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Biomedical subjects

R C Budd

Publications and source records attributed to R C Budd.

At least 37 records · Page 2Linked to original sources

Abnormal regulation of the IL-2 promoter in lpr CD4-CD8- T lymphocytes results in constitutive expression of a novel nuclear factor of activated T cells-binding factor.

The inert quality of MRL-Ipr/Ipr (Ipr) peripheral CD4-CD8- (CD4-8-) T cells manifests primarily as an inability to proliferate or produce IL-2 in response to TCR or mitogenic stimulation. Yet these same cells do initiate early TCR-mediated signaling events, such as generation of inositol phosphates and increased intracellular calcium. They also display constitutively high levels of p59fyn and CD3 zeta tyrosine phosphorylation. The generation of second messengers in T cells normally leads to downstream signaling that results in transcriptional activation of the IL-2 gene. We, therefore, compared the activation state of the IL-2 gene promoter region in freshly isolated and stimulated Ipr CD4-8- T cells with that of normal T lymphocytes. Levels of the octamer, NF-kappa B (p50-p65 heterodimer), and AP-1 transcriptional factors are constitutively elevated in freshly isolated Ipr CD4-8- T cells, consistent with the activated phenotype of these cells. Upon stimulation with mitogens, formation of the transactivating complex, nuclear factor of activated T cells (NF-AT), occurs with normal kinetics in Ipr CD4-8- T cells. Yet, the levels of the activating NF-AT complex never reach those observed in similarly stimulated normal T cells. Furthermore, nuclear extracts from Ipr CD4-8- T cells display high levels of a novel specific binding activity at the NF-AT site, which is present at much lower levels in freshly isolated normal T lymphocytes. Upon mitogenic stimulation, the binding activity of the novel NF-AT-binding factor is rapidly down-regulated in normal T cells, but persists at high levels in Ipr CD4-8- T cells. These two abnormalities at the NF-AT site provide a potential mechanism to account for the defect in IL-2 production from Ipr CD4-8- T cells.

Animals↗

Decreased CD4-CD8- TCR-alpha beta + cells in lpr/lpr mice lacking beta 2-microglobulin.

The CD4-CD8- T cells that accumulate in lpr/lpr mice have previously expressed CD8, on the basis of studies of CD8 alpha gene demethylation. The actual requirement for CD8 interaction with class I MHC molecules to promote the appearance of CD4-CD8- T cells in lpr/lpr mice has also been suggested. To examine this point in more detail, the lpr mutation was bred onto a beta 2-microglobulin-deficient background (beta 2-m-/-). C57BL/6 (B6) mice homozygous for both the lpr mutation of the fas gene and inactivation of the beta 2-m gene (beta 2-m-/- lpr/lpr) develop less alpha beta T cell lymphadenopathy than the parental B6 lpr/lpr strain. This is caused by the near absence of CD8+ T cells and a considerable reduction in CD4-CD8- T cells, revealing an important role for positive selection on class I MHC molecules during the ontogeny of lpr CD4-CD8- T cells. Although absolute numbers of peripheral T cells are decreased in beta 2-m-/- lpr/lpr mice, they manifest a B cell lymphadenopathy with age. beta 2-m-/- lpr/lpr mice display only subtle indications of autoimmune disease with age, compared with parental B6 (beta 2-m+/+)lpr/lpr mice. These include limited histopathologic stages of kidney disease and lack of proteinuria, despite the presence of serum anti-DNA Abs. Thus, absence of class I MHC-positive selection of CD8+ and CD4-CD8- TCR-alpha beta + cells limits the autoimmune diathesis observed in beta 2-m+/+ lpr/lpr mice.

Animals↗

The origin of CD4-CD8-TCR alpha beta+ thymocytes: a model based on T-cell receptor avidity.

Ralph Budd and Philip Mixter present a hypothesis suggesting that CD4-CD8-TCR alpha beta+ cells arising in the normal thymus result from a high-avidity T-cell receptor (TCR) signal bordering on negative selection. In normal mice, this subset is likely to be gradually deleted but, in the absence of Fas, these cells persist in lpr mice. The model they describe makes several predictions regarding the nature of this unusual T-cell subset.

Animals↗

Increased usage of V beta 2 and V beta 6 in rheumatoid synovial fluid T cells.

