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Amnion membrane epithelial cells express class I HLA and contain class I HLA mRNA.

Amnion epithelial cells in membranes from term deliveries, which have been reported not to express histocompatibility Ag, were evaluated for HLA by using an avidin-biotin immunoperoxidase staining system and for class I HLA mRNA by Northern blotting and in situ hybridization. There were three major findings from these studies. 1) Amnion cells frequently expressed class I HLA. Three mAb to monomorphic determinants of class I HLA were used: 61D2, PA2.6, and W6/32. 61D2 identified 1 of 8 fresh amnion membranes as class I positive whereas PA2.6 identified 4/8 and W6/32 identified 5/8. 2) Amnion cells contained class I HLA mRNA. RNA extracted from amnion membranes hybridized to a class I HLA probe (pHLA1.1) in Northern blotting. In situ hybridization procedures with pHLA1.1 showed that essentially all amnion cells contained class I HLA mRNA. 3) Levels of class I HLA mRNA in amnion cells could be modulated. Exposure of amnion explants to medium containing IFN-gamma enhanced levels of class I HLA mRNA in amnion cells, whereas epidermal growth factor diminished those levels. The results suggest that amnion cells transcribe class I HLA genes and are capable of synthesizing class I H chains but that expression may be modulated by extrinsic regulatory molecules.

Amnion

Effects of head position on intraoral pressures in Class I and Class II adults.

Variations in resting lip and tongue pressures and their relationship to alterations in head posture were investigated in subjects with Class I and Class II dental and skeletal morphology. Intraoral pressures were measured by means of transducers mounted in plastic carriers, customized for each subject from dental casts. Transducers were placed in the carriers to measure posterior lingual, anterior lingual, and labial pressures along the mandibular dentition. Ten Class I subjects and eleven Class II subjects participated. Pressures were recorded in natural head position, with 20 degrees of head extension and 20 degrees of head flexion. The Friedman two-way analysis of variance using ranked data was used to compare transducer location and head posture within skeletal classes. Anterior pressures were found to differ from posterior pressures in both classes. In Class I subjects, posterior lingual pressures were consistently different from labial pressures in all head positions. In Class II subjects, posterior lingual pressures differed from labial pressures in flexion and natural head positions, and from anterior lingual pressures in flexion and natural head positions. No increase in labial pressures with head extension was found in either Class I or Class II samples. Since every subject showed pressure changes with changes in head position, the influence of posture should be considered in studies on facial morphology and dental equilibrium.

Adolescent

Altered binding of regulatory factors to HLA class I enhancer sequence in human tumor cell lines lacking class I antigen expression.

Class I antigens encoded in the major histocompatibility complex (MHC) (HLA in man, H-2 in the mouse) play a key role in the recognition of target cells by cytolytic T lymphocytes. Tumor cells frequently do not express class I MHC molecules, which strongly suggests that down-regulation of the latter facilitates escape of tumor cells from immune surveillance. The expression of class I MHC genes is tightly regulated. An enhancer element, conserved in the promoters of mouse and human MHC genes, has been shown to be important for mouse class I MHC gene expression. At least two related regulatory factors (KBF1 and NF-kappa B) bind to this regulatory element. We have analyzed the binding of these factors in cellular extracts of 23 human tumor cell lines displaying various levels of class I mRNA and surface expression. In this panel, combined deficiency of KBF1- and NF-kappa B-like DNA-binding activities was frequent among the class I-negative cell lines and correlated with the absence of class I mRNA. A few cell lines that lack KBF1 binding activity still display NF-kappa B-like activity and express normal levels of MHC class I mRNA. These results suggest (i) that, in the absence of KBF1, NF-kappa B or a related factor promotes MHC class I gene transcription; and (ii) that a combined defect in KBF1/NF-kappa B DNA-binding activity can cause a pleiotropic defect in class I gene expression, which may facilitate tumor progression.

Antibodies, Monoclonal

Biochemical analysis of class I and class II MHC antigens in cynomolgus macaques by one-dimensional isoelectric focusing.

