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Syncytiotrophoblast brush border proteins recognized by monoclonal antibody TRA-2-10 and rabbit anti-TLX sera.

Different subsets of placental trophoblast epithelium are directly exposed to the maternal immune system during pregnancy and consequently represent major elements in allogeneic interactions. It has been proposed that the trophoblast--lymphocyte cross-reactive (TLX) alloantigen system is involved in maternal allogeneic recognition during pregnancy. Monoclonal antibody TRA-2-10 putatively recognizes TLX antigens, but its reactivity with trophoblast and normal tissues has not been documented in detail. In this report, immunohistological investigations revealed that TRA-2-10 recognizes all subsets of trophoblast in addition to amniotic and seminal vesicle epithelia. Immunoblotting demonstrated reactivity with glycoproteins of 55,000 and 65,000 mol. mass under non-reducing conditions on various cell types. These proteins displayed tissue-specific size variations and individuals varied in the amounts expressed of the two species. On the basis of blocking and immunoprecipitation experiments, TRA-2-10 reactive antigens are recognized by rabbit anti-TLX sera and are potential TLX antigen candidates. However, TLX antigens are found in seminal plasma whilst TRA-2-10 reactive antigens are not. Both TLX and TRA-2-10 antigens appear related if not identical to membrane cofactor protein (MCP) by virtue of shared molecular characteristics and blocking of lymphocyte binding of monoclonals to MCP by polyclonal anti-TLX. Extra-embryonic membranes are thus richly endowed with a complement regulatory protein which could facilitate their roles in protection of the fetus by avoidance of harmful maternal immune response amplification.

Antibodies, Monoclonal

Isolation and identification of trophoblast lymphocyte cross-reactive (TLX) antigens from human lymphocytes.

It has been proposed that allotypic trophoblast lymphocyte cross-reactive (TLX) antigens are involved in the maintenance of normal human reproduction. Despite such a potentially important role for TLX antigens, isolation of human TLX proteins has not yet been reported. As an initial step toward elucidation of the structure and function of TLX antigens, we have isolated TLX proteins from Lubrol-solubilized lymphocytes (termed "wTLX") by anti-trophoblast membrane-Sepharose immunoaffinity chromatography. Using Ouchterlony immunodiffusion and immunoelectrophoresis, we have identified an immunoreactive wTLX antigen which forms a single immunoprecipitation line against absorbed anti-trophoblast membrane. From 17.5% sodium dodecyl sulfate-polyacrylamide gel electrophoresis and immunoblot analyses, a 35-kDa band was determined to be a major protein band in the immunoaffinity-isolated wTLX fraction, along with multiple minor wTLX bands. These results suggest the possible existence of antigenic polymorphism of TLX, with predominant expression of the 35-kDa wTLX antigen in lymphocytes. The strong staining of the TLX antigens with Coomassie Brilliant Blue and Amido Black indicates they are largely proteins. Co-isolation of beta 2-microglobulin in the immunoaffinity-isolated wTLX pool could imply that the wTLX antigens may be unique class I HLA-like antigens. This possibility has yet to be resolved.

Autoantigens

A role for TLX antigens in pregnancy.

Maternal responses to allotypic TLX antigens are proposed as necessary in the immunological maintenance of human pregnancy. The TLX antigens are strategically and strongly expressed in semen and on the extraembryonic tissues which form the anatomical materno-fetal interfaces. Recent findings suggest that CD 46 proteins (a membrane cofactor which protects self tissues from autologous complement damage) in association with the activated complement component, C 3b produce a novel antigenic epitope recognized by both rabbit and human anti-TLX antisera. Control of TLX immunity involves an idiotype-antiidiotype network. We now report the development of rabbit antiidiotypes specific for cross-reactive idiotypes on human anti-TLX IgG antibodies. These antiidiotypes appear to recognize different TLX allotypes and will be useful for gaining additional insight into the immunogenetics of human reproduction.

Animals

The human cell-surface glycoproteins HuLy-m5, membrane co-factor protein (MCP) of the complement system, and trophoblast leucocyte-common (TLX) antigen, are CD46.

The non-lineage restricted human CD46 antigen, with two glycoproteins of 56,000 molecular weight (MW) and 66,000 MW, was defined using a panel of monoclonal antibodies (mAb) that included the E4.3 mAb to the HuLy-m5 antigen. Here the E4.3 mAb is used to show that two other human cell-surface molecules, membrane co-factor protein (MCP) of the complement system and trophoblast leucocyte-common antigen (TLX), are the same as HuLy-m5; thus, these three independently identified molecules are equivalently CD46. A mouse mAb to TLX (H316) and a specific rabbit antiserum to purified MCP (RA-MCP) blocked the binding of FITC-labelled E4.3 to the surface of human peripheral blood leucocytes (PBL). In sequential immunoprecipitation studies, E4.3 cleared all molecules detected by H316 and the RA-MCP antiserum. Immunoprecipitation from Chinese hamster ovary cells expressing transfected MCP cDNA showed that E4.3 detects both the mature 66,000 higher MW form of MCP and its 48,000 MW pro-MCP precursor, which lacks O-linked carbohydrate and bears only simple high-mannose-type N-linked carbohydrate. The IgG fraction of a polyclonal antiserum to purified MCP blocked factor I-mediated cleavage of C3b, whereas the E4.3 mAb did not. These data establish that three independently identified antigen systems are indeed the same: HuLy-m5, which shares a cross-reactive epitope with some primate retroviral gp 70 molecules and can be physically associated with class I major histocompatibility complex (MHC) chains in the cell membrane; MCP, of interest as a member of the regulators of complement activation gene family thought to protect autologous cells from complement activation; and TLX, a polymorphic molecule of interest for its potential role at the foeto-maternal tissue interface during pregnancy. Thus, the human CD46 antigen amalgamates the HuLy-m5, MCP and TLX cell-membrane glycoproteins.

Antibodies, Monoclonal

Regulation of immunity to extraembryonic antigens in human pregnancy.

Pregnancy results in the immunologic challenge of the female to a wide variety of allogeneic antigens. Particular attention has been given to antibodies directed to allotypic trophoblast antigens (TLX), for trophoblast form the true allograft interface between mother and fetus. Studies found that antibodies to paternal TLX allotypes are produced in women suffering from secondary recurrent abortions. These TLX antibodies are not directed to classical HLA private epitopes. In this report, treatment of lymphocytes with papain to remove HLA Class I did not decrease TLX antigen densities. These results suggest TLX antibodies are not directed to Class I epitopes, public or private. The allotypic nature of TLX antigens requires that a pregnant female must be able to regulate TLX immune responses to avoid rejection of the conceptus. One mechanism to specifically and systemically regulate TLX immunity is the idiotype anti-idiotype network. We provide preliminary evidence in this report for the presence of TLX idiotype network in a normal primigravida. Initially, no antipaternal TLX antibodies were detected in the serum of the primigravida, suggesting no TLX immunization had occurred. However, separation of Ab1 from Ab2 by absorption of primigravida serum with 2 degrees aborter Ab1 resulted in seroconversion. The primigravida's Ab1 was cytotoxic for paternal and 3rd-party lymphocytes in a non-HLA-restricted pattern. Primigravida's Ab2 was recovered from the Ab1 matrix by competitive elution by using platelets as source of TLX antigen. The Ab2 was found to inhibit cytotoxicity by 2 degrees aborter Ab1 as well as primigravida Ab1. This is evidence that the Ab2 recognizes a cross-reactive idiotype (CRI) on TLX antibodies.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Anti-Idiotypic

Immunological studies of trophoblast antigens: no evidence for human leucocyte antigen (HLA) linkage.

Parental disparity for trophoblast-lymphocyte crossreactive (TLX) antigens may promote successful pregnancy. A TLX antigen system has been defined on peripheral blood lymphocytes by heteroantisera. More recently, we have reported additional activity against antigens on B lymphocytes alone termed trophoblast-B lymphocyte crossreactive (TBX) antigens. In the present study we have investigated ten TLX sera in order to determine if their target antigens are linked to the human leucocyte antigen (HLA) gene complex. The sera showed no selective activity when tested against target B lymphocytes from ten normal donors. Cytotoxic activity of TLX antisera against peripheral blood lymphocytes from six normal donors was not reduced when the class I HLA antigens of the target cells were blocked with a monoclonal antibody (PA 2.6). Similarly the cytotoxic activity of both TBX antisera against B lymphocytes from six normal donors was not decreased when class II HLA antigens were blocked by a monoclonal antibody (FMC 4). Within a family the cytotoxic activity of the TLX antisera was absorbed equally by lymphocytes from siblings who shared neither HLA haplotype. Antibody content in TLX and TBX antisera is not directed toward the classically defined HLA class I or class II antigens and is not linked to the HLA gene complex.

Animals

Immune recognition at the maternal-fetal interface: overview.

Trophoblast antigens at the maternal-fetal interface that are capable of stimulating maternal immune responses have been studied. Candidates are blood group I and P, HLA, Fc gamma-receptors, TLX, and phospholipids. Antigens I and P on trophoblast have been implicated in pregnancy loss but incompatible i,p mothers are rare. HLA-G is expressed on cytotrophoblast; however, no evidence for HLA-G allotypy or maternal responses to these molecules exists, although HLA-G has been implicated in recruitment of suppressor T cells. Receptors for IgG (Fc gamma-RI, Fc gamma-RII and Fc gamma-III) are present on trophoblast but allotypy is limited to the NA1-NA2 antigen system associated with Fc gamma-RIII on neutrophils. Maternal Fc-gamma R blocking antibodies have been linked to pregnancy success. The TLX alloantigen system was described by using xenogeneic antisera. Idiotype-antiidiotype regulated maternal responses to TLX are proposed as necessary for successful pregnancy. Several putative TLX monoclonal antibodies (Mab) recognize a regulator of complement activation called MCP (membrane cofactor protein, or CD46). Mab to MCP do not exhibit allotypy. Syncytial and cytotrophoblastic membranes are rich sources of MCP. Preliminary data suggest that a conformational site induced by C3b (iC3) binding to MCP may be responsible for TLX allotypy. Certain pregnancy loss patients produce antiphospholipid antibodies (aPA). Some investigators believe that aPA recognize a plasma protein cofactor, beta 2 GPI and not phospholipid per se. We produced three Mab specific for beta 2 GPI, one of which fails to recognize beta 2 GPI bound to phospholipid [corrected].(ABSTRACT TRUNCATED AT 250 WORDS)

Antigens, CD

Trophoblast immunity in human pregnancy defined by antiidiotype.

Successful reproduction in mammals requires the mother to immunologically accept genetically disparate tissues. Allotypic trophoblast antigens (TLX) are thought to be responsible for influencing maternal acceptance of the feto-placental graft, and faulty regulation of immunity to TLX antigens has been associated with recurrent pregnancy losses. In this report, rabbit antiidiotype (RAb2) was produced to a human TLX antibody (Ab1). This RAb2 detected TLX cross-reactive idiotypes (CRI) on antitrophoblast IgG from women with normal and abnormal pregnancies. These findings support an hypothesis that women respond immunologically to allotypic trophoblast antigens, and that idiotype-antiidiotype regulation of this response is characteristic of normal pregnancy.

Abortion, Spontaneous

Localization and characterization of the acrosomal antigen recognized by GB24 on human spermatozoa.

GB24, a mouse monoclonal antibody, recognizes a trophoblast-leukocyte cross-reactive antigen (TLX), which is likely identical to the membrane cofactor protein (MCP), a complement regulatory protein. GB24 reacts also with a human acrosomal sperm antigen (Fénichel et al.: J Reprod Fertil 87:699-706, 1989). By immunofluorescence or immunoperoxidase, testicular, epididymal, and ejaculated spermatozoa were found to be positive after fixation by acetone. Motile, suspended spermatozoa became positive only through conditions known to induce acrosome reaction (A23187, follicular fluid, contact with oocytes). Ultrastructural studies with immunogold staining localized this protein on the inner acrosome membrane and in the acrosomal content. By SDS-polyacrylamide gel electrophoresis, GB24 immunoprecipitated a unique protein of 48 kDa from capacitated and A23187-induced spermatozoa under reducing conditions. No cross-reactivity was found with mouse, boar, or ram spermatozoa. Localization of this human sperm antigen recognized by GB24 and its similarity with the TLX-MCP family antigens would suggest a possible role of this molecule during fertilization in sperm-egg binding or immune protection.

Acrosome

Small angle x-ray diffraction studies on the topography of cannabinoids in synaptic plasma membranes.

In a previous publication, we have described in detail how we used small angle x-ray diffraction to determine the topography of (-)-delta 8-tetrahydrocannabinol (delta 8-THC) in dimyristoylphosphatidylcholine (DMPC) bilayers, and to deduce the conformation of the THC side chain by using the iodo-analog (5'-I-delta 8-THC) in the model membrane. We have now extended our studies to synaptic plasma membrane systems where the cannabinoids are believed to exert part of their pharmacological effects. Synaptic plasma membranes (SPM) were isolated from fresh bovine brains and delta 8-THC was incorporated into the membranes. By comparing the electron density profiles of drug free and drug-containing SPM preparations, we observed an electron density increase due to the presence of delta 8-THC in a region centered at 9.2 A from the terminal methyl groups of the membrane bilayer. In an attempt to dissect the effects of different membrane components on the topography of delta 8-THC, we carried out parallel experiments using membrane preparations from the synaptosomal membrane total lipid extract (TLX) as well as from bovine brain phosphatidyl choline extract (PCX) containing 30 mole percent cholesterol (Chol). Our results regarding the topography of delta 8-THC and 5'-I-delta 8-THC in these lipid membranes show that the TLX bilayer simulates the natural membrane environment very closely whereas in the PCX/Chol bilayer delta 8-THC resides at a location approximately 4 A closer to the membrane interface, similar to that found in our previous study using DMPC model membrane.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Nondominant Hand Training in Laparoscopy for Surgical Interns: Feasibility and Impact.

OBJECTIVE: Laparoscopy requires bimanual proficiency, yet early trainees demonstrate underdeveloped nondominant hand (NDH) performance. Although deliberate practice of NDH skill contributes to overall performance, NDH training is rarely incorporated into residency simulation curricula and has not been formally evaluated in surgical trainees. We assessed feasibility and impact of integrating structured NDH training with established laparoscopic curriculum for surgery interns. DESIGN: Prospective, single-institution randomized pilot study. Interns were assigned the standard 4-week curriculum of laparoscopic dominant hand and bimanual tasks (Control) or completed assigned NDH tasks in addition to the standard curriculum (Intervention). Feasibility was determined by assigned task completion, daily standard and NDH-specific self-reported practice time, and improvement in bimanual task performance. Performance was video recorded weekly and assessed by blinded evaluators using MISTELS and GOALS scoring. Cognitive workload during laparoscopic tasks was measured via NASA-TLX. Exploratory analyses were conducted within a Bayesian framework. SETTING: A single academic institution with a surgical simulation training program. PARTICIPANTS: General surgery interns on their 4-week simulation rotation. RESULTS: Eleven general surgery interns (6 intervention, 5 controls; all right-hand dominant) completed the study with 100% task completion and practice log compliance. Both groups improved in bimanual performance and perceived cognitive load. Reduction in cognitive workload during bimanual task performance was greater in the NDH group. Time spent on NDH practice over 4 weeks was associated with improved bimanual performance, independent of time spent on standard curriculum tasks. CONCLUSIONS: Structured NDH training is feasible to implement within an existing curriculum and reduces perceived cognitive workload during bimanual laparoscopic tasks. NDH practice demonstrates a beneficial dose-response relationship with performance, supporting its integration into early laparoscopic training.

Laparoscopy

[Immunologic factors in habitual abortion].

Recent advances in immunology have discovered two immunological factors in part of the patients with habitual first-trimester abortions. Antibody formation against the major histocompatibility antigens (HLA = human leukocyte antigen) which can be demonstrated during normal pregnancy is often not detectable in these patients, sometimes presumably because of compatibility in the HLA antigens between mother and fetus. In a high percentage of these patients immunotherapy by subcutaneous leukocyte injections can lead to antibody formation and successful pregnancy. As another immunological factor, a genetic variant of the complement-inactivating leukocyte differentiation antigen CD46 (= TLX antigen, = membrane cofactor protein) could be identified, which can be seen more frequently in patients with habitual abortions as compared to healthy controls. Both factors seem just to contribute to a predisposition for early-pregnancy abortions rather than to be an absolute barrier, as they can also be seen in normal pregnancy and successful carriages can also occur without any therapy in early-pregnancy aborters with an immunological background.

Abortion, Habitual

Flow cytometric quantitation of the expression of membrane cofactor protein as a marker for the human sperm acrosome reaction.

A mAb (TRA-2-10, IgG1) to an embryonal carcinoma cell line (2102ep) that recognizes an antigen termed membrane cofactor protein (CD 46, TLX antigen) binds to human sperm after chemical induction of acrosomal loss by Ca2+ ionophore. An indirect immunofluorescence assay was developed in which sperm membrane cofactor protein was detected by flow cytometry on acrosome-reacted living human sperm. The expression of the membrane cofactor protein antigen on acrosome-reacted sperm may represent a marker that can be used in a rapid, quantitative, and reproducible flow cytometric assay for the evaluation of human sperm acrosomal loss.

Acrosome

Immunobiomarkers in alloimmune recurrent spontaneous abortion. A reappraisal.

The Class I gene expression and regulation will be in the near future a main topic for studies in the reproductive immunology. Unfortunately at present this finding do not provide yet available markers for the diagnostic work-up of recurrent abortions. In addition also the study of HLA frequencies in individuals affected by recurrent abortions is not providing a clear marker to be utilized for clinical purposes. Also the TLX antigen system is submitted to several critiques: the antigens have yet to be characterized biochemically. Furthermore the blocking activity is not always detected in the serum of women with normal pregnancy, as shown in the mixed lymphocyte reaction (MLR). The Authors conclude, on the bases of the biologic evidence, that more effective immunobiomarkers are needed to detect a possible pathologic allogenic recognition in recurrent aborters.

Abortion, Habitual

Characterization of the human trophoblast-leukocyte antigenic molecules defined by a monoclonal antibody.

The murine monoclonal antibody H316 recognizes cell surface glycoproteins shared in expression by human trophoblast and peripheral blood leukocytes. It is also strongly expressed by many human tumor cell types, including choriocarcinoma and teratocarcinoma. The H316 antigenic determinant from these different cell types is carried on two wheat germ agglutinin-reactive glycoproteins of approximately 65,000 and 55,000 m.w. The antigenicity is not dependent on N-linked glycosylation. Biochemical fractionation procedures suggest that the molecules are related to each other, are not associated through intermolecular disulfide bonds, but do exhibit intramolecular disulfide interactions. These glycoproteins demonstrate m.w. heterogeneity between different cell lines and individual trophoblast membrane preparations. Such properties suggest that H316 molecules may be representative of TLX antigens (trophoblast-leukocyte common antigens), which have been suggested to influence maternofetal immunogenetic interactions.

Antibodies, Monoclonal

Tailless terminates the neural stem cell temporal cascade in both the optic lobe and central brain.

Temporal patterning is an evolutionarily conserved mechanism to produce neuronal and glial diversity from common cells of origin during neurodevelopment. This process is controlled by a series of temporal transcription factors that are transiently expressed and drive the sequential production of specific progeny subtypes. Intermediate neural progenitors (INPs) and optic lobe neural stem cells (OL NSCs) share striking similarities in temporal factor expression despite divergent cells of origin. Tailless (Tll) is a terminal temporal factor in the visual system in OL NSCs. Its expression coincides with the termination of neurogenesis and onset of gliogenesis. Here, we report that Tll also acts as a terminal factor in Drosophila INPs, demonstrating functional conservation. Tll expression is activated by the preceding temporal factor Scarecrow, and represses odd-paired and hamlet. tll also plays a partial role in promoting gliogenesis in gliogenic NSCs. We performed genome-wide binding analysis of Tll in the OL NSCs and INPs by Targeted DamID, revealing both conserved and divergent targets, reflecting differences in regulatory outcomes. We show that temporal patterning mechanisms are conserved between different brain regions, whilst facilitating lineage-specific outputs.

Animals