OBJECTIVE: To determine if the T cell antigen receptor V beta usage of unstimulated rheumatoid arthritis (RA) synovial fluid (SF) T cells is biased compared with those in peripheral blood (PB). METHODS: Freshly isolated, matched synovial fluid and peripheral blood T cells were analyzed for V beta gene expression using quantitative polymerase chain reaction (PCR) methods. Ten synovial fluid samples from the knees of 7 patients with RA were studied. The PCR assay used 26 V beta primers with a constant region C beta primer, and 2 C alpha primers that co-amplified a product that served as an internal standard. Cycle number and complementary DNA content were controlled to ensure the linear accumulation of PCR products. Labeled products were separated on 10% polyacrylamide gels and counted with a Betascope blot analyzer. RESULTS: There were consistent differences between the V beta gene usage of SF and PB T cells directly isolated from patients with RA, regardless of HLA-DR haplotype. In all synovial specimens, V beta 2 was increased relative to the peripheral blood, while V beta 13.1 and V beta 13.2 were decreased. V beta 6 and V beta 21 were increased in 9 of the 10 synovial samples. Analyses of bilateral SF specimens from 2 subjects and serial specimens from the same knee of 1 subject revealed virtually identical patterns in each patient. The SF V beta bias was not solely due to differences in the proportion of CD4+ and CD8+ cells, because the CD4:CD8 ratios in SF and PB were similar. However, V beta gene usage of separated CD4+ and CD8+ synovial T cells showed that V beta 2 and V beta 6 were more highly expressed on CD4 cells. CONCLUSION: Freshly isolated synovial T cells from inflamed (not end-stage) knees of patients with RA have a remarkably consistent biased V beta gene usage compared with PB T cells. V beta 2 and V beta 6 are uniformly increased, and this increase is primarily in CD4+ T cells. The same V beta bias in the SF T cells of several RA patients suggests that shared antigens may be stimulating the T cell response.

Adult↗

Prominent T lymphocyte response to Borrelia burgdorferi from peripheral blood of unexposed donors.

The proliferative response of peripheral blood T cells to the spirochete, Borrelia burgdorferi, can be as pronounced in unexposed normal individuals as it is in Lyme disease patients. This finding was observed using three geographically distinct isolates of B. burgdorferi. The response is not due to a lipopolysaccharide effect of the spirochete, is sensitive to Proteinase K, and requires antigen processing. It does not result from cross-reactivity of memory T cells that may be reactive to another antigen; the proliferative response to B. burgdorferi is equally distributed between naive (CD29-, CD45RO-) and memory (CD29+, CD45RO+) T cells, whereas the tetanus response is confined to the memory subset. In support of this notion, cord blood specimens that contain almost entirely naive T cells, respond as vigorously to B. burgdorferi as T cells from normal adult peripheral blood. A large panel of CD4+ T cell clones has been derived that are specific for B. burgdorferi. The majority of these clones are reactive to B. burgdorferi in the presence only of autologous HLA-DR molecules. Collectively, these data suggest that the T cell response from normal individuals is more likely due to multiple antigenic epitopes within Borrelial proteins than a superantigen response.

Antigen-Presenting Cells↗

Reversal of hyporesponsiveness in lpr CD4-CD8- T cells is achieved by induction of cell cycling and normalization of CD2 and p59fyn expression.

T cells freshly isolated from the peripheral lymph nodes of autoimmune MRL lpr/lpr (lpr) mice contain a large proportion of functionally non-mature T cell receptor (TcR)-alpha beta+CD3+CD2-CD4-CD8- T cells displaying the B cell isoform of CD45, B220. These cells are hyporesponsive as defined by minimal interleukin-2 (IL-2) production and proliferation in response to stimulation. However, increased levels of inositol phosphates and a rapid mobilization of Ca2+ do occur upon stimulation of the TcR/CD3 complex. Furthermore, lpr CD4-CD8-T cells contain high levels of transcripts for the src-family tyrosine kinase p59fyn, and express a constitutively tyrosine-phosphorylated CD3-zeta chain. These features bear a certain resemblance to anergized T cells. These similarities are extended to show that culturing of lpr CD4-CD8- T cells in the presence of IL-2 in combination with phorbol 12-myristate 13-acetate and ionomycin initiates cell cycling and results in the gain of function; re-stimulation now yields IL-2-dependent proliferation in the absence of exogenous IL-2. In parallel with this gain in function, the population of cells obtained after 1 week in culture retains the TcR-alpha beta + CD4-CD8- phenotype, yet displays increased levels of CD2, decreased surface B220, and normal amounts of p59fyn-specific transcripts. These findings show that cell cycling is associated with the recovery of functional capabilities by lprCD4-CD8-T cells and is closely allied with surface CD2 expression. Thus, the hyporesponsiveness of lpr T cells is not a fixed state.

