected in the thymus of fetal and adult mice and are enriched when thymocytes are depleted of cells bearing CD4 or CD8. These data are consistent with results from in vivo experiments of Fowlkes et al. (J. Exp. Med. 1985. 162: 802) indicating that T cell precursors lie within the double-negative (CD4-CD8-) compartment. No precursors were detected among the reciprocal populations of cells bearing CD4 and/or CD8 (single and double positives). Double-negative cell fractions were then divided on the basis of reactivity with monoclonal antibodies RA3-2C2 and RA3-3A1. These antibodies recognize the high molecular weight species of the LCA or, more accurately, a product defined by exon A of the CD45 gene. Recolonizing cells were found predominantly in the CD45RA+ (RA3-2C2 and RA3-3A1 reactive) fraction of double-negative thymocytes; CD45RA- enriched populations had increased efficiency of recolonization and CD45RA- depleted populations had decreased ability to recolonize as compared with the whole CD4-CD8- fraction. To clarify whether progenitors enriched in the CD45RA+ fraction were capable of giving rise to mature CD4+, CD8+ and CD4+ CD8+ cells, we analyzed the progeny of lobes seeded with CD4-CD8-CD45RA+ fractions. After 7-9 days in organ culture the proportion of CD4+, CD8+ or CD4+ CD8+ cells had increased to 35.2%, 18.6% and 23.7%, respectively (mean of five experiments), indicating that progenitors among the CD45RA+ population were indeed multipotent. These results suggest that the majority of T stem cells in the thymus are among thymocytes that express the CD45RA molecule, an hypothesis supported by our finding that removal of CD45RA-expressing cells (using complement and antibody) eliminated recolonizing capacity of thymic cell fractions.

Animals

Human thymocyte development in mouse organ cultures.

A novel system to study human thymocyte development is described in which embryonic mouse thymic rudiments are seeded with human precursor cells in vitro. In these cultures human thymocytes proliferate extensively (greater than 20-fold increase in cell number) and mature, as evidenced by the accumulation of double and single positive (CD4+ and/or CD8+) cells. Data presented here suggest that the survival and ordered development of the mature human thymocytes in chimeric thymuses is dependent on human stromal elements. Immature CD4-CD8- human thymocytes failed to colonize or minimally recolonized mouse thymic lobes unless provided with high density (greater than 1.077 g/ml) human thymic cell fractions. These fractions contain multicellular complexes of epithelial/nurse cells, thymocytes, and dendritic cells/macrophages which dramatically enhanced the recolonizing capacity of purified CD4-CD8- thymocytes. The chimeric organ culture system described here provides not only a new approach for studying human T cell ontogeny but also a direct means for the future dissection of stromal interactions necessary for successful transition of precursor cells (CD4-CD8-) to immature double positive (CD4+CD8+) and mature single positive cells (CD4+ or CD8+) in the thymus.

Animals

Expression and functional role of CD23 on T cells.

We have found that approximately 10%-15% of tonsil, but not peripheral blood, T cells express the CD23 antigen following activation with 12-O-tetradecanoylphorbol 13-acetate (TPA), phytohemagglutinin (PHA) or recombinant interleukin 4. The proliferative response of tonsil T cells is significantly increased when CD23 monoclonal antibodies (mAb) are present in the cultures. In contrast, no such proliferative augmentation is seen when peripheral blood T cells are cultured in this way. Supernatant (SN) of Epstein-Barr Virus-transformed B lymphoblastoid cell lines (EBVLCL), is found to have a similar co-stimulatory effect on the proliferation of tonsil T cells to that seen with CD23 mAb. This effect is greatly diminished by preclearing SN with CD23 mAb. Similarly, SN from a CD23+ L cell transfectant augments the proliferative response of tonsil T cells to both TPA and PHA. The CD23 molecule expressed by TPA-driven T cell blasts appears identical in size to the 45-kDa glycoprotein present on EBVLCL and activated B cells. In contrast, a 42-kDa molecule is observed when CD23 is precipitated from T cells activated with PHA. The results presented here demonstrate that CD23 is expressed on activated tonsil, but not peripheral blood T cells and plays a role, via the binding of CD23 mAb and CD23+ material, present in EBVLCL and CD23+ transfectant SN, in the regulation of T cell proliferation in response to mitogens such as PHA and TPA.

Adjuvants, Immunologic

Problems in the physiology of class I and class II MHC molecules, and of CD45.

1. Co-processing of alloantigens suggests that epitope-loaded MHC class I molecules may pass from tissue cells to dendritic cells. 2. Antigen-presenting cells in the thymus need some special trick in order to load their MHC class II molecules with epitopes from "intermediate concentration" self-proteins in order to induce self-tolerance in developing cells. 3. Cell-cell interactions may transmit signals simply by rearranging surface glycoproteins and thus locally perturbing a phosphorylation equilibrium. 4. The CD45 and STB1 phenotype of most cells in the thymus may be characteristic of a doomed cell.

Animals

Functional interaction between B cell subpopulations defined by CD23 expression.

