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Biomedical subjects

T S Kupper

Publications and source records attributed to T S Kupper.

At least 37 records · Page 2Linked to original sources

Distinct roles for B7 costimulation in contact hypersensitivity and humoral immune responses to epicutaneous antigen.

Productive interactions between B7-1 and B7-2 costimulatory molecules on dendritic cells (DC) and CD28 on T cells are thought to be critical for successful antigen presentation. Epicutaneous application of haptens induces both contact hypersensitivity (CHS), an inflammatory cutaneous response mediated by CD8+ T cells, and an anti-hapten antibody response mediated by CD4+ helper T cells. The role of B7 costimulation in the immune response to oxazolone (Ox) was analyzed using mice lacking either B7-1 (B7-1-/-), B7-2 (B7-2-/-), or both (Db-/-) of these costimulatory molecules. The absence of both B7-1 and B7-2 results in diminished CHS. This inhibition is largely overcome at higher hapten sensitizing doses indicating the presence of compensatory pathways. In contrast, anti-Ox IgG1 and IgG2a responses were not detected in the absence of both B7-1 and B7-2, even at high sensitizing doses, indicating an obligatory role of B7 costimulation in IgG class switching. B7-1 and B7-2 have overlapping functions in both CHS responses and anti-hapten response. B7-2-/- mice demonstrated a modestly reduced CHS response only at very low doses of Ox (0.05%), but responded normally at higher Ox doses, and B7-1-/- mice had CHS responses indistinguishable from those of wild-type mice. Similarly, anti-Ox IgG responses were comparable in wild-type, B7-1-/- and B7-2-/- mice. Taken together, these studies reveal distinct roles for B7 costimulation in response to epicutaneous antigens with an obligatory role for IgG class switching and an important, but nonessential role for CHS responses.

Animals↗

Endogenous neutralizing anti-IL-1 alpha autoantibodies in inflammatory skin diseases: possible natural inhibitor for over expressed epidermal IL-1.

Interleukin 1alpha (IL-1alpha) is thought to play a central role in inflammatory reactions of the skin. Its excessive production and discharge by keratinocytes has been implicated in psoriasis, bullous diseases and other skin diseases. In addition to the type 2 IL-1 receptor and the IL-1 receptor antagonist, anti-IL-1 antibody in human serum has been proposed as a potential means to down regulate systemic responses attributable to IL-1. However, the relationship of these antibodies to disease and particularly to disease pathogenesis is still unclear. To understand this relationship, we characterized the anti-IL-1 autoantibody in sera from various skin diseases. IL-1alpha and IL-1beta radioimmunoassay, and immuno-blotting study showed the existence of IL-1alpha autoantibody but not autoantibodies to IL-1beta or pro-IL-1beta. High titer of anti-IL-1alpha autoantibodies were detected in the sera from inflammatory skin diseases with epidermal injury, including psoriasis, palmoplantar pustulosis, pustular psoriasis, pemphigus and lichen planus. In contrast, few samples from non-epidermodestructive bullous pemphigoid, atopic dermatitis and healthy normal controls had autoantibodies. The titer of anti-IL-1alpha autoantibodies showed some relation to the clinical course of psoriasis and pemphigus. Anti-IL-1 autoantibody neutralized rhIL-1alpha in D10.G4 assay and inhibited receptor binding of FITC-rhIL-1alpha. Taken together present data, the keratinocyte derived IL-1alpha could be a source of autoantigen that provokes production of endogenous anti-IL-1alpha autoantibody, which may regulate IL-1alpha mediated cutaneous inflammation.

Adult↗

Cutaneous lymphocyte antigen is a specialized form of PSGL-1 expressed on skin-homing T cells.