To obtain a better estimate of major histocompatibility complex (MHC) polymorphism in the Old World macaque, Macaca fascicularis, class I and class II MHC proteins from 42 animals were analyzed by sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) and one-dimensional isoelectric focusing (1D-IEF). The panel represented both related and unrelated animals with a total of at least 30 serologically distinct haplotypes. Cells were sequentially immunoprecipitated with monoclonal antibody (mAb) W6/32 for class I and with mAb L243 for class II molecules, followed by neuraminidase treatment. Both sets of immunoprecipitates yielded 5-7 major bands on IEF. All bands present in offspring were present in at least 1 parent. Siblings which were serologically identical for class I and which were non-stimulatory in mixed lymphocyte culture (MLC) yielded identical IEF patterns for both class I and class II; in other sibling pairs which were serologically identical for class I antigens (Ag), IEF produced convincing evidence that the siblings were indeed nonidentical, or helped to verify that recombination had occurred within the MHC. Specific bands were found which correlated with class I specificities A8, A24, and B25 previously defined by serology. Comparison of serological and biochemical data will broaden our understanding of the MHC in Macaca fascicularis and will increase the potential use of this species in transplantation research, as a model of disease, and for comparative studies.

Alleles

Recognition of pre-processed endogenous antigen by class I but not class II MHC-restricted T cells.

Class I and class II MHC-restricted T lymphocytes recognize non-native forms of antigen. The presentation of antigen to these two classes of T lymphocytes can occur through distinct pathways. Several mechanisms, including differences in antigen processing in different intracellular compartments, have been proposed to account for these pathway differences. Here we describe a T-cell epitope located on the influenza virus haemaglutinin, which is recognized by both class I and class II MHC-restricted cytolytic T lymphocytes (CTL). When expressed de novo in target cells, from a synthetic minigene encoding only the epitope, this pre-processed antigenic site is recognized by class I but not class II MHC-restricted T lymphocytes, even though target cells treated with the exogenously introduced peptide can be recognized by both classes of T cells. Because endogenous expression of the pre-processed antigenic fragment results in differential presentation to class I and class II MHC-restricted CTL, differences between the two different pathways of presentation could lie not at the level of processing but at the level of targeting and/or interaction of processed antigen with MHC.

Amino Acid Sequence

Evidence for involvement of dual-function T cells in rejection of MHC class I disparate skin grafts. Assessment of MHC class I alloantigens as in vivo helper determinants.

The present study further characterizes the cellular mechanisms involved in the in vivo rejection of MHC class I-disparate skin allografts. Previously, we demonstrated that class I-specific rejection responses could result from collaborations between distinct populations of lymphokine-secreting T helper (Th) and lymphokine-responsive T effector (Teff) cells. In the present study, we have assessed the possibility that class I-specific rejection responses could also result from a second cellular mechanism involving a single population of dual-function Th/Teff cells that would not have any further requirement for cell-cell collaboration. Our experimental strategy was to determine the ability of MHC class I-allospecific T cells, in response to class I allodeterminants expressed on skin grafts, to provide help in vivo for activation of helper-dependent Teff cells. We found that class I anti-Kbm1-allospecific T cells would reject bm1 skin allografts, but would not generate help for the activation of helper-dependent effector cells that were specific for third-party skin allografts (e.g., grafts expressing Kbm6, Qa1a, or H-Y allodeterminants). This failure of anti-Kbm1 T cells to provide help in response to bm1 skin allografts was not due to an inability of lymphokine-secreting anti-Kbm1 Th cells to recognize and respond in vivo to Kbm1 allodeterminants expressed on skin, since lymphokine-secreting anti-Kbm1 Th cells were specifically primed in animals engrafted with bm1 skin allografts. Nor was any evidence found that this failure was due to active suppression of anti-Kbm1 helper activity. Rather, we found that anti-Kbm1 T cells consumed nearly all of the helper factors they secreted. Taken together, these results are most consistent with the in vivo activity of dual-function Th/Teff cells that consume the lymphokines they secrete. Thus, this study demonstrates that MHC class I-disparate skin allografts can be rejected by two mechanisms, depending on the ability of the allospecific Teff cell to secrete helper lymphokines. MHC class I-disparate grafts can be rejected by (a) class I-allospecific Teff cells that are unable to produce lymphokine but are responsive to exogenous T cell help; and (b) class I-allospecific dual-function Th/Teff cells that are able to both produce and consume soluble lymphokine.

