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Eosinophil major basic protein enhances the expression of neutrophil CR3 and p150,95.

BACKGROUND: We examined the effect of major basic protein (MBP) stimulation on the expression of the neutrophil B2-integrins: LFA-1 (CD11a/CD18), CR3 (CD11b/CD18), and p150,95 (CD11c/CD18). METHODS: Incubation of neutrophils with 0.75 to 3.0 mumol/L MBP for 30 minutes at 37 degrees C resulted in concentration-dependent increases in CR3 expression as detected by staining with the CD11b-specific monoclonal antibody, Leu-15. RESULTS: The expression of CR3 was significantly (p < 0.001) higher when neutrophils were stimulated with 1.5 mumol/L (53% +/- 9% increase) or 3.0 mumol/L (100% +/- 17% increase) MBP as compared with unstimulated neutrophils. The kinetics of MBP-stimulated CR3 expression were rapid and were similar to those of 100 nmol/L. N-formyl-methionyl-leucyl-phenylalanine-stimulated enhancement of CR3 expression. Incubation of neutrophils with reduced and alkylated MBP resulted in significantly lower (p < 0.05) increases in CR3 expression as compared with stimulation with native MBP. In addition, neither eosinophil cationic protein nor eosinophil-derived neurotoxin altered neutrophil CR3 expression. MBP stimulated minimal increases in LFA-1 expression. However, staining with the monoclonal antibody Leu-M5 (anti-CD11c) revealed that MBP stimulated significant increases in the expression of p150,95. CONCLUSIONS: These results indicate that MBP stimulates the increased expression of neutrophil adhesion molecules, which in turn may enhance the inflammatory role of neutrophils in the late-phase events of allergic diseases.

Blood Proteins↗

Cell to cell contact enhances the proliferation of acute myeloid leukemia (AML) cells in vitro without an apparent role of adhesion glycoproteins LFA1, MAC1 and P150-95.

Acute myeloblastic leukemia (AML) cells were cultured under conditions facilitating or preventing cell to cell contact. Proliferation of AML blasts of 24 patients was assessed in semisolid (containing 0.9% methylcellulose) and in liquid cultures, in which identical concentrations of colony stimulating factors (CSFs) had been provided. In all but one of the cases, significant DNA synthesis (evaluated by 3H-thymidine uptake) was observed when the cells were incubated in the liquid system, whereas in only 14 cases (58%), the cells were able to form clusters or colonies in the semisolid system. These findings suggest that AML cells from a large proportion of patients can proliferate only after stimulation with CSFs in a liquid system, i.e. when cultured under conditions permitting reciprocal contact between the cells. To establish further the importance of cell to cell contact for AML cell proliferation, cells from 19 patients were cultured in liquid medium concurrently in flat bottom microwells (in which a majority of the cells lie separate) and in round bottom microwells (in which cells show a tendency to aggregate). A significantly higher 3H-thymidine (TdR) incorporation in the round bottom cultures was observed in 15 out of 19 cases. The role of the leukocyte function antigens (LFA) LFA1, Mac1, P150-95 in this phenomenon was then analyzed, as these structurally related glycoproteins are involved in reactions requiring contact between hematopoietic cells. Membrane expression of the three antigens was first examined in 16 patients. LFA1, Mac1 and P150-95 were expressed on the AML cells of 15, 6 and 8 patients, respectively. Expression of these antigens did not change following short term incubation of the AML cells in the presence of CSFs. AML cells cultured in presence of saturating concentrations of monoclonal antibodies reacting with structures of these 3 antigens in order to abrogate their function did not suppress 3H-TdR uptake. Thus, no direct role for LFA1 and/or Mac1 and/or P150-95 antigens in mediating contact-induced AML proliferation could be demonstrated. It remains to be established which components are involved in the cell-cell contact-mediated upregulation of AML cell proliferation.

Antigens, CD↗

Structural and functional similarities between the major hemolymph protein of fall armyworm and cat C4 binding protein of the complement system.

We have investigated the structural and functional similarities between insect (armyworm) major larval serum protein (LSP-I) and mammalian (Cat) C4 binding protein (i) by comparing the major chymotryptic peptide patterns using sodium dodecyl sulfate polyacrylamide gel electrophoresis and (ii) their ability to prevent assembly of classical C3 convertase (EAC142). Both Cat C4 bp and Spodoptera LSP-I are composed of identical subunits of Mr = 75,000 and Mr = 80,000, respectively and generate the characteristic cleavage product of Mr = 50,000 on limited proteolysis. These observations are interpreted as an indication that the major hemolymph protein (LSP-I) of fall armyworm is a homologue of the C4bp of the mammalian complement system.