Using the CD23 monoclonal antibody (mAb) MHM6 and sheep anti-mouse Ig bound to magnetic beads we have obtained highly purified populations of MHM6+ and MHM6- tonsil B cells. We have found that the increased expression of MHM6 reactivity seen on B cells after activation results from up-regulation of antigen on cells already weakly positive and not from expression of new antigen on the previously negative population. The strong proliferative responses of MHM6+ cells seen in the presence of anti-IgM (alpha mu) and interleukin 4 (IL4) or the CDw40 mAb G28-5, and with Staphylococcus aureus Cowan I (SAC), and to a lesser extent with the phorbol ester 12-O-tetradecanoylphorbol 13-acetate (TPA), resemble that seen among unfractionated B cells. In contrast, the MHM6- population cultured alone responds only weakly to alpha mu + G28-5 or SAC and exhibits virtually no response to alpha mu + IL4 or TPA. With all these mitogenic stimuli, tritiated thymidine uptake by the MHM6- population is augmented three- to sixfold by the addition of mitomycin C (MC)-treated MHM6+ cells. Pretreatment of cells with anti-leukocyte functional antigen 1 mAb has little effect on the subsequent proliferation of the MHM6- population but shows cell contact to be critical for the proliferation of MHM6+ cells. Such pretreatment has revealed that the functional interaction observed between MHM6+ and MHM6- cells is dependent on both cell contact and the presence of an MHM6+ cell-derived soluble component. We have found that addition of soluble CD23, purified from Epstein-Barr virus-transformed lymphoblastoid cell line supernatant, increases the proliferative response of MHM6- tonsil B cells to mitogenic stimuli in the presence of inactivated MHM6+ cells but has no effect on proliferation when MHM6+ cells are absent. By way of contrast to normal B lymphocytes, we have examined functional responses of prolymphocytic leukemia (PLL) B cells. Although these cells, when freshly isolated, show comparable levels of CD23 expression to normal B cells, this expression is not increased upon activation. In addition, in contrast to normal B cells, the PLL MHM6- population cultured alone shows a strong proliferative response to various mitogenic stimuli, comparable to that of MHM6+ or unfractionated cells, and this response is not augmented by the addition of MC-treated MHM6+ cells. Thus, a novel functional interaction is described between normal, but not leukemic, B cell populations defined by their expression of CD23.(ABSTRACT TRUNCATED AT 400 WORDS)

Antibodies, Monoclonal

Characterization of two CD23 monoclonal antibodies with reactivity distinct from other antibodies within this cluster of differentiation.

We have produced two CD23 monoclonal antibodies (mAb), LA1 and LA2, which differ significantly in their patterns of reactivity compared to other mAb within this cluster. Unlike other CD23 mAb, LA1 and LA2 show virtually no reactivity with freshly isolated tonsil B lymphocytes or mantle zone lymphocytes in tissue section. That LA1 and LA2 are CD23 mAb is confirmed by their precipitation of a 45,000 MW surface protein from B cells and strong reactivity with a CD23 transfectant. Cross-blocking studies with four well-characterized CD23 mAb show that LA1 and LA2 recognize the same, distinct epitope of the CD23 molecule. However, similar to other CD23 mAb, expression of LA1 and LA2 increases after activation. Following removal of cells staining with the well-characterized CD23 mAb MHM6, using a highly efficient magnetic bead technique, LA1 and LA2, but not other CD23 mAb, react with a subpopulation of the remaining cells when activated with interleukin-4 (IL-4) or phorbol ester. Soluble LA1 and MHM6 both provide a co-stimulatory signal for phorbol ester-induced B-cell proliferation. This response is increased if these mAb are used to cross-link the CD23 molecule. Interestingly, despite the fact that LA2 and LA1 cross-block, LA2 has no effect on functional responses in its soluble form but can elicit a comparable increase in proliferation when cross-linked. Results presented here suggest that the novel CD23 mAb, LA1 and LA2, recognize a distinct form of the CD23 molecule, expressed only on activation. These mAb define a subpopulation of activated B cells which do not stain with other CD23 mAb.

Antibodies, Monoclonal

Normal values for the different classes of venous blood mononuclear cells defined by monoclonal antibodies.

We present the data obtained from routine quantitation of normal venous blood mononuclear cells using 19 monoclonal antibodies against defined mononuclear cell surface antigens. The results indicate different values for percentage and absolute numbers of T lymphocytes and of T lymphocyte subsets depending on the monoclonal antibodies used to quantify these populations. In most instances the total number of identified cells was significantly less than the total number of recovered blood mononuclear cells, which suggests the existence in blood of a null cell population. Evidence is advanced to support previous observations that at least a proportion of this population is of B cell lineage, expressing cytoplasmic immunoglobulin but lacking other class or lineage specific markers. The value of a diverse monoclonal panel in routine quantitation of peripheral blood mononuclear cells is discussed.

Adult

Lymphoid cells, small cell lung cancer cells and epithelial cells share a membrane determinant which effects cell proliferation.

Two monoclonal antibodies (mAb) 1D1 and 2A6 were obtained from a fusion following hyperimmunization with prolymphocytic leukaemia (PLL) B cells. These mAb stain a minority of B- and T-cell leukaemias and approximately 20% of peripheral blood and tonsil T and B cells, activated with a variety of mitogens. Interestingly, all small cell lung cancer (SCLC) and bladder carcinoma lines examined were also stained by both mAb. On sections of normal and malignant tissue 1D1 and 2A6 show strong but distinct reactivity with epithelium, and in the case of ID1 staining is also present on endothelial tissue. The addition of purified 1D1 and 2A6 to Epstein-Barr virus (EBV)-transformed B-lymphoblastoid cell lines (B-LCL) and SCLC lines caused a significant increase in the rate of proliferation of these cells. Capping experiments have suggested that these two mAb, despite showing significantly different staining profiles, probably recognize distinct epitopes of the same surface molecule. These studies confirm that a lymphoid-cell associated antigen(s) detected by mAbs 1D1 and 2A6 is expressed on a wide range of normal and malignant cells and related cell lines.

Antibodies, Monoclonal