Animals

Human leukocyte antigens (HLA) class I and class II on sperm cells studied at the serological, cellular, and genomic levels.

The expression of human leukocyte antigens (HLA) on highly purified human ejaculated sperm cells was studied using the sensitive enzyme-linked immunosorbent assay (ELISA) technique and a wide panel of monoclonal antibodies to class I and class II HLA. In addition, the stimulatory capacity of these cells was tested in mixed cultures of lymphocytes and spermatozoa, and the levels of RNA homologous to the HLA class I and class II genes were determined. The results obtained using the ELISA indicate that the class I and class II HLA serologically defined antigens are weakly expressed on the cell surface of the mature spermatozoa. Highly purified sperm cells consistently stimulated heterologous lymphocytes but not when HLA-DR compatibility was observed between stimulator and responder. The proliferative response of lymphocytes induced by sperm cells was lower than the response obtained in a lymphocyte-lymphocyte combination, though the kinetics of the response were similar in both cases. In addition, it was found that spermatozoa contained RNA species homologous to HLA class II DR beta and DQ beta genes sequences but not to HLA class I sequences. The levels of these RNA species were significantly reduced after interferon stimulation. Lymphocytes that served as positive control were found to contain RNA complementary to both HLA class I and class II genes.

Antibodies, Monoclonal

Social class and psychiatric diagnosis: differential findings in a lower-class sample.

Social class and the American Psychiatric Association Diagnostic and Statistical Manual II Diagnosis were examined for all patients contracting the Department of Psychiatry over a year at a large county hospital. This sample was primarily lower class -50 per cent Class V and 33 per cent in Class IV. All diagnoses showed average class between IV and V. Organic brain syndrome, both psychiatric and non-psychotic, and mental retardation had lower average social class than other diagnoses. A small sample of the diagnosis behaviour disorder of childhood and adolescence was also lower than other diagnoses. Class V patients with mental malfunction may present differently than patients from other social classes. The absence of differences on neurosis and functional psychosis may have been due to the predominance of lower class patients, diagnosticians more familiar with lower class patients, or the allowable choice of diagnoses.

Adolescent

Recognition of MHC class I allodeterminants regulates the generation of MHC class II-specific CTL.

We have analyzed the signals influencing the generation of major histocompatibility complex (MHC) class II allospecific cytolytic T lymphocytes (CTL) and have found that the development of these CTL is actively regulated in primary in vitro cultures by Lyt-2+ T cells triggered in response to MHC class I alloantigens. Class II allospecific CTL can be readily stimulated in primary cultures, but the presence of a simultaneous class I MHC stimulus in these cultures causes a marked reduction of class II-specific CTL activation. This reduction can be prevented by adding to culture a dose of monoclonal anti-Lyt-2 antibody (in the absence of complement) that does not block the generation of class I-specific CTL. The role of MHC class I alloantigens in the regulation of class II allospecific responses illustrates that T cells recognizing class I and class II MHC antigens in mixed leukocyte cultures interact in a complex and nonreciprocal manner to influence the final effector T cell repertoire elicited by this complex immunogenic challenge.

Animals

Sheep MHC class II molecules. II. Identification and characterization of four distinct subsets of sheep MHC class II molecules.

A panel of seven monoclonal antibodies, sequential immunoprecipitation and two-dimensional NEPHGE/SDS-PAGE analyses were used to identify and characterize subsets of sheep MHC class II molecules. Using sequential immunoprecipitation four distinct subsets of class II molecules were identified by the monoclonal antibodies SBU.II 28-1, 37-68, 38-27 and 42-20, while another monoclonal antibody, SBU.II 49-1, recognized all four subsets of class II molecules. These four subpopulations of sheep class II molecules displayed different two-dimensional gel profiles and, using splenocytes from four outbred sheep, the class II molecules recognized by SBU.II 28-1, 37-68 and 42-20 showed structurally detectable allelic polymorphism in their beta polypeptides, but no detectable variation in their alpha polypeptides. In contrast, the class II molecules recognized by SBU.II 38-27 showed allelic variation in both their alpha and beta polypeptides. Two-dimensional (2-D) gel analyses of non-glycosylated class II molecules immunoprecipitated by SBU.II 49-1 suggested that approximately 10-12 different class II molecules were expressed by a single sheep. The results of this study show that sheep express class II molecules that can be divided into four structurally and serologically distinct subsets, and provide additional evidence for the subdivision of the sheep MHC class II genetic region into at least three distinct subregions.

Animals

Inhibition of cytokine-induced MHC class II but not class I molecule expression on mouse islet cells by niacinamide and 3-aminobenzamide.

Normal mouse islet cells express low levels of MHC class I molecules and undetectable or extremely low levels of MHC class II molecules. Class I expression was dose-dependently augmented by incubation with interferon-gamma (IFN-gamma) or tumor necrosis factor (TNF). Although neither IFN-gamma nor TNF alone induce class II molecules on islet cells, synergistic interaction of IFN-gamma (200 U/ml) and TNF (200 U/ml) may induce class II expression on approximately 50% of islet cells. Niacinamide and 3-aminobenzamide, both inhibitors of ADP ribosylation and scavengers of free radicals, attenuated the class II expression induced by IFN-gamma and TNF. Twenty millimolar niacinamide and 10 mM 3-aminobenzamide reduced the rates of class II antigen-positive cells to mean +/- SD 3.6 +/- 0.3 and 6.1 +/- 1.9%, respectively. The agents did not affect the cytokine-induced augmentation of class I antigens. The inhibition of class II molecule expression may at least partly account for the preventive effect of niacinamide on autoimmune-associated beta-cell damage in NOD mice.

Animals

Evolutionary origin of the class A and class C beta-lactamases.

The protein sequences of 18 class A beta-lactamases and 2 class C beta-lactamases were analyzed to produce a rooted phylogenetic tree using the DD peptidase of Streptomyces R61 as an outgroup. This tree supports the penicillin-binding proteins as the most likely candidate for the ancestoral origin of the class A and class C beta-lactamases, these proteins diverging from a common evolutionary origin close to the DD peptidase. The actinomycetes are clearly shown as the origin of the class A beta-lactamases found in other non-actinomycete species. The tree also divides the beta-lactamases from the Streptomyces into two subgroups. One subgroup is closer to the DD peptidase root. The other Streptomyces subgroup shares a common branch point with the rest of the class A beta-lactamases, showing this subgroup as the origin of the non-actinomycete class A beta-lactamases. The non-actinomycete class A beta-lactamase phylogenetic tree suggests a spread of these beta-lactamases by horizontal transfer from the Streptomyces into the non-actinomycete gram-positive bacteria and thence into the gram-negative bacteria. The phylogenetic tree of the Streptomyces class A beta-lactamases supports the possibility that horizontal transfer of class A beta-lactamases occurred within the Streptomyces.

Amino Acid Sequence

Interferon-induced expression of class II major histocompatibility antigens in the major histocompatibility complex (MHC) class II deficiency syndrome.

Class II antigens encoded by genes of the major histocompatibility complex (MHC) are expressed by a variety of cell types and have a vital role in the cellular interactions required for an effective immune response. We have analyzed the regulation of HLA-DR, DP, and DQ class II antigen expression on cells of different lineage from an immunodeficient patient with the MHC class II deficiency syndrome. T and B lymphocytes, monocytes, and fibroblasts, which initially expressed no class II antigens, were treated with inductive stimuli that normally lead to enhanced expression of class II antigens. Monocytes, but not fibroblasts, cultured for 48-96 hr in the presence of recombinant gamma interferon expressed all three types of class II antigens. In contrast, T lymphocytes did not express class II antigens following their exposure to a variety of stimuli, including activation with phytohemagglutinin and culture in the presence of interleukin-2, transformation by the retrovirus HTLV-1 or HTLV-2, or exposure to the demethylating agent 5-azacytidine. Similarly, class II antigens were not induced on B cells by cross-linkage of surface immunoglobulin molecules with anti-mu, exposure to Epstein-Barr virus, or treatment with soluble factors secreted by activated T cells. These results demonstrate that the regulation of class II MHC antigen expression by monocytes and lymphocytes is dissimilar and suggest that different regulatory genes are involved in the control of class II antigen expression by cells of different lineage.

Adult

Effect of interferon-gamma and tumor necrosis factor on the expression of class I and class II major histocompatibility molecules by cultured human umbilical vein endothelial cells.

The expression of class I and class II major histocompatibility complex (MHC) molecules on the surface of cultured human umbilical vein endothelial cells (HUVEC) incubated with alpha tumor necrosis factor (TNF) or interferon-gamma (IFN-gamma) was determined by fluorescence flow cytometry. HUVEC were stained with fluorescein conjugated monoclonal antibodies (MoAbs) directed against monomorphic determinants of class I MHC molecules, HLA-A, B alpha chain (HLA-alpha) and beta-2-microglobulin (B2m), and class II MHC molecules, HLA-DR and HLA-DQ. HUVEC exposed to TNF for 96 hr increase their expression of class I MHC molecules two- to fourfold. Similarly, IFN-gamma increases the expression of class I MHC molecules two- to fivefold. No induction of HLA-DR or HLA-DQ was seen following exposure to TNF. IFN-gamma induces the appearance and markedly increases the expression of HLA-DR following 96 hr incubation. HLA-DQ was also induced by IFN-gamma but to a much lesser extent. TNF in combination with IFN-gamma enhances HUVEC expression of HLA-alpha, B2m, and HLA-DQ greater than that observed with either mediator alone. TNF and IFN-gamma reduced HUVEC expression of HLA-DR below the level observed with IFN-gamma alone. Indomethacin (INDO) does not effect expression of HUVEC class I or class II MHC molecules induced by TNF, IFN-gamma, or the combination of these mediators. These immune mediators produce unique and common effects on HUVEC, and therefore may act by at least two separate mechanisms, independent of the cyclooxygenase pathway, which regulate HUVEC expression of class I and class II MHC surface molecules.

Antibodies, Monoclonal

Cell-cell interaction in graft rejection responses: induction of anti-allo-class I H-2 tolerance is prevented by immune responses against allo-class II H-2 antigens coexpressed on tolerogen.

The intravenous sensitization of C57BL/6 (B6) mice with class I H-2-disparate B6-C-H-2bm1 (bm1) spleen cells results in almost complete abrogation of anti-bm1 CD8+ helper (proliferative and interleukin 2-producing) T cell (Th) activities. Although an appreciable portion of CD8+ cytotoxic T lymphocyte (CTL) precursors themselves remained after this regimen, such a residual CTL activity was eliminated after the engrafting of bm1 grafts, and these grafts exhibited prolonged survival. In contrast, the intravenous sensitization with (bm1 x B6-C-H-2bm12 [bm12])F1 cells instead of bm1 cells failed to induce the prolongation of bm1 graft survival as well as bm12 and (bm1 x bm12)F1 graft survival. In the (bm1 x bm12)F1-presensitized B6 mice before as well as after the engrafting of bm1 grafts, anti-bm1 CTL responses that were comparable to or slightly stronger than those observed in unpresensitized mice were induced in the absence of anti-bm1 Th activities. bm1 graft survival was also prolonged by intravenous presensitization with a mixture of bm1 and bm12 cells but not with a mixture of bm1 and (bm1 x bm12)F1 cells. The capacity of CD4+ T cells to reject bm12 grafts was eliminated by intravenous presensitization with antigen-presenting cell (APC)-depleted bm12 spleen cells. However, intravenous presensitization with APC-depleted (bm1 x bm12)F1 cells failed to induce the prolongation of bm1 graft survival under conditions in which appreciably prolonged bm12 graft survival was induced. More surprisingly, bm1 graft survival was not prolonged even when the (bm1 x bm12)F1 cell presensitization was performed in CD4+ T cell-depleted B6 mice. This contrasted with the fact that conventional class I-disparate grafts capable of activating self Ia-restricted CD4+ as well as allo-class I-reactive CD8+ Th exhibited prolonged survival in CD4+ T cell-depleted, class I-disparate cell-presensitized mice. These results indicate that: (a) intravenous presensitization with class I- and II-disparate cells fails to reduce anti-allo-class I rejection responses that would otherwise be eliminated using only class I-disparate cells; (b) such failure is generated according to the coexpression of both classes of alloantigens on a single cell as tolerogen; and (c) allo-class II antigens coexpressed on tolerogen function to activate CD4+ as well as non-CD4+ Th leading to the generation of anti-class I effector T cell responses.

Animals

Sequential analysis of HLA-class II antigen expression in human renal allografts. Induction of tubular class II antigens and correlation with clinical parameters.

The expression of HLA-class II antigens was assessed in 142 biopsies from 29 recipients of cadaveric renal allografts who received either short-term cyclosporine (n = 12) or azathioprine and low-dose prednisolone (n = 17). Biopsies were obtained before transplantation, routinely at days 7, 21, 90, and 365 after transplantation, and at other times as clinically indicated. Cryostat sections were labeled with monoclonal antibodies using an indirect immunoperoxidase technique. In all biopsies HLA-class II antigens were expressed on glomeruli and intertubular structures. In pretransplant biopsies proximal tubules expressed class II antigens, whereas distal tubules were always negative. After transplantation three patterns of class II expression were recognized based on renal tubular class II staining: normal, focal increased, and generalized increased expression. Sequential biopsy analysis showed fluctuating levels of expression in individual patients, which correlated with cellular infiltration and was associated with allograft rejection. 71% of biopsies obtained at day 90 from patients on conventional therapy showed increased class II expression compared with only 9% of biopsies from patients on cyclosporine immunosuppression. All patients with normal class II antigen expression in day 90 biopsies had well-functioning grafts two years after transplantation, whereas 3 of 9 with increased class II antigen expression had failed. Furthermore, all grafts failing from irreversible rejection before 90 days showed marked increase of class II antigen expression. The increased class II antigen expression in renal allografts may be merely a marker of rejection or may have a role in the augmentation of the response, either in its induction or as a target for the effector arm of the reaction.

Azathioprine

Fracture strength of Class I versus Class II restored premolars tested at the marginal ridge. I. Standard preparations.

Two groups of maxillary premolars with Class I cavities were prepared with one marginal ridge thickness to a width of 1.0 mm. One group was restored with amalgam and the other group with composite resin. Two groups of Class II cavities also were prepared and restored with amalgam and composite resin. The teeth in the four treatment groups were subjected to a centric load at the marginal ridge until fracture occurred. A two-factor analysis of variance revealed a statistically significant difference between the class of preparation (Class I preparations were weaker than were Class II preparations) but differences in strength between restorative materials (composite resin versus amalgam) and the interaction effect (class of preparation x restorative materials) were not found to be statistically significant (alpha = .05). A Newman-Keuls sequential range test found no statistically significant differences in strength between groups (alpha = .05). Fracture patterns were observed under scanning electron microscope. Fractures extended into the enamel and into the material in the Class I composite resin, Class I amalgam, and Class II composite resin restorations. Fractures extended only into the material in Class II amalgam restorations.

Bicuspid

HLA class-I and class-II antigen expression by human leukemic K562 cells and by Burkitt-K562 hybrids: modulation by differentiation inducers and interferon.

K562 cells, which could be regarded as pluripotent hematopoietic progenitors, are usually considered as HLA class-I and class-II-negative cells. We show here that differentiation induction (with either sodium butyrate, 12-O-tetradecanoyl-phorbol-13-acetate, or teleocidin) or recombinant alpha- or gamma-interferon (IFN) treatment resulted in the augmentation of HLA class-I antigen expression. This augmentation of HLA class-I antigens was also observed in the Burkitt X K562 hybrid cells PUTKO and DUTKO (the latter coming from two presumably HLA-A, B-negative parents). HLA class-I genes are thus functional in K562 cells. In this system, alpha- and gamma-IFN had no clear differentiating capacity, since they were not able to modulate the expression of various hematopoietic markers, as chemical differentiation inducers did. On the other hand, neither differentiation induction nor interferon treatment could induce HLA class-II antigen expression on K562 cells. These molecules could be very faintly induced in PUTKO and DUTKO hybrids, in contrast with strong HLA class-II expression on the B parental lines. Whether these results are due to "lineage infidelity" in K562 cells or whether K562 cells represent the proliferation of HLA class-I-positive class-II-negative hematopoietic cells, with active suppression of HLA class-II antigen expression, is discussed.

Burkitt Lymphoma