Amino Acids↗

The leukocyte integrin gene CD11c is transcriptionally regulated during monocyte differentiation.

The leukocyte integrins, LFA-1, Mac-1 and p150,95, are heterodimeric proteins that consist of a distinct alpha and a common beta subunit. The beta subunit gene (CD18) is constitutively expressed on all leukocytes, however, the alpha subunit genes for LFA-1, Mac-1 and p150,95 (CD11a, CD11b and CD11c, respectively) show cell- and developmental stage-specific expression. We investigated the regulation of the CD11c gene in the promyeloblastic leukemic cell line, HL60, following differentiation along the monocytic pathway with phorbol 12-myristate 13-acetate (PMA). The steady-state level of CD11c mRNA increased markedly over 48 hr from the undetectable level present before differentiation. The half-life of CD11c MRNA in differentiated HL60 cells was not unusually long and similar to that of CD18 mRNA found in both undifferentiated and differentiated cells which suggested that altered mRNA stability did not account for the appearance of CD11c mRNA. Nuclear run-on analysis revealed that transcriptional activation during differentiation resulted in the appearance of CD11c mRNA. Inhibition of protein synthesis by cycloheximide in undifferentiated HL60 cells did not result in transcriptional activation of the CD11c gene. However, there was a significant increase (approximately eight-fold) in the steady-state level of CD18 mRNA which was not the result of transcriptional activation. Inhibition of protein synthesis in differentiated HL60 cells did not lead to significant changes in the steady-state levels of either CD11c or CD18 mRNAs. These findings indicated that the CD11c gene is regulated by transcriptional mechanisms which require prior protein synthesis. Transcriptional activation of the CD18 gene as a result of differentiation with PMA also requires protein synthesis. Further, in the absence of protein synthesis in undifferentiated HL60 cells, post-transcriptional mechanisms stabilize CD18 mRNA.

Blotting, Northern↗

Regulation of the leukocyte integrin gene CD11c is mediated by AP1 and Ets transcription factors.

The leukocyte integrin gene, CD11c, encodes the chi subunit of the p150,95 (CD11c.CD18) receptor. Expression of the CD11c gene is predominately seen in monocytes, but has also been detected in some B- and T-cell neoplasms and in some large-cell lymphomas of uncertain origin. To elucidate the molecular mechanisms that govern the expression of CD11c, we have cloned and characterized the promoter region of this gene. The DNase I footprint and mobility shift analyses revealed five sites within the -86 to +40 region that interact with nuclear proteins. The -62 to -44 region contains two consensus sequences for AP1 (referred to as AP1-1 and AP1-2) and were shown to bind purified c-jun protein. Co-transfection of c-fos and c-jun expression constructs with a CD11c promoter-CAT fusion into HL60 cells led to a 6.7-fold increase in CD11c promoter activity. We show that c-fos and c-jun mediate their effects through both AP1-1 and AP1-2 which function in an additive manner. Regions -42 to -34 and -13 to -5 contain consensus sequences for Ets factors (referred to as Ets C and Ets A, respectively). Deletion of Ets resulted in a significant reduction in phorbol ester-induced expression of CD11c, whereas deletion of Ets A led to only a modest loss in CD11c expression. We show that Ets C cooperates with the AP1 sites to regulate CD11c expression.

Base Sequence↗

A novel population of cells in the peripheral blood of a cow with a neurofibrosarcoma.

An unusual population of leukocytes was observed in the peripheral blood of a cow with a large tumor burden, using flow microfluorimetry. This new population accounted for 50% of the total cells in the peripheral blood of this animal. These cells expressed the p150,95 molecule (bovine CD11c equivalent), identified by the monoclonal antibody C5B6, a molecule found on myeloid cells and activated lymphocytes. The new population did not express the pan T molecules BoCD2 (the bovine T11 equivalent), BoCD5 (the bovine CD5 equivalent) or surface IgM. Isolated peripheral blood mononuclear cells maintained in bulk culture were able to kill autologous tumor cells and BHV-1 infected A549 in an NK-like assay. In vitro cytotoxicity by cells cultured from the peripheral blood of this animal was augmented 2- to 4-fold by the addition of IL-2.

