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Introducing endogenous antigens into the major histocompatibility complex (MHC) class II presentation pathway. Both Ii mediated inhibition and enhancement of endogenous peptide/MHC class II presentation require the same Ii domains.

The invariant chain (Ii) plays a key role in regulating the antigen presentation function of major histocompatibility complex (MHC) class II molecules. Ii also influences the presentation of usually excluded endogenously synthesized proteins into the MHC class II presentation pathway. To evaluate the role of Ii in the generation of peptide-MHC class II complexes derived from endogenously synthesized proteins, we tested mutant Ii constructs in two model systems. Co-expression of wild-type Ii inhibits the presentation of hen-egg lysozyme (HEL) 35-45/Ak complex, but enhances the presentation of ovalbumin (OVA) 247-265/Ak complex from endogenously synthesized HEL or OVA precursors. The differential sensitivity of these antigens to chloroquine was consistent with their being processed in distinct compartments. Nevertheless, with a panel of Ii deletion constructs we show here that both the Ii-mediated inhibition and enhancement functions require the endosomal targeting and CLIP residues. Surprisingly, the Ii mutant lacking the endoplasmic reticulum lumenal residues 126-215, despite apparently lower expression, was at least as effective as full-length Ii in antigen presentation assays. Thus, alternative pathways exist for processing endogenously expressed antigens, and Ii-mediated inhibition and enhancement of peptide/MHC class II expression depend upon the same regions, with neither requiring the 89 C-terminal, lumenal Ii residues.

Animals↗

HLA-DR4-IE chimeric class II transgenic, murine class II-deficient mice are susceptible to experimental allergic encephalomyelitis.

To investigate the development of HLA-DR-associated autoimmune diseases, we generated transgenic (Tg) mice with HLA-DRA-IE alpha and HLA-DRB1*0401-IE beta chimeric genes. The transgene-encoded proteins consisted of antigen-binding domains from HLA-DRA and HLA-DRB1*0401 molecules and the remaining domains from the IE(d)-alpha and IE(d)-beta chains. The chimeric molecules showed the same antigen-binding specificity as HLA-DRB1*0401 molecules, and were functional in presenting antigens to T cells. The Tg mice were backcrossed to MHC class II-deficient (IA beta-, IE alpha-) mice to eliminate any effect of endogenous MHC class II genes on the development of autoimmune diseases. As expected, IA alpha beta or IE alpha beta molecules were not expressed in Tg mice. Moreover, cell-surface expression of endogenous IE beta associated with HLA-DRA-IE alpha was not detectable in several Tg mouse lines by flow cytometric analysis. The HLA-DRA-IE alpha/HLA-DRB1*0401-IE beta molecules rescued the development of CD4+ T cells in MHC class II-deficient mice, but T cells expressing V beta 5, V beta 11, and V beta 12 were specifically deleted. Tg mice were immunized with peptides, myelin basic protein (MBP) 87-106 and proteolipid protein (PLP) 175-192, that are considered to be immunodominant epitopes in HLA-DR4 individuals. PLP175-192 provoked a strong proliferative response of lymph node T cells from Tg mice, and caused inflammatory lesions in white matter of the CNS and symptoms of experimental allergic encephalomyelitis (EAE). Immunization with MBP87-106 elicited a very weak proliferative T cell response and caused mild EAE. Non-Tg mice immunized with either PLP175-192 or MBP87-106 did not develop EAE. These results demonstrated that a human MHC class II binding site alone can confer susceptibility to an experimentally induced murine autoimmune disease.

Amino Acid Sequence↗

Draining lymph nodes of corneal transplant hosts exhibit evidence for donor major histocompatibility complex (MHC) class II-positive dendritic cells derived from MHC class II-negative grafts.

To examine the widely accepted dogmas that corneal grafts lack passenger leukocytes or cells capable of migrating directly to lymph nodes (LNs), we tracked the migration of corneal graft-derived transgenic green fluorescent protein (GFP; Ia(b)) cells into the draining LNs of allogeneic (Ia(d)) recipients. GFP(+) cells were identified in cervical LNs several hours after transplantation, and this traffic was significantly enhanced when grafts were placed in inflamed recipient beds. Draining cells were Ia(b+), CD45(+), and CD11c(+), and examination of ungrafted corneas revealed numerous similarly CD45(+)CD11c(+)CD3(-)CD8alpha(-) cells that uniformly lacked major histocompatibility complex (MHC) class II expression; transmission electron microscopy confirmed the presence of morphologically similar cells. After transplantation, or placement in culture, these CD11c(+) cells became class II(+) in a time-dependent manner and were capable of allostimulatory function. However, the stimulatory capacity of these cornea-derived dendritic cells (DCs) was suppressed compared with splenic controls. These results demonstrate for the first time that the cornea is endowed with resident DCs that are universally MHC class II(-) but that are capable of expressing class II antigen after surgery and migrating to draining LNs of allografted hosts. These data refute the tenet that the cornea is immune privileged due to lack of resident lymphoreticular cells or due to antigenic sequestration from systemic immunity.