T cells play a pathogenic role in many inflammatory and certain malignant skin diseases, including psoriasis, atopic and allergic contact dermatitis, and cutaneous T-cell lymphoma. Memory T cells that infiltrate the skin express a unique skin-homing receptor called cutaneous lymphocyte-associated antigen (CLA), a carbohydrate epitope that facilitates the targeting of T cells to inflamed skin. CLA is defined by both its reactivity with a unique monoclonal antibody, HECA-452, and its activity as a ligand for E-selectin, but the structure of the protein component of CLA has not previously been defined. Here we report that CLA is an inducible carbohydrate modification of P-selectin glycoprotein ligand-1 (PSGL-1), a known surface glycoprotein that is expressed constitutively on all human peripheral-blood T cells. Cultured peripheral-blood T cells can be differentiated into CLA-bearing cells, which bind both E-selectin and P-selectin, or CLA-negative cells, which bind P-selectin but do not bind E-selectin, suggesting that there is independent regulation of selectin-binding phenotypes. We propose that differential post-translational modification of a single cell-surface receptor, PSGL-1, mediated by fucosyltransferase VII, serves as a mechanism for regulating tissue-specific homing of memory T cells.

Antigens, Differentiation, T-Lymphocyte↗

IL-7 overexpression in transgenic mouse keratinocytes causes a lymphoproliferative skin disease dominated by intermediate TCR cells: evidence for a hierarchy in IL-7 responsiveness among cutaneous T cells.

IL-7 is a keratinocyte-derived lymphocyte growth factor critical for the development of gammadelta T cells including murine dendritic epidermal T cells (DETC). We derived transgenic mice that overexpress IL-7 in basal keratinocytes under the control of the human K14 promoter. These K14/IL-7 mice develop dermal and epidermal T cell infiltrates associated with alopecia. This lymphoproliferative skin disease is substantially more severe in mice homozygous for the K14/IL-7 transgene. Conventional DETC expressing a Vgamma5 Vdelta1 TCR are rare or absent among the cutaneous T cells in these mice. The T cells in the skin infiltrates of young K14/IL-7 mice are predominantly gammadelta T cells that express intermediate levels of TCR, are negative for E-cadherin, often lack expression of CD2, and include cells that coexpress NK1.1. T cells expressing intermediate levels of a TCR-alphabeta are also present in transgenic skin, and progressively increase in number as the mice age. Phenotypically similar intermediate gammadelta and alphabeta T cell subsets also constitute the major lymphocyte populations recovered from organ culture of normal mouse skin in the presence of IL-7, suggesting that the T cells that accumulate in the epidermis of K14/IL-7 mice are derived from precursors normally resident in skin. We conclude that intermediate TCR cells, some of which coexpress NK1.1, can be selectively expanded in skin under the influence of IL-7 produced locally. Our results also suggest that features of the epidermal microenvironment besides keratinocyte-derived IL-7 account for the normal predominance of Vgamma5 Vdelta1 DETC in mouse epidermis.

Animals↗

Human immunodeficiency virus-1 entry into purified blood dendritic cells through CC and CXC chemokine coreceptors.

Blood dendritic cells (DC) are susceptible to both macrophage (M) and T-cell line (T) tropic human immunodeficiency virus type 1. The CC chemokines RANTES, macrophage inflammatory protein-1alpha (MIP-1alpha), MIP-1beta, eotaxin, and, to a lesser extent, monocyte chemoattractant protein-1 (MCP-1) and MCP-4 blocked entry of M-tropic virus into blood DC. The CXC chemokine, SDF-1, a fusin (CXCR4 chemokine receptor) ligand, and an antifusin antibody inhibited DC entry by T-tropic virus. Purified blood DC contained CCR1, CCR2, CCR3, and CCR5 as well as the CXCR4 chemokine receptor RNA transcripts and high levels of fusin on the cell surface. The coexpression of multiple chemokine receptors offers a molecular mechanism to explain the permissiveness of DC for both M- and T-tropic viruses.

Chemokine CCL11↗

Keratinocyte expression of the type 2 interleukin 1 receptor mediates local and specific inhibition of interleukin 1-mediated inflammation.

Epidermal keratinocytes can express two types of interleukin 1 (IL-1) receptors: IL-1R1, which is active in signal transduction, and the less well characterized IL-1R2, which is incapable of transducing a signal and can be shed from cells. The binding of IL-1 in solution by IL-1R2 has been demonstrated, and it has been proposed to inhibit IL-1-mediated responses through this mechanism. We and others have reported that keratinocytes can be induced to express IL-1R2 both in vitro and in vivo, often under conditions that also favor IL-1 gene expression. We hypothesized that production of IL-1R2 by keratinocytes would be an efficient means to achieve local inhibition of IL-1-mediated responses without systemic consequences. To test this hypothesis, we have generated transgenic mice that constitutively express IL-1R2 on basal keratinocytes. Keratinocytes cultured from these animals shed the soluble form of the receptor into culture supernatants, and IL-1-inducible production of granulocyte/macrophage colony-stimulating factor was markedly inhibited. In vivo, acute cutaneous vascular leakage, as well as chronic inflammation induced by a well characterized IL-1-dependent stimulus, was significantly inhibited in IL-1R2 transgenic animals. In contrast, contact hypersensitivity was unaffected, suggesting that overexpression of IL-1R2 did not inhibit all types of inflammation globally. Finally, systemic injection of IL-1 induced equivalent levels of plasma IL-6 in IL-1R2 transgenic and nontransgenic mice, suggesting that the activity of the transgenic IL-1R2 remained predominantly local and did not influence systemic IL-1 responses. We conclude that tissue-specific production of IL-1R2 can mediate IL-1 antagonism in tissue microenvironments without systemic consequences. Our transgenic mice may be a useful tool for determining the degree to which different types of cutaneous inflammation depend on the IL-1 system.

Animals↗

Selectins, T-cell rolling and inflammation.

The selectins, a family of Ca(2+)-dependent lectins, are expressed on inflamed vascular endothelium and some leukocyte subsets, and mediate adhesive contacts between blood cells and vessel walls. These interactions are loose and reversible, operate under conditions of shear flow, and result in leukocyte rolling along the vessel wall. The structure of the selectins and their ligands makes them uniquely suited for supporting the type of bond formation and dissociation that must prevail in order for a cell to be able to roll under conditions of flow. Because rolling precedes (and appears to be essential for) the integrin-mediated firm arrest before extravasation in response to inflammatory or infectious stimuli, inhibition of selectin function has potential for anti-inflammatory therapy, but also presents some significant challenges because of the complexity of the processes involved.

Animals↗

Loss of cutaneous delayed hypersensitivity reactions in nevus anemicus. Evidence for close concordance of cutaneous delayed hypersensitivity and endothelial E-selectin expression.

BACKGROUND: The relationship of adhesion molecules in the dermis to immunologically mediated cutaneous inflammation can be understood by focusing on a serendipitous phenomenon: a lack of dermatitis within the margins of a nevus anemicus (NA) in generalized contact dermatitis. The expression and induction of endothelial and epithelial adhesion molecules with intradermally injected cytokines were investigated. OBSERVATIONS: Nevus anemicus without dermatitis lacked histopathological changes consistent with inflammatory cellular infiltration. The surrounding skin of the dermatitic lesion expressed HLA-DR, intercellular adhesion molecule-1 (ICAM-1), vascular cell adhesion molecule 1, and E-selectin on endothelial cells, and HLA-DR and ICAM-1 in the epidermis. However, the skin of the NA lacked endothelial E-selectin and epidermal HLA-DR and ICAM-1 expression. Interferon gamma, injected intradermally, induced endothelial and epidermal HLA-DR and ICAM-1 expression in the NA and surrounding normal skin. While interferon gamma strongly induced E-selectin expression on endothelial cells in normal skin, it failed to induce endothelial E-selectin expression in the NA. CONCLUSIONS: This study suggests that vessels in the NA do not respond normally to proinflammatory cytokines, at least at the level of E-selectin expression. The absence of keratinocyte ICAM-1 and HLA-DR expression in the NA lesion in contact dermatitis is likely caused by the absence of infiltrating lymphocytes, rather than by the intrinsic unresponsiveness of keratinocytes to interferon gamma. Among the endothelial cell adhesion molecules in delayed hypersensitivity, E-selectin appears to be indispensable in recruiting circulating T lymphocytes to the skin.

Antigens, CD↗

Inflammatory and hyperproliferative skin disease in mice that express elevated levels of the IL-1 receptor (type I) on epidermal keratinocytes. Evidence that IL-1-inducible secondary cytokines produced by keratinocytes in vivo can cause skin disease.

Interleukin (IL)-1 induces a cascade of secondary cytokines in a large number of cell types in vitro, including monocytes, fibroblasts, synovial cells, and keratinocytes. Although it has been proposed that autocrine or paracrine activation of such cells by IL- 1 in situ could orchestrate a local inflammatory response, formal proof for such an hypothesis has been lacking. In an attempt to lower the threshold for secondary cytokine production in these cells in response to IL-1, we have generated transgenic mice (designated IR10) which overexpress functional type 1 IL-1 receptor in basal layer of epidermis keratinocytes. As predicted, keratinocytes from these animals were substantially more responsive to exogenous IL-1 than nontransgenic keratinocytes when stimulated in vitro. When challenged with known inducers of keratinocyte IL-1 synthesis and release, skin of IR10 mice exhibited an exaggerated inflammatory response, characterized by epidermal hyperplasia and an acute dermal inflammatory cell infiltrate. In this setting, the secondary epidermal cytokines gro-alpha and GM-CSF were strongly induced in transgenic epidermis but not in control skin. To confirm that these changes were indeed related to IL-1 mediated activation pathways, IR10 mice were crossed to a distinct line of transgenic mice that overexpress 17-kD IL-l alpha in basal keratinocytes. Double transgenic mice derived from this cross breeding experiment developed spontaneous inflammation of the skin, similar in appearance to that induced by PMA, both histologically and macroscopically, and distinct from that seen in either parental strain spontaneously. Furthermore, secondary cytokines were more strongly induced in the double transgenic than in either parental strain. These findings conclusively demonstrate the potential for functional autocrine pathways of keratinocyte activation mediated by IL-1 alpha in vivo, and suggest that level of expression of type 1 IL-1 receptor may function as a significant control point in physiologic IL-1 mediated autocrine pathways.

Animals↗

Constitutive expression of B7-1 (CD80) on mouse keratinocytes does not prevent development of chemically induced skin papillomas and carcinomas.

Expression of the B7-1 (CD80) costimulatory molecule in a variety of tumor cell lines leads to an enhanced CD8+ T cell response to tumor Ags. We used transgenic mice constitutively expressing B7-1 on keratinocytes (K14/B7-1 line) to determine whether keratinocyte B7-1 expression would inhibit the development of papillomas and carcinomas following two-stage chemical carcinogenesis in skin. FVB inbred mice carrying the K14/B7-1 transgene and controls were initiated with 25 micrograms of 7,12-dimethylbenz[a]anthracene and promoted weekly with 5 micrograms of 12-O-tetradecanoylphorbol-13-acetate for 20 wk. Expression of the B7-1 transgene did not result in statistically significant decreases in the mean number of papillomas or carcinomas compared with controls. The incidence of carcinomas in both transgenic and control mice reached 90% or greater by 60 wk after initiation. Carcinoma cell lines established from the K14/B7-1 mice maintained expression of B7-1 and Kq. These B7-1 expressing carcinomas grew progressively following intradermal injection into syngeneic FVB mice, further demonstrating their inability to evoke protective tumor immunity. These same carcinoma cell lines were rapidly rejected by minor alloantigen-mismatched SWR mice, confirming their susceptibility to immune effector mechanisms. The failure of constitutive B7-1 expression on keratinocytes to prevent the growth of squamous cell papillomas and carcinomas may reflect the limited immunogenicity of tumors arising after initiation-promotion carcinogenesis. Our results in this transgenic model system are further evidence that B7-1 gene therapy alone may not be sufficient to induce protective immunity to some types of tumors.

Animals↗

Immunity at the surface: homeostatic mechanisms of the skin immune system.

The coordinated function of multiple epidermal and dermal cell populations allows the skin immune system to respond rapidly and effectively to a wide variety of insults occurring at the interface of the organism and its environment. Keratinocytes are the first line of defense in the skin immune system, and keratinocyte-derived cytokines are pivotal in mobilizing leukocytes from blood and signaling other cutaneous cells. Cytokine-mediated cellular communication also enables dermal fibroblasts and endothelial cells lining the cutaneous vasculature to participate in immune and inflammatory responses. Skin is an important site for antigen presentation, and both epidermal Langerhans cells and dermal dendritic cells play pivotal roles in T cell-mediated immune responses to antigens encountered in skin. Proinflammatory signaling pathways are necessarily balanced by a variety of regulatory pathways that help maintain the homeostatic functioning of the skin immune system.

Animals↗

HIV-infected Langerhans cells constitute a significant proportion of the epidermal Langerhans cell population throughout the course of HIV disease.

Human immunodeficiency virus (HIV) is known to infect Langerhans cells, but controversy still exists about the occurrence of HIV-infected Langerhans cells in the skin of HIV-infected individuals and about the density of epidermal Langerhans cells during the course of HIV disease. In this study, epidermal Langerhans cell population densities were analyzed quantitatively in serial biopsies from two burn patients acquired over an 11-y period following infection with HIV from transfusions received during their acute treatment. At each biopsy time point, the density of epidermal Langerhans cells and the proportion that were infected with HIV were analyzed by immunostaining. In both patients, skin grafts were slow to repopulate with Langerhans cells and did not attain normal Langerhans cell densities until about 2 y after grafting. Thereafter, Langerhans cell densities remained within normal limits with the exception of six biopsies at random times that showed a supernormal number of epidermal Langerhans cells. HIV-infected Langerhans cells were first detected at about 2 y post-infection and comprised about one-third of the Langerhans cell population. At subsequent times, HIV p24-stained Langerhans cells were identified in most biopsies and typically constituted about one third to one half of the total Langerhans cell population. The findings show that HIV-bearing Langerhans cells constitute a significant proportion of the epidermal Langerhans cell population over long periods of asymptomatic disease but are unevenly distributed throughout the skin. Normal population densities of epidermal Langerhans cells are maintained for years, although transient increases may occur randomly.

Burns↗

Direct binding of F actin to the cytoplasmic domain of the alpha 2 integrin chain in vitro.

The transmembrane integrins have been shown to interact with the cytoskeleton via noncovalent binding between cytoplasmic domains (CDs) of integrin beta chains and various actin binding proteins within the focal adhesion complex. Direct or indirect integrin alpha chain CD binding to the actin cytoskeleton has not been reported. We show here that actin, as an abundant constituent of focal adhesion complex proteins isolated from fibroblasts, binds strongly and specifically to alpha 2 CD, but not to alpha 1 CD peptide. Similar specific binding to alpha 2 CD peptide was seen for highly purified F actin, free of putative actin-binding proteins. The bound complex of actin and peptide was visualized directly by coprecipitation, and actin binding was abrogated by removal of a five amino acid sequence from the alpha 2 CD peptide. Our findings may explain the earlier observation that, while integrins alpha 2 beta 1 and alpha 1 beta 1 both bind to collagen, only alpha 2 beta 1 can mediate contraction of extracellular collagen matrices.

Actins↗

Inflammatory skin disease in transgenic mice that express high levels of interleukin 1 alpha in basal epidermis.

Resting epidermal keratinocytes contain large amounts of interleukin 1 (IL-1), but the function of this cytokine in the skin remains unclear. To further define the role of IL-1 in cutaneous biology, we have generated two lines of transgenic mice (TgIL-1.1 and TgIL-1.2) which overexpress IL-1 alpha in basal keratinocytes. There was high-level tissue-specific expression of transgene mRNA and protein and large quantities of IL-1 alpha were liberated into the circulation from epidermis in both lines. TgIL-1.1 mice, which had the highest level of transgene expression, developed a spontaneous skin disease characterized by hair loss, scaling, and focal inflammatory skin lesions. Histologically, nonlesional skin of these animals was characterized by hyperkeratosis and a dermal mononuclear cell infiltrate of macrophage/monocyte lineage. Inflammatory lesions were marked by a mixed cellular infiltrate, acanthosis, and, in some cases, parakeratosis. These findings confirm the concept of IL-1 as a primary cytokine, release of which is able to initiate and localize an inflammatory reaction. Furthermore, these mice provide the first definitive evidence that inflammatory mediators can be released from the epidermis to enter the systemic circulation and thereby influence, in a paracrine or endocrine fashion, a wide variety of other cell types.

Animals↗

Inducible expression of type 2 IL-1 receptors by cultured human keratinocytes. Implications for IL-1-mediated processes in epidermis.

Two species of cell surface receptor for IL-1 (IL-1R) have been characterized. Only one of these, the type 1 IL-1R, transduces a signal after ligand binding. Whereas mRNA for the nonsignal transducing type 2 IL-1R seems to have a broad tissue distribution, functional type 2 IL-1R has been carefully studied only in leukocytes and related cell lines. Because normal human keratinocytes, which are IL-1 alpha-producing epithelial cells, inducibly express large numbers of IL-1R, we have studied their putative type 1 and type 2 IL-1R at the level of RNA, protein, and biologic function. At the level of function, gene expression of the IL-1-inducible cytokine granulocyte-macrophage-CSF by keratinocytes was mediated entirely by low numbers of type 1 IL-1R, although type 2 IL-1R were more numerous on both resting and activated keratinocytes. Type I IL-1R mRNA was detected only at very low levels, whereas a marked induction of type 2 IL-1R mRNA was readily observed in activated keratinocytes. A sensitive and specific ELISA demonstrated shed type 2 IL-1R in the conditioned medium of IFN-gamma or PMA-activated keratinocytes. Keratinocyte type 2 IL-1R bound IL-1 alpha with higher affinity (Kd approximately 3 x 10(-9) M) than type 2 IL-1R on leukocytes; however, the intracellular epithelial form of the IL-1R antagonist was bound 100-fold less avidly. These findings demonstrate that a normal nontransformed epithelial cell may express large numbers of the nonsignal transducing type 2 IL-1R that binds IL-1 with high affinity and can be shed into the pericellular environment. This receptor may function as an IL-1 antagonist in autocrine, juxtacrine, and paracrine cutaneous pathways.

Base Sequence↗

Acutely infected Langerhans cells are more efficient than T cells in disseminating HIV type 1 to activated T cells following a short cell-cell contact.

Most human immunodeficiency virus type 1 (HIV-1) infections involve sexual contact and virus passage across mucosal surfaces. While Langerhans cells (LCs) and dendritic cells (DCs) have been implicated in mucosal infection, their role is undefined. Here we demonstrate that acutely HIV-1-infected LCs and DCs effectively transmit virus to uninfected, activated T cells. Cocultivation of these cells results in massive virus production that requires a short cell-cell contact; as little as 30 min contact time is sufficient for HIV-1-pulsed DCs to infect their target T cells. Furthermore, surface-bound virus inactivation by trypsin does not significantly decrease the efficiency of virus transmission by LC/DCs, suggesting rapid internalization of virus. This effective virus transfer by infected LCs and blood-derived DCs requires prior activation of T cells. Surprisingly, cocultivation of acutely infected T cells with uninfected, activated target T cells results only in low virus production, even with T cell-tropic virus. We conclude that LCs and DCs are not only important targets of HIV-1 infection, but may also play a key role in the early dissemination of virus to T cells they encounter in skin or lymphoid tissue.

Cells, Cultured↗