Aged↗

Delayed kinetics of T lymphocyte anergy and deletion in lpr mice.

The Fas/APO-1 (Fas) antigen is a cell surface protein that mediates apoptosis and belongs to the tumor necrosis factor receptor family. The lymphoproliferative (lpr) anomaly in mice results from a retroviral disruption within the fas gene. Mice that are homozygous for the lpr mutation accumulate large numbers of T lymphocytes and exhibit an autoimmune syndrome resembling systemic lupus erythematosus. A possible explanation for this process is that in the absence of Fas antigen, lpr T cells may be resistant to normal peripheral deletional signals. The bacterial superantigen staphylococcal enterotoxin B (SEB) rapidly induces anergy and deletion by apoptosis of reactive T lymphocytes in normal mice. Administration of SEB to adult lpr mice results in the delayed induction of both unresponsiveness and deletion of V beta 8+ lymph node cells. This is not due merely to an increased thymic output in lpr mice; the delayed induction of tolerance and elimination of reactive lpr T cells by superantigens are intrinsic properties of the cells. The progressive lymphadenopathy in lpr mice may reflect a process of lymphoaccumulation rather than lymphoproliferation. A delay in tolerance induction and elimination of self-reactive T cells could have profound influence on the autoimmune diathesis of lpr mice.

Age Factors↗

Parallels in T lymphocyte development between lpr and normal mice.

The unusual phenotype and function of lpr T cell subsets has considerably aided the determination of various stages in normal T lymphocyte development through the identification of parallel populations. This has included the description of memory T cells that express high levels of CD44. Lpr mature (CD4+ and CD8+) T cells are all CD44hi and produce large amounts of several cytokines, in contrast to normal murine peripheral T cells. However, the minor CD44hi subset of normal memory T cells produces similarly high levels of cytokines. The expression of intermediate density surface T cell antigen receptor (TCR)-alpha beta by lpr CD4-, CD8- (CD4-8-) cells guided the identification of a minor subset of Heat Stable Antigen--normal CD4-8- thymocytes that also expresses TCR-alpha beta. The unresponsiveness of lpr CD4-8- T cells correlates closely with their absence of CD2 expression. This is paralleled in normal mice by CD2- and CD2+ subsets of thymocytes and gut lymphocytes in which the proliferative capacity also segregates with CD2 expression. Finally, lpr CD4-8- T cells bear many similarities to anergic T cells, including high expression of p59fyn, lack of IL-2 production, and recovery of function following induction of cell cycling in the presence of IL-2. The developmental block in lpr CD4-8- T cells has therefore provided considerable insight into normal T cell development and function.

Animals↗

CD2-CD4-CD8- lymph node T lymphocytes in MRL lpr/lpr mice are derived from a CD2+CD4+CD8+ thymic precursor.

MRL lpr/lpr (lymphoproliferative, lpr) mice demonstrate an age-dependent lymphoproliferation and development of autoimmunity. Characteristic of the lymphoproliferation in these mice is the accumulation of large numbers of CD4-CD8-(CD4-8-),CD3+ T lymphocytes in their lymph nodes. The development of the CD4-8- cells, which also aberrantly express B220 and CD44 (Pgp-1) but are CD2-, has been shown to be thymus dependent. An unusual feature of lpr CD4-8-T lymphocytes is that although they appear unresponsive to stimulation, as defined by proliferation and IL-2 production, they have undergone thymic negative selection. As thymic deletion normally occurs at the CD4+CD8+ (CD4+8+) stage, this raises the dilemma that lpr CD4-8- T lymphocytes have either previously been CD4+8+, or they are able to undergo thymic selection as CD4-8- cells. We have addressed this question by examining the methylation status of the CD8 gene in MRL lpr CD4-8- lymph node cells. Demethylation of the CD8 gene has been shown to be an indicator of previous CD8 expression. We find that the CD8 gene in lpr CD4-8- lymph node cells, as well as in the abnormal B220+ CD4-8- lpr thymocytes, is demethylated, suggesting that these cells have previously expressed CD8. In addition, we find that the lpr CD4+8+ thymocyte population contains an increased percentage of atypical B220+, CD44+ cells that are virtually all CD2+. Taken together, these data are consistent with the lpr CD2-CD4-8- population of LNC having arisen from a CD2+ CD4+8+ thymic stage of differentiation.

Animals↗

Co-stimulation via CD28 induces activation of a refractory subset of MRL-lpr/lpr T lymphocytes.

Peripheral lymphoid tissues of lpr mice contain a large proportion of TCR alpha beta/CD3+CD4-CD8- T cells that lack surface CD2 and express the B cell isoform of CD45, B220. This subset of T cells does not proliferate or produce IL-2 in response to mitogenic signals or TCR-CD3 ligation. At the same time, these abnormal T cells display several characteristics of an activated phenotype. Collectively, these properties of lpr CD4-CD8- T cells have functional parallels with anergic T cells. A critical co-stimulatory molecule implicated in the prevention of or recovery from anergy is CD28, which binds the ligand BB1/B7 on certain accessory cells. lpr CD4-CD8- T cells express normal levels of CD28 which is capable of transducing a strong proliferative signal to these cells in co-stimulation with mitogens. However, proliferation of lpr CD4-CD8- T cells in response to CD28 co-stimulation does not reach the levels observed in normal T cells stimulated under similar conditions. Stimulation with anti-CD28 mAb in conjunction with phorbol myristate acetate and ionomycin promotes cell cycling in the CD2- subset of CD4-CD8- T cells, and results in a slight induction of CD2 levels during the course of the culture period. However, the majority of cells obtained at the end of the culture period remain TCR alpha beta+ CD4-CD8-, CD2low/- and B220high, similar to freshly isolated CD4-CD8- lpr T cells. In contrast, if IL-2 is included in the cultures, a strong shift toward a CD2+ phenotype is observed by a majority of the lpr T cells. Upon repeat stimulation, these lpr CD4-CD8- T cells can now proliferate in an IL-2-dependent manner when stimulated with only anti-CD3 mAb or mitogens, in the absence of exogenous IL-2 or anti-CD28 mAb. These data show that the hyporesponsiveness of lpr CD4-CD8- T cells does not result from a lack of CD28 expression, that it is not a fixed state, and that it can be reversed by the induction of cell cycling in the presence of IL-2. These observations extend the parallels between lpr CD4-CD8- T cells and anergic T cells.

Animals↗

CD2 expression on murine intestinal intraepithelial lymphocytes is bimodal and defines proliferative capacity.

The CD2 molecule is normally expressed on nearly all murine lymphocytes, and is co-stimulatory in T cell activation via the antigen receptor (TCR). A naturally occurring T lymphocyte population that is bimodal for CD2 expression was found in the intestinal intraepithelial lymphocytes (IEL). TCR alpha beta + IEL contain CD2- and CD2+ cells of approximately equal proportion, while TCR gamma delta + IEL are predominantly CD2-. The proliferative response of IEL to stimulation with an anti-CD3 mAb or with PMA plus ionomycin co-segregated with CD2 expression; the CD2+ subset proliferated vigorously under these conditions while the CD2- subset was much less responsive. The responding CD2+ IEL contained both TCR alpha beta + and TCR gamma delta + cells. However, activation of the CD2- IEL with anti-CD3 mAb resulted in only the expansion of TCR gamma delta + IEL, while activation with PMA plus ionomycin did not promote expansion of either the TCR alpha beta + or the TCR gamma delta + IEL. These findings parallel observations in the autoimmune lpr mouse, where massive numbers of peripheral TCR alpha beta + CD4-CD8- T cells that lack CD2 expression are also hyporesponsive to mitogenic stimulation. The apparent anergy of CD2- TCR alpha beta + IEL, as well as CD2- T cells from lpr mice, demonstrates that the absence of CD2 on TCR alpha beta + T lymphocytes co-segregates with nonresponsiveness.

Animals↗

Accelerated programmed cell death of MRL-lpr/lpr T lymphocytes.

MRL-lpr/lpr (lpr) mice develop a polyclonal accumulation of abnormal peripheral T lymphocytes, which bear surface alpha beta TCR, CD3, and the B220 isoform of CD45, but lack CD4, CD8, and CD2. These T cells have a constitutively phosphorylated CD3 zeta chain and manifest a defect in signal transduction that results in a lack of IL-2 production and proliferation. We investigated whether this signaling abnormality might contribute to their accumulation via a defect in T cell elimination in the periphery. T cell deletion occurs through a process of programmed cell death with DNA degradation, or apoptosis. Viable lymphocytes from lpr mice were found to undergo rapid programmed cell death in culture within 4 h without additional activation, which was not observed in lymphocytes from normal MRL-+/+ or C57BL/6-+/+ mice. Both nonmature B220+ and mature B220- T lymphocytes from lpr mice display this accelerated programmed cell death, indicating that this is a defect affecting all peripheral T lymphocytes in lpr mice. In vitro apoptosis of lpr T cells could be inhibited with PMA, a stimulator of protein kinase C. Thus, the massive accumulation of T lymphocytes in the lymphoid tissue of lpr mice is not due to a defect in their ability to undergo programmed cell death in vitro. The activation state of lpr T cells may contribute to their rapid degradation of DNA in vitro.

Animals↗

CD2 expression correlates with proliferative capacity of alpha beta + or gamma delta + CD4-CD8- T cells in lpr mice.

The T lymphocytes that accumulate in vast numbers in the lymphoid tissues of lpr/lpr (lpr) mice express a TCR-alpha beta that is polyclonally rearranged, and yet is devoid of surface CD4 or CD8 (CD4-8-) as well as CD2. lpr CD2- alpha beta + CD4-8- T cells exhibit an apparent block in signal transduction, in that when activated they produce little or no IL-2 and proliferate minimally in the absence of exogenous IL-2. In contrast to the predominant hyporesponsive alpha beta + CD4-8- T cells, we observe that a minor subset (1 to 2%) of lpr lymph node CD4-8- cells expresses a TCR-gamma delta and can proliferate upon activation with PMA and ionomycin in the absence of exogenous IL-2. Furthermore, these responsive gamma delta T cells express surface CD2. The functional and phenotypic distinctions of lpr gamma delta T cells led us to identify an analogous minor (4 to 10%) subset of alpha beta + CD4-8- cells in lpr thymus and lymph nodes that does express CD2. Similar to the gamma delta subset, these CD2+ alpha beta + CD4-8- cells are also capable of proliferation and IL-2 production. Thus the capacity for IL-2 production and proliferation by a small proportion of lpr CD4-8- T cells, either alpha beta + or gamma delta +, correlates with their expression of surface CD2. This correlation is supported by the observation that the lpr liver contains actively cycling alpha beta + CD4-8- lymphocytes that are strikingly enriched for CD2 expression. Consequently, unlike the vast proportion of abnormal lpr CD2- CD3+ CD4-8- cells, the CD2+ CD3+ CD4-8- T cells may not express the basic lpr defect, or else are not affected by its presence. These studies suggest that expression of the lpr abnormality may be restricted to a particular T cell lineage. This functional correlation with CD2 expression may be more broadly applicable to phenotypically similar subsets of normal thymocytes, and possibly peripheral tolerized T lymphocytes.

Animals↗

Diversity of rheumatoid synovial tissue T cells by T cell receptor analysis. Oligoclonal expansion in interleukin-2-responsive cells.

The synovitis of rheumatoid arthritis (RA) is characterized by infiltrates of CD4+ T lymphocytes. To determine the clonal diversity of these cells, we cloned T cells with interleukin-2 (IL-2), alone or with phytohemagglutinin (PHA), directly from actively inflamed synovial tissue obtained at synovectomy. A total of 205 clones from 4 specimens was analyzed for T cell receptor (TCR) gene rearrangements using Hind III and Eco RI digests with beta chain and gamma chain complementary DNA probes. A comparison of the TCR rearrangements enabled us to determine if the T cell clones arose from the same or different precursor cells. Most of the T cell clones (92%) had distinct TCR gene rearrangement patterns, indicating a unique clonal origin. However, a few clones (1 quadruplicate and 6 pairs) with identical TCR rearrangements were identified, and these clonal multiples were most commonly found in clones selected with IL-2 alone. Mass cultures were propagated with IL-2, alone or with PHA, and at each passage, cells were removed for TCR analysis. The later passages of the lines selected with IL-2 had oligoclonal TCR rearrangements, whereas no oligoclonal rearrangements were found in the PHA + IL-2-selected cell lines. The TCR rearrangements in the later passages of the IL-2 mass cultures were often identical to the TCR rearrangements that were found in the IL-2-derived clonal multiples. These findings indicate that while the majority of CD4+ T cells within the actively inflamed rheumatoid joint have diverse clonal origins, small numbers of clonal multiples and oligoclonal populations are present, and these cells may be enriched in an IL-2-responsive T cell subset.

Adult↗

Elevated production of interferon-gamma and interleukin 4 by mature T cells from autoimmune lpr mice correlates with Pgp-1 (CD44) expression.

The cell surface glycoprotein, Pgp-1 (CD44), has been shown to be a marker of murine memory T lymphocytes. When activated, Pgp-1hi memory T cells produce strikingly higher amounts of interferon-gamma (IFN-gamma) than naive Pgp-1lo T cells, yet both subsets make similar levels of interleukin (IL)2. Whereas Pgp-1hi cells represent only 20%-25% of peripheral T cells from most strains, this marker is expressed by the vast majority (greater than 90%) of T cells from autoimmune MRL mice homozygous for the lymphoproliferation (lpr) gene. The massive lymphadenopathy that develops in lpr/lpr mice is composed of both non-mature (CD4-CD8-) T cells as well as a greatly expanded number (up to 300-fold) of mature (CD4+CD8-,CD4-CD8+) T cells. Paralleling the expression of high levels of Pgp-1, we find that compared to normal mouse T cells, the lpr mature T lymphocyte subsets are also very high producers on a per cell basis of IFN-gamma and, for the CD4+ subset, IL 4. Increased concentrations of IFN-gamma and IL 4 produced by large numbers of lpr Pgp-1hi mature T cells could contribute to the autoimmune syndrome in MRL lpr/lpr mice through the effects of these cytokines on augmenting MHC class II expression and production of certain classes of antibodies.

Animals↗

Intact antigen receptor-mediated generation of inositol phosphates and increased intracellular calcium in CD4 CD8 T lymphocytes from MRL lpr mice.

The predominant T lymphocytes that accumulate in the peripheral lymphoid tissues of mice homozygous for the lpr gene bear the phenotype CD3+CD4-CD8-. By certain functional criteria these cells would appear to have impaired CD3-mediated signal transduction, in that they do not respond to alloantigen and produce little if any detectable IL-2 or other lymphokines. However, the signal pathway appears adequate for achieving other T cell functions, including induction of high affinity IL-2R, and thymic deletion. To clarify the basis of this seeming discrepancy, we examined transmembrane signal transduction in T cell subsets of lpr/lpr (lpr) and +/+ mice, as defined by increased [Ca2+]i and the generation of inositol phosphates (InsPs). Stimulation of lpr CD4-CD8- cells with anti-CD3 antibody produced prompt and sustained increases in the concentration of [C2+]i and in InsPs. Similar responses occurred in mature T cells from lpr and +/+ mice, except for the somewhat slower kinetics of their increased [Ca2+]i. In marked distinction to the anti-CD2-mediated response, Con A, even in high doses, could not stimulate any increase of [Ca2+]i in lpr CD4-CD8- cells, and only modest increases in InsPs. Mature T cells, whether of lpr or +/+ origin, yielded normal increased [Ca2+]i with Con A. The reason for the differences in signal transduction between anti-CD3 and Con A stimulation of lpr CD4-CD8- cells may relate to the absence of surface structures on these immature T cells that are required for activation by Con A but not by anti-CD3. The data demonstrate that the CD3 complex in lpr CD4-CD8- T cells can couple to phospholipase C to hydrolyze phosphoinositides. These activation properties of lpr CD4-CD8- T cells have interesting functional parallels to thymocytes at the time of thymic selection, as well as tolerance induction of mature T lymphocytes.

Animals↗