Animals↗

Generation of novel human MHC class II mutant B-cell lines by integrating YAC DNA into a cell line homozygously deleted for the MHC class II region.

The human B lymphoblastoid cell line (LCL) 721.174 sustains a large homozygous deletion in the major histocompatibility complex (MHC) class II region that results in an absence of DQ and DR molecules as well as a deficiency in the assembly and transport of class I molecules to the cell surface. The deleted genes include the transporters associated with antigen processing TAP1 and TAP2, DMA and DMB which are involved in editing class II bound peptides, and four genes whose roles in antigen processing are unclear; the low mass polypeptide genes LMP2 and LMP7, and DNA and DOB. To study this region we have integrated into 721.174 two overlapping yeast artificial chromosome (YAC) clones which cover the interval LMP2-DRA inclusive. Three clones (11.2A1.1, 4D1D10.1 and 4D1D10.2), containing complete copies of the transfected YAC, produced varying levels of mRNA from the LMP, TAP, DQ and DR genes and corresponding levels of LMP and TAP protein. Class I cell surface expression was restored in 11.2A1.1 and 4D1D10.1, as was DR expression in both 4D1D10 transfectants. These studies demonstrate the feasibility of introducing large groups of functional genes back into human lymphoblastoid cells sustaining deletions, with full restoration of biological function. The procedure could be exploited in order to restore all but one gene covered by the deletion, effectively producing a single gene defect. This could be used to introduce copies of genes engineered to contain mutations and to study cis regulatory elements at some distance from the chosen loci.

Amino Acid Sequence↗

Chicken major histocompatibility complex class I definition using antisera induced by cloned class I sequences.

Alloantisera directed against chicken class I MHC (BFIV) antigens were produced by using transfected cell lines expressing cloned BFIV sequences. The cloned BFIV sequences were from haplotypes *12, *13, and *21. Two laboratory-derived class I mutant sequences (BFIV13m126 and BFIV21m78) were developed to analyze cross-reactive epitopes and to induce specific alloantisera. Antisera were tested in hemagglutination and flow cytometry assays. The antisera produced were highly specific and had minimal cross-reactivity. The antisera induced by the BF1V21m78 mutant confirmed the significance of amino acids 78 and 81 in cross-reactivity between haplotypes B*21 and B*5. The highly specific antisera were tested by hemagglutination on red blood cells of 31 different MHC haplotypes. The consistency of hemagglutination patterns and minimal cross-reactivity demonstrated that these BFIV antisera are extremely valuable in defining MHC haplotype in various chicken lines. Because of the extreme low level of recombination between the chicken class I and class II loci, identification of BFIV allele can be used to define MHC haplotype within a line. Complete identity between the transfected cell line and the chicken used to produce the antiserum is required to ensure the monospecificity.

Alleles↗

Immunochemical analysis of class II molecules expressed by a human B cell line with the unusual class II genotype, DR5+, MB1+, (MB3-), MT2+.

The human B lymphoblastoid cell line FPA was established from a consanguineous individual homozygous for the unusual serologically defined Class II genotype, DR5+, MB1+, (MB3-), MT2+. The MB1 allodeterminant is classically found only in association with DR1, 2, or w6 and DR5 is almost invariably associated with MB3. Class II molecules expressed by this unusual DR5 homozygous cell line have been characterized by immunochemical analysis using two-dimensional gel electrophoresis. These molecules were isolated from the FPA cell line by anti-DR5, anti-MT2, and anti-MB1 allosera, as well as a monoclonal antibody which defines an MB1-like determinant. However, an anti-MB3 alloserum and a monoclonal antibody which defines an MB3-like determinant did not immunoprecipitate Class II molecules from FPA. These studies document that the MB1 allodeterminant resides on DS molecules from this DR5 cell line and provide additional evidence that MB1 and MB3 are alleles of the same Class II antigen system.

B-Lymphocytes↗

Absence of HLA class I and class II antigens as well as beta 2-microglobulin from normal and pathological human spermatozoa.

Human spermatozoa from 87 donors with normal or pathologic semen specimen were examined for the expression of HLA-class I and class II antigens as well as beta 2-microglobulin (beta 2m) using a panel of monoclonal antibodies in an indirect immunofluorescence test. The results make it very unlikely that HLA-class I and class II molecules as well as beta 2m are expressed on human sperm cells.

Antibodies, Monoclonal↗

Immune response to H-2 class I antigens on platelets. I. Immunogenicity of platelet class I antigens.

Purified allogeneic murine platelet suspensions were found unable to induce primary anti-H-2 class I antibody or T cell proliferative responses. In contrast, the same platelet suspensions could elicit secondary anti-class I responses. The secondary responses were not due to contaminating leucocytes. Possible explanations, the lack of acolyte determinants (class II or non- H-2) on platelets or inappropriate layout and/or structure of their class I antigens, are discussed. These findings emphasize the importance of sufficient leucocyte depletion before platelet transfusion in the human.

Animals↗

A transcription factor interacting with the class I gene enhancer is inactive in tumorigenic cell lines which suppress major histocompatibility complex class I genes.

AKR leukemias display different amounts of major histocompatibility complex class I antigens on the cell surface. The absence of H-2Kk molecules correlates with the ability of these cell lines to form tumors in vivo as well as to escape lysis by cytotoxic T lymphocytes in vitro. In this report it is shown that the 5' regulatory area of the H-2Kk gene failed to activate transcription in H-2Kk-negative cells. Examination of the proteins interacting with the H-2Kk enhancer in expressing and nonexpressing cells revealed clear differences. In particular, the level of a nuclear protein interacting at position -166 was greatly reduced in the negative cell lines. A transcription factor, known as H2TF1 or KBF1, has been shown previously to interact with this binding site and to be essential for the expression of certain class I genes as well as the expression of beta 2-microglobulin. These results demonstrate that the molecular mechanism of class I gene suppression in malignant tumor cells is at the level of transcription and is most probably modulated by H2TF1/KBFI. In addition, it is shown that the same transcription factor is only present in mouse tissues expressing class I antigens.

Animals↗

Social class and sickness absences. A comparative study of four ways to measure social class.

Four different class measures (social groups, a socioeconomic classification, a measure by Erik Olin Wright, and a structural class concept) were applied on a gross material of 3,252 persons registered by sickness insurance authorities. The measures were compared by description of absence days, average durations, sickness rates, and sex. No significant differences were found. By associating measures and absence days, differences were found only for doctor certified days, where the structural class concept diverged. Two conclusions are drawn: When dependent variables are of ideological character, practical considerations may decide choice of class measure. In other cases, caution is advised and further research needed.

Absenteeism↗

MHC Class II-mediated apoptosis by a nonpolymorphic MHC Class II peptide proceeds by activation of protein kinase C.

It was demonstrated previously that a peptide derived from a conserved region of MHC class II, HLA-DQA1, inhibits proliferation of allogeneic T cells in vitro. Administration of HLA-DQA1 in conjunction with allogeneic cells at the time of priming or at the time of rechallenge prevented the development of the delayed type hypersensitivity response in vivo. The immunomodulatory effects of HLA-DQA1 were associated with the induction of apoptosis in B cells, macrophages, and dendritic cells via a caspase-independent pathway. This study investigated the binding site and mechanism that mediates cell death induced by HLA-DQA1. It was demonstrated that HLA-DQA1 binds to MHC class II on the cell surface, causing MHC class II signaling, initiation of protein kinase C signaling, and mitochondrial membrane depolarization with resultant apoptosis. The data indicate that HLA-DQA1 binds to MHC class II outside the groove, in a manner similar to superantigen. These results suggest that HLA-DQA1 is a novel immunotherapy that may provide an effective means of targeting professional antigen-presenting cells, in particular B cells.

Animals↗

Constitutive expression of MHC class II genes in melanoma cell lines results from the transcription of class II transactivator abnormally initiated from its B cell-specific promoter.