Animals↗

A monoclonal antibody to CD11c antigen inhibits the production of superoxide anion induced by concanavalin A in PMA-differentiated U-937 cells.

We have examined the effect of different monoclonal antibodies (MAb) to the CD11/CD18 family of surface antigens on the production of superoxide anion by phorbol myristate acetate (PMA)-differentiated U-937 cells upon stimulation with concanavalin A (Con A). The anti-CD11c MAb HC1/1 displayed a significant inhibition, whereas MAb to the other members of the CD11 family did not show a relevant inhibitory effect. These findings suggest that the CD11c antigen is involved in the triggering of the respiratory burst response by mononuclear phagocytic cells.

Antibodies, Monoclonal↗

Calcium-dependent aggregation of human serum amyloid P component.

Normal human serum or isolated human amyloid P component was ultracentrifuged on density gradients containing either 10 mM EDTA or different concentrations of Ca2+ between 0.15 and 2.15 mM. In the presence of Ca2+ concentrations of 1 mM or more human P component sedimented more rapidly than it did in the presence of lower Ca2+ levels or of EDTA. This phenomenon was due to Ca2+-dependent aggregation of P component molecules and did not require the presence of any other serum constituents. It was completely inhibited by incorporating a physiological concentration (40 mg/ml) of serum albumin in the gradients, suggesting that free ionized Ca2+ is required to promote aggregation of the P component. P component from the mouse and the plaice (Pleuronectes platessa L.), a marine teleost, did not undergo the same Ca2+-dependent aggregation as human P component. These observations resolve a discrepancy existing in the literature concerning the sedimentation rate of human P component in density gradient ultracentrifugation and shed new light on its behaviour with respect to Ca2+ which may be relevant to the deposition of P component in amyloidosis.

Amyloid↗

A study of a covalent-like interaction between soluble nascent C4b and C4-binding protein.

In the classical pathway of complement, the interaction between C4b and C4bp can be considered as a control of the C3 convertase formation. Purified C4-binding protein (C4bp) interacts with soluble nascent C4b to form covalent-like complexes; the interaction is also possible with nascent C4b-like C4, but not with C4, C4b or C4b-like C4. Formation of the complexes upon incubation of C4bp, C4 and C1s appears to involve a single link between a subunit of C4bp and the alpha' chain of C4b, as observed by SDS-polyacrylamide gel electrophoresis in reducing conditions (160 000 dalton band). In non-reducing conditions, a mixture of C4b-C4bp complexes is observed as a function of the C4b:C4bp molar ratio, with apparent molecular weights differing by a value of 210 000 and reflecting different C4b-C4bp associations. A maximum of five molecules of C4b are bound per molecule of C4bp, which appears to consist of 10 subunits of apparent molecular weight 72 000. The link between C4b and C4bp is partially destroyed by 1 M hydroxylamine at pH 9.0; its formation is strongly inhibited by 3.5 mM hydroxylamine or 60 mM methylamine at pH 9.0. These findings suggest an ester or amide bond between the activated carboxyl group of the thioester bridge in the alpha' or alpha chain of nascent C4b or C4b-like C4 and a hydroxyl or amino group of C4bp. Thus, C4bp might compete with other C4b acceptors such as membranes or IgG.

Carrier Proteins↗

HLA-G and NK receptor are expressed in psoriatic skin: a possible pathway for regulating infiltrating T cells?

Recent data have suggested that in psoriasis, the T-infiltrating cells could be submitted to regulatory pathways, possibly through natural killer receptors. HLA-G binds to different natural killer receptors and is able to inhibit T-cell functions. Because this molecule is induced by interferon-gamma, a major cytokine in psoriasis, we asked whether HLA-G and its receptor might be expressed in this disease. Specific RNAs for HLA-G1 and HLA-G5 were consistently found in lesional skin specimens, soluble HLA-G5 transcripts being found only in psoriasis. HLA-G protein was found in all psoriatic sections, but never in normal skin controls. Double labeling demonstrated that HLA-G-positive cells were CD68(+), CD11c(+) macrophages. The NKR ILT2 was also present in psoriatic skin, the T CD4(+)-infiltrating cells expressing indeed ILT2. The demonstration of HLA-G and ILT2 expression in psoriatic skin suggests that this pathway may act as an inhibitory feed back aimed to down-regulate the deleterious effects of T-cell infiltrate in this disease.

Alternative Splicing↗

Phenotypic characterization of five dendritic cell subsets in human tonsils.

Heterogeneous expression of several antigens on the three currently defined tonsil dendritic cell (DC) subsets encouraged us to re-examine tonsil DCs using a new method that minimized DC differentiation and activation during their preparation. Three-color flow cytometry and dual-color immunohistology was used in conjunction with an extensive panel of antibodies to relevant DC-related antigens to analyze lin(-) HLA-DR(+) tonsil DCs. Here we identify, quantify, and locate five tonsil DC subsets based on their relative expression of the HLA-DR, CD11c, CD13, and CD123 antigens. In situ localization identified four of these DC subsets as distinct interdigitating DC populations. These included three new interdigitating DC subsets defined as HLA-DR(hi) CD11c(+) DCs, HLA-DR(mod) CD11c(+) CD13(+) DCs, and HLA-DR(mod) CD11c(-) CD123(-) DCs, as well as the plasmacytoid DCs (HLA-DR(mod) CD11c(-) CD123(+)). These subsets differed in their expression of DC-associated differentiation/activation antigens and co-stimulator molecules including CD83, CMRF-44, CMRF-56, 2-7, CD86, and 4-1BB ligand. The fifth HLA-DR(mod) CD11c(+) DC subset was identified as germinal center DCs, but contrary to previous reports they are redefined as lacking the CD13 antigen. The definition and extensive phenotypic analysis of these five DC subsets in human tonsil extends our understanding of the complexity of DC biology.

CD13 Antigens↗

Complement inhibitor C4-binding protein in amyloid deposits containing serum amyloid P in Alzheimer's disease.

Complement C4-binding protein (C4BP) is a plasma protein that complexes with serum amyloid P and is involved in inhibition of the complement cascade. We used immunochemical methods to demonstrate C4BP in brains of subjects with Alzheimer's disease and normal controls. C4BP antibodies stained cerebral amyloid deposits that were indistinguishable from those recognized by antibodies to serum amyloid P or by thioflavin S. Immunoblots of solubilized proteins from cerebral cortex, cerebral microvessels and cerebrospinal fluid showed specific antibody reactivity to 70-90 kDa bands. Our results suggest the involvement of complement regulatory proteins in the pathogenesis of Alzheimer's disease.

Aged↗

The alpha2 and alpha5 integrin genes: identification of transcription factors that regulate promoter activity in epidermal keratinocytes.

We analysed the activity of the proximal promoters of the alpha2 and alpha5 integrin genes in human keratinocytes. An AP-1 site, found in the alpha5 but not the alpha2 promoter, bound c-Jun/c-Fos dimers and contributed strongly to promoter activity. Both promoters had a CCAAT/enhancer binding protein (C/EBP) binding site: the alpha5 C/EBP element enhanced activity, while the alpha2 site was a negative regulatory element. C/EBP overexpression repressed the activity of both promoters, but the effect was independent of occupancy of the identified C/EBP binding sites, suggesting interactions with additional transcription factors. We propose that upregulation of C/EBPs contributes to the inhibition of integrin transcription during keratinocyte terminal differentiation, while AP-1 factors play a role in the selective induction of the alpha5 gene during wound healing.

Antigens, CD↗

The effects of cysteine to alanine mutations of CD18 on the expression and adhesion of the CD11/CD18 integrins.

Of the 56 cysteines in the extracellular domain of the CD18 antigen (beta2 integrin subunit), corresponding ones are not found in 12 positions in the beta4, beta7, or beta8 integrin subunits. These 12 cysteines were mutated to alanines, either singly or in pairs, in CD18. All these mutants can support the expression of all three CD11/CD18 integrins. Transfectants expressing these variant integrins are generally more adhesive than the wild-type, suggesting that the cysteine residues, perhaps by engaging in disulphide bonds, may contribute to the maintenance of the CD11/CD18 integrins in a resting state.

Alanine↗

Beta 2 (CD11/CD18) integrins can serve as signaling partners for other leukocyte receptors.

Fig. 1 depicts our current thinking about the ways in which Mo1 and p150,95 form cis interactions with other leukocyte receptors. With respect to the associations of Mo1 with Fc gamma RIIIB and uPAR, the inhibitory effect of saccharides such as NADG suggests a lectin-carbohydrate interaction that may involve the recognition of Mo1's beta-glