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Biomedical subjects

K M Murphy

Publications and source records attributed to K M Murphy.

At least 109 records · Page 6Linked to original sources

Differential activation of antigen-stimulated suicide and cytokine production pathways in CD4+ T cells is regulated by the antigen-presenting cell.

Stimulation of the TCR of activated, mature T cells by an APC produces a spectrum of functional responses. Most of those responses positively promote immunity and inflammation. However, death of the responding T cell, which would limit subsequent inflammation, can also result from such stimulation. We compare the Ag threshold necessary to promote inflammation through cytokine production with the Ag threshold necessary to limit inflammation through T cell death. These two responses are independently regulated by the APC and this regulation is selective for both different APC products and different T cell subsets. The costimulator B7 selectively decreases the Ag threshold for cytokine production in Th1 cells with no effect on the Ag threshold for Th1 death. B7 has no effect on the Th2 Ag threshold for cytokine production or death. In contrast, IFN-gamma negatively modulates a macrophage product that selectively increases the threshold of Ag necessary to stimulate death in Th2 cells, but has no effect on cytokine production by Th2 cells or cytokine production or death of Th1 cells. This selective regulation of cytokine production and T cell death may play an important role in both shaping the quality of a given immune response and in providing a general mechanism for the regulation of the immune response by limiting inflammation and through peripheral deletion of inappropriate T cell specificities.

Animals↗

Development of TH1 CD4+ T cells through IL-12 produced by Listeria-induced macrophages.

Development of the appropriate CD4+ T helper (TH) subset during an immune response is important for disease resolution. With the use of naïve, ovalbumin-specific alpha beta T cell receptor transgenic T cell, it was found that heat-killed Listeria monocytogenes induced TH1 development in vitro through macrophage production of interleukin-12 (IL-12). Moreover, inhibition of macrophage production of IL-12 may explain the ability of IL-10 to suppress TH1 development. Murine immune responses to L. monocytogenes in vivo are of the appropriate TH1 phenotype. Therefore, this regulatory pathway may have evolved to enable innate immune cells, through interactions with microbial pathogens, to direct development of specific immunity toward the appropriate TH phenotype.

Animals↗

Restoration of T cell development in RAG-2-deficient mice by functional TCR transgenes.

Introduction of TCR alpha transgene, TCR beta transgene, or both into RAG-2-/-mice differentially rescues T cell development. RAG-2-/- mice have small numbers of TCR-CD4-CD8-(double negative, DN) thymocytes that express CD3 gamma delta epsilon and zeta proteins intracellularly. Introduction of a TCR beta transgene, but not a TCR alpha transgene, into the RAG-2-/- background restored normal numbers of thymocytes. These cells were CD4+CD8+ (double positive, DP) and expressed small amounts of surface TCR beta chain dimers in association with CD3 gamma delta epsilon but not zeta. RAG-2-/- mice that expressed alpha and beta TCR transgenes developed both DP and single positive thymocytes. Thus, the TCR beta subunit, possibly in association with a novel CD3 complex, participates in the DN to the DP transition.

Animals↗

Separation of CD4+ functional responses by peptide dose in Th1 and Th2 subsets expressing the same transgenic antigen receptor.

CD4+ T cells from alpha beta-TCR transgenic mice were used to explore the effect of antigen dose on various functional activities. This transgenic system provides for a source of antigen-specific T cells with the same TCR which can develop into Th1 and Th2 phenotypes under controlled conditions. Of particular interest was to determine if detachment of adherent targets from their substrate could be separated from other functional activities by either antigen dose or functional subset. Using this model, we have found that (a) Th1 and Th2 phenotypes exhibit a similar peptide dose-dependent pattern of detachment and lysis, although Th2 are generally less lytic on both fibroblast and lymphoma targets; (b) detachment and lysis can be dissociated from cytokine production by low peptide doses; (c) detachment and lysis can be physiologically as well as temporally and pharmacologically uncoupled as most targets recovered after detachment by Th2 effectors retain their capacity to proliferate.

Animals↗

Pathogen-induced Th1 phenotype development in CD4+ alpha beta-TCR transgenic T cells is macrophage dependent.

We used an ovalbumin (OVA)-specific alpha beta-TCR transgenic mouse system to examine the cellular basis of CD4+ T helper (Th) phenotype development in vitro. Heat-killed Listeria monocytogenes (HKLM) strongly promotes the in vitro development of a Th1 phenotype in OVA-specific transgenic T cells. Listeria monocytogenes effects to promote the Th1 phenotype are antigen presenting cell (APC) dependent and occur when splenic APCs, but not the B cell hybridoma TA3, are present during T cell activation. However, addition of FACS-sorted macrophages to TA3 activated cultures restores the ability of Listeria to induce Th1 development. This effect on T cell development does not require MHC-restricted antigen presentation by macrophages, but may act through soluble factors. Although the presence of interferon gamma is necessary for Listeria induction of Th1 development, IFN-gamma alone is insufficient to induce Th1 development. Furthermore, Listeria induction of the Th1 phenotype does not require several known products of activated macrophages, including interleukin-1 (IL-1), tumor necrosis factor (TNF-alpha), IL-6, or nitric oxide. Although transforming growth factor-beta (TGF-beta) may mediate some Listeria effects, it does not fully reconstitute Listeria effects to promote Th1 development. In summary, host interactions with bacterial pathogens can affect the development of specific Th subsets, allowing innate immune cells to direct development of specific immune phenotype. For Listeria monocytogenes, the induction of the Th1 phenotype may involve a novel cytokine distinct from several known factors produced by activated macrophages.

Animals↗

Dendritic cells and macrophages are required for Th1 development of CD4+ T cells from alpha beta TCR transgenic mice: IL-12 substitution for macrophages to stimulate IFN-gamma production is IFN-gamma-dependent.

We have examined the antigen presenting cell (APC) requirements for primary T cell activation and T helper (Th) cell phenotype differentiation using naive CD4+ T cells from alpha beta TCR transgenic mice. Purified dendritic cells were the principal cell required for induction of primary ovalbumin peptide specific T cell activation and clonal expansion. However, dendritic cells did not induce differentiation of T cells toward Th1 or Th2 phenotype. Addition of IL-4 during primary dendritic cell stimulations of T cells resulted in the development of a Th2 phenotype which produced high levels of IL-4 during secondary and tertiary stimulation. In contrast, development of Th1 cells producing high levels of IFN-gamma could not be induced with dendritic cells alone but required the addition of appropriately activated macrophages. Addition of splenic or peritoneal B cells did not induce Th1 development. Activated splenic macrophages induced Th1 development via a non-MHC restricted mechanism. Thus, requirements for induction of proliferation of naive CD4+ T cells are distinct from those directing Th1 phenotype development. IL-12 could replace the requirement for macrophages to induce Th1 development when T cells were activated with dendritic cells. Furthermore, this IL-12 mediated development of Th1 cells producing high levels of IFN-gamma was dependent on IFN-gamma.

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Effects of the tat and nef gene products of human immunodeficiency virus type 1 (HIV-1) on transcription controlled by the HIV-1 long terminal repeat and on cell growth in macrophages.

The RAW264 murine macrophage cell line was used as a model to examine the role of the tat and nef gene products in the transcription regulation of the human immunodeficiency virus type 1 (HIV-1) long terminal repeat (LTR) in macrophages. Contrary to claims that the activity of the HIV-1 LTR responds poorly in rodent cells to trans activation by the viral tat gene product, cotransfection of RAW264 cells with a tat expression plasmid in transient transfection assays caused a > 20-fold increase in reporter gene expression that was inhibited by mutations in the TAR region. RAW264 cells stably transfected with the tat plasmid displayed similarly elevated HIV-1 LTR-driven reporter gene activity. By contrast to previous reports indicating a negative role for nef in HIV transcription, cotransfection of RAW264 cells with a nef expression plasmid trans activated the HIV-1 LTR driving either a chloramphenicol acetyltransferase or a luciferase reporter gene. The action of nef was specific to the LTR, as expression of nef had no effect on the activity of the simian virus 40, c-fms, urokinase plasminogen activator, or type 5 acid phosphatase promoter. trans-activating activity was also manifested by a frameshift mutant expressing only the first 35 amino acids of the protein. The effects of nef were multiplicative with those of tat gene product and occurred even in the presence of bacterial lipopolysaccharide, which itself activated LTR-directed transcription. Examination of the effects of selected mutations in the LTR revealed that neither the kappa B sites in the direct repeat enhancer nor the TAR region was required as a cis-acting element in nef action. The action of nef was not species restricted; it was able to trans activate in the human monocyte-like cell line Mono Mac 6. The presence of a nef expression cassette in a neomycin phosphotransferase gene expression plasmid greatly reduced the number of G418-resistant colonies generated in stable transfection of RAW264 cells, and many of the colonies that were formed exhibited very slow growth. The frameshift mutant was also active in reducing colony generation. Given the absence of any effect of the frameshift mutation on nef function, its actions on macrophage growth and HIV transcription are discussed in terms of the role of the N-terminal 30 amino acids and of stable secondary structures in the mRNA.

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Identification of cis-acting regulatory elements controlling interleukin-4 gene expression in T cells: roles for NF-Y and NF-ATc.

Activity of the murine interleukin-4 (IL-4) promoter was localized to several cis-acting elements present within the first 300 bp from the transcriptional initiation site. Five repeated elements, P0 to P4, that share the common consensus ATTTTCCNNT were located between -40 and -250, and each was shown to interact with the T-cell-specific factor NF(P). These distinct P sites appear functionally interchangeable and cooperatively confer cyclosporin A-sensitive and ionomycin-inducible promoter activity. NF(P) may be closely related to the cytoplasmic component of NF-AT (nuclear factor of activated T cells), a T-cell-specific factor essential for IL-2 gene transcription, as judged from indistinguishable molecular weights and protease fragmentation patterns of UV-photolabeled factors. Also, we identified an element in the IL-4 promoter with homology to the Y box common to all major histocompatibility complex class II gene promoters. Our data show that the IL-4 promoter Y box -114CTGATTGG-107 significantly enhances overall promoter activity, since point mutations within this element diminish promoter activity by 85%. The factor binding this region is indistinguishable from the cloned nuclear factor NF-Y, as judged from interactions with specific anti-NF-Y monoclonal and polyclonal antibodies. Last, we point out the presence of two sites that share sequence identity to the OAP region of the ARRE-1 site within the IL-2 promoter (K. S. Ullman, W. M. Flanagan, C. A. Edwards, and G. R. Crabtree, Science 254:558-562, 1991). These regions, -85GTGTAATA-78 and -245GTGTAATT-238, reside adjacent to the NF(P) binding sites P1 and P4 and bind a distinct nuclear factor.

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Cellular and peptide requirements for in vitro clonal deletion of immature thymocytes.

Thymocytes from DO10 T-cell-receptor transgenic mice undergo apoptosis, or programmed cell death, when chicken ovalbumin-(323-339) peptide is administered in vivo. Using DO10 mice thymocytes, we have now developed a simple in vitro model system that recapitulates the in vivo clonal-deletion process. When transgenic thymocytes were cocultured with fibroblasts, B cells, or thymic nurse cell lines (all bearing I-Ad) in the presence of chicken ovalbumin-(323-339), deletion of the transgenic TCR+CD4+CD8+ thymocytes was seen within 8-20 hr. Thymocytes designed to bear I-Ad on their surface could mediate the deletion themselves. Thus, thymocyte clonal deletion entirely depends on the stage at which the thymocytes are vulnerable to the onset of apoptosis, rather than on the nature of the peptide antigen-presenting cells. Furthermore, thymic nurse cell line TNC-R3.1 could cause deletion, strongly suggesting that some thymic epithelial/stromal components are potentially capable of participating in negative selection. In all cases examined, little deletion could be induced at a peptide concentration less than 10 nM, thus defining the minimum amount of peptide antigen required for negative selection. The peptide-dependent in vitro negative-selection system will allow further dissection of the molecular and cellular processes involved in clonal deletion due to apoptosis in the thymus.

Amino Acid Sequence↗

Differential regulation of T helper phenotype development by interleukins 4 and 10 in an alpha beta T-cell-receptor transgenic system.

To address the mechanisms controlling T helper (Th) phenotype development, we used DO10, a transgenic mouse line that expresses the alpha beta T-cell receptor from an ovalbumin-reactive T hybridoma, as a source of naive T cells that can be stimulated in vitro with ovalbumin peptide presented by defined antigen-presenting cells (APCs). We have examined the role of cytokines and APCs in the regulation of Th phenotype development. Interleukin 4 (IL-4) directs development toward the Th2 phenotype, stimulating IL-4 and silencing IL-2 and interferon gamma production in developing T cells. Splenic APCs direct development toward the Th1 phenotype when endogenous IL-10 is neutralized with anti-IL-10 antibody. The splenic APCs mediating these effects are probably macrophages or dendritic cells and not B cells, since IL-10 is incapable of affecting Th phenotype development when the B-cell hybridoma TA3 is used as the APC. These results suggest that early regulation of IL-4 and IL-10 in a developing immune response and the identity of the initiating APCs are critical in determining the Th phenotype of the developing T cells.

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Murine AIDS superantigen reactivity of the T cells bearing V beta 5 T cell antigen receptor.

A B cell line, B6-1710, that expresses the defective virus known to induce murine AIDS stimulates a large fraction of nonprimed splenic T cells. Analysis of the T cell population responding to the B6-1710 for TCR V beta-chain usage revealed that, in addition to the previously reported V beta 5-chain-positive T cells, T cells bearing V beta 11 and V beta 12 are also specifically enriched. We have established V beta 5+ T cell lines, clones, and hybridomas expressing identical TCR with different CD4/CD8 phenotypes and demonstrated that T cell reactivity to B6-1710 is, although not absolute, dependent on the presence of CD4 molecules. Further analysis of T cell hybridomas with known J beta-chain usage revealed that D beta- and J beta-chain usage do not play crucial roles in T cell reactivity to B6-1710 B cells. However, T cell hybridomas derived from TCR-V beta gene transgenic mice were found to be heterogeneous for their reactivity to B6-1710, suggesting that the V alpha-chains associating with the transgenic V beta-chain determine T cell responsiveness to B6-1710. These data clearly demonstrate that T cell reactivity to a murine AIDS virus expressing B cell line resembles that previously reported for Mls-like superantigens.

Animals↗

Effects of dietary protein and salt on rat renal osmolytes: covariation in urea and GPC contents.

Renal medullary cells contain high levels of (glycine) betaine, glycerophosphorylcholine (GPC), myo-inositol, and sorbitol. Two functions of these have been proposed: 1) that they are compatible osmolytes which regulate cell volume (against high external NaCl) without inhibiting proteins and 2) that methylamines (GPC and betaine) are counteracting osmolytes which stabilize proteins against perturbation from high renal urea. As a test of the latter, osmolyte contents in kidney medullas were measured in rats subjected to three types of dietary manipulation: 1) diets with protein and NaCl contents varied oppositely, 2) diets with a constant low NaCl and varied protein content, and 3) a low-calorie diet. With low-protein and low-calorie diets, only renal contents of urea, GPC, and inositol decreased; betaine and sorbitol contents increased such that contents of total nonurea organic osmolytes remained constant. With high-protein diets, only renal contents of sodium, urea, and GPC increased, with the latter giving total organic osmolytes a consistent correlation to sodium. Across all diets, the only consistent (linear) correlations were 1) between urea and GPC contents, supporting previous suggestions that GPC is the major counteractant to urea, and 2) between total organic osmolytes and sodium (but not urea) contents, as predicted by the compatible osmolytes hypothesis.

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Constitutive expression of the urokinase plasminogen activator gene in murine RAW264 macrophages involves distal and 5' non-coding sequences that are conserved between mouse and pig.

The 5' flanking regions of the mouse and pig urokinase plasminogen activator (uPA) genes were sequenced and sequence homology interrupted by repeat elements was found to extend to -4.6kb in pig and -6.6kb in mouse. A transient transfection procedure was devised for the murine macrophage cell line RAW264. Pig uPA promoter-CAT constructs were more active than mouse constructs in this assay. This contrast may involve sequence differences within 100 bp of the transcription start site. The selective deletion of distal regions of the promoter (greater than 2.6 kb upstream), and of a conserved element, 5'-AGGAGGAAATGAGG-TCA-3' around -2 kb greatly reduced the activity of reporter constructs in RAW264 cells. Electrophoretic mobility shift assays using the latter sequence identified a single nuclear protein complex. This element has been referred to as PEA3/AP1-like, but the complex did not comigrate with either AP1 or known proteins that bind polypurines (including the macrophage-specific factor PU-1) and was not competed by AP1 or polypurine oligonucleotides. uPA promoters contain multiple AP1 and AP2-like DNA sequences, which were recognised by nuclear proteins expressed constitutively in RAW264 cells. They also contain multiple binding sites for NF kappa B but activated NF kappa B was not expressed in RAW264 cells. The conserved, transcribed 5' non-coding sequences were also required for maximal gene expression. Hence, the uPA promoter contains multiple weak cis-acting elements distributed over 7.0 kb 5' to the translation start site.

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Vernier acuity of normal and visually deprived cats.

This study examines the relationship between grating and vernier acuity in cats that were either normally reared, unilaterally amblyopic as a result of a period of monocular deprivation, or bilaterally amblyopic resulting from a period of reverse occlusion followed by binocular visual experience. Vernier acuity was assessed on a jumping stand by use of a vernier-grating stimulus similar to that devised for use with human infants. The vernier thresholds for normal cats were 1.2-1.3 min arc, values that were approx. 6 times better than their grating acuity, and hence may represent a true hyperacuity. By contrast, the vernier acuity of the visually deprived cats were substantially below normal (19-83 min arc). The vernier thresholds for the deprived eye of the monocularly deprived cat and both eyes of the reverse occluded cats had fallen to the point where they were at best equal, and sometimes worse than the corresponding grating acuity. This pattern of results is similar to those observed in some types of human amblyopia, where vernier acuity also no longer represents a hyperacuity, and where in severe cases the thresholds may be worse than grating acuity.

Amblyopia↗

Role of MHC and antigens in T-cell development.

The role of self-peptides in influencing the development of the T-cell repertoire has been the focus of recent studies. The findings suggest that the recognition of self-peptides bound to MHC proteins in the thymus is part of the thymic self-recognition process that results in selective maturation, or positive selection of T cells.

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