In melanoma cell lines, two different patterns of MHC class II expression have been described, either an IFN gamma-inducible expression of HLA-DR and HLA-DP, with a faint or null expression of HLA-DQ, resembling that described for melanocytes, or a constitutive expression, i.e., IFN-gamma independent, of all three HLA-D isotypes. As this latter phenotype has been associated with a more rapid progression of melanoma tumors, we have analyzed in different melanoma cell lines the molecular mechanisms leading to this abnormal pattern of MHC class II expression. In agreement with the evidence of a coordinate transcription of the HLA-D genes in these cell lines, we have shown the constitutive expression of CIITA (class II transactivator) transcripts, CIITA being known as the master switch of MHC class II expression. Unexpectedly, these transcripts initiate from promoter III of the CIITA gene, a promoter that is mainly used constitutively in B lymphocytes. This expression was further shown to occur through factor(s) acting on the enhancer located upstream of CIITA promoter III, which was previously described in epithelioid cells as an IFN-gamma-response sequence. The hypothesis of a general abnormality of the IFN-gamma transduction pathway was dismissed. Constitutive transcription of CIITA from promoter III having been observed in unrelated melanoma cell lines, we propose the hypothesis that this phenomenon might not be a random event, but could be linked to the neoplasic state of the melanoma cells.

5' Untranslated Regions↗

Craniofacial morphology in Chinese and Swedish children with Angle Class I and Class II occlusal relations.

The purpose of this study was to compare the craniofacial morphology of a group of Chinese children from northern China with a group of Swedish children. Each ethnic group comprised 20 boys and 20 girls with Class I occlusion, and 20 boys and 20 girls with Class II occlusion. The ages of the children ranged from eight to ten years. Lateral cephalometric radiographs were used for the recording of a number of skeletal, dental, nasopharyngeal airway, and hyoid bone variables. The results of the comparisons of the two ethnic groups showed that the antero-posterior dimensions of the anterior cranial base and the maxilla in the Chinese children were significantly smaller than the corresponding dimensions in the Swedish children. The mean values of anterior and posterior face heights, inclination of the upper incisors, and protrusion of the lower incisors, were significantly greater in the Chinese than in the Swedish samples. In the median plane, the size of the nasopharyngeal airway was significantly greater in the Chinese than in the Swedes. This difference was due to the fact that the soft tissues covering the posterior nasopharyngeal wall were thinner in the Chinese children than in the Swedish children. In general, the ethnic differences were the same in the Class I and the Class II groups. The differences in some of the dental and skeletal characteristics found between northern Chinese and Caucasian-children are similar to previously described differences between southern Chinese and Caucasian children.

Asian People↗

[The Goldthorpe Social Class Classification: reference framework for a proposal for the measurement of social class by the Working Group of the Spanish Society of Epidemiology].

Two of the most important theory-based social class classifications are that of the neo-Weberian Goldthorpe and that of the neo-Marxist Wright. The social class classification proposal of the SES Working Group employed the Goldthorpe schema as a reference due to the empirical and mainly pragmatic aspects involved. In this article, these aspects are discussed and it is also discussed the problem of the validation of the measurements of social class and the problem of the use of the social class as an independent variable.

Epidemiology↗

Class structure in a deeply divided society: class and ethnic inequality in Israel, 1974-1991.

Despite the fact that in many societies ethnicity plays an important role in stratification processes, a common view held by students of stratification argues that the role of ascriptive criteria in stratification processes is diminishing, and that the main axis of the modern stratification system is rooted in the division of labour in the marketplace. Despite this, most Israeli sociologists have taken the ethnic and national cleavages to be the main axes of stratification in Israel. This paper utilizes the 1974 and 1991 mobility surveys in Israel to examine changes over time in the association between ethnicity/nationality (i.e., Ashkenazi-Jews, Sephardi-Jews and Israeli-Arabs) and class position in the Israeli stratification structure. It also examines the extent to which inequality of opportunity within the Israeli class structure is affected by ethnicity/nationality. Here it is found that the ethnic/national cleavage in Israel appears to have played a less important role over time in the allocation of Israeli men to class positions. It is shown that class crystallization processes that result from the differentiation of employment contracts in the marketplace produce a relatively common level of inequality of opportunity in Israel, across sub-populations and over time. Any difference in the level of inequality of opportunity between the various sub-populations would appear to result, in part, from different historical process of, and government policy towards, the three sub-populations.

Adolescent↗

Requirements of class II-mediated B cell differentiation for class II cross-linking and cyclic AMP.

Cells of the mouse B cell clone, CH12.LX, receive Ag-dependent differentiative signals through their surface membrane class II molecules. The present study was performed to determine the role of class II cross-linking and cAMP in the successful delivery of these signals. Delivery of differentiative signals by anti-Ek mAb was increased by further cross-linking with a secondary anti-isotype antibody. Intact or (Fab')2, but not Fab forms of anti-Ek successfully delivered the Ag-dependent differentiative signal. Inability of monovalent Fab fragments to deliver the signal could not be attributed to an inability to adequately bind Ek molecules. The requirement for cAMP for class II-mediated signaling was also examined, because previous studies have implicated elevated cAMP levels as necessary for class II signaling. Both Ag-dependent, Ek-mediated differentiation and the Ek-mediated inhibition of Ag-independent LPS-induced differentiation were inhibited by the adenyl cyclase inhibitor 2'5'ddA, although elevation of cAMP was not in itself sufficient to deliver the differentiative signal. Inhibition of LPS-induced differentiation could be mediated by mAb binding to either Ek, Abk, or Abb on CH12.LX or an Ab-bearing transfectant, CH12.ABB1. This inhibition was abrogated by 2'5'ddA in the case of Ek or Abb, both of which deliver Ag-dependent differentiative signals to CH12.LX cells. In the case of Abk, which does not deliver such signals to CH12.LX, 2'5'ddA did not abrogate anti-Abk-mediated inhibition of the LPS response. The effects of 2'5'ddA were reversed by the cAMP analog, dibutyryl cAMP, and Ag-dependent-induced differentiation of CH12.LX or CH12.ABB1 was accompanied by an increase in cAMP levels.

Adenylyl Cyclase Inhibitors↗

The predominance of CD8+ T cells after infection with measles virus suggests a role for CD8+ class I MHC-restricted cytotoxic T lymphocytes (CTL) in recovery from measles. Clonal analyses of human CD8+ class I MHC-restricted CTL.

Stimulation of PBMC, in children recovering from acute measles, with autologous EBV-transformed and measles virus (MV)-infected lymphoblastoid cell lines (B-LCL) expanded primarily MV-specific CD8+ T cells. A large number of CD8+ T cell clones were obtained either by passaging of bulk cultures at limiting dilutions or by direct cloning of PBMC without previous stimulation in bulk culture. The MV-specific CD8+ T cell clones responding in a proliferative and a CTL assay were found to be class I MHC restricted. In contrast, CD4+ MV-specific T cell clones, which were generated by the same protocol, recognized MV in association with class II MHC molecules. Analysis of processing requirements for Ag presentation to CD8+ and CD4+ T cell clones, measured by the effect of chloroquine in a proliferative T cell response, revealed that both types of T cells recognized MV Ag processed via the endogenous/cytoplasmic pathway. Thus, these studies indicate that, as in most other viral infections and in contrast to previous suggestions, the class I MHC-restricted CTL response by CD8+ T cells may be an important factor in the control and elimination of MV infection. Therefore, the role proposed for CD4+ class II-restricted T cells in recovery from measles needs to be reevaluated.

Antigen-Presenting Cells↗

Antigen form influences induction and frequency of influenza-specific class I and class II MHC-restricted cytolytic T lymphocytes.

The induction of class I and class II MHC-restricted CTL in response to different forms of A/JAP/57 influenza virus was compared. Splenocytes removed from influenza-immune BALB/c mice and stimulated in vitro with infected syngeneic splenocytes are mainly CD8+ (Lyt-2+) and specifically lyse infected Ia- and Ia+ target cells. To a lesser extent they also lyse non-infectious virus-pulsed Ia+ but not Ia- target cells. In contrast, syngeneic stimulators pulsed with non-infectious virus (exogenous Ag) induce effector T cells that specifically lyse both infected and non-infectious virus-pulsed Ia+ target cells. The cells present in this heterogeneous culture predominantly express the CD4 (L3T4) cell surface marker. Frequency analysis by limiting dilution of splenocytes derived directly from influenza-immune mice revealed a similar pattern of precursor induction: In vitro stimulation with infected splenocytes yielded primarily class I MHC-restricted CTL, whereas stimulation with non-infectious virus reciprocally induced primarily class II MHC-restricted CTL. Thus, the Ag form and consequently the intracellular route of viral Ag presentation profoundly influence the MHC restriction of CTL precursors induced.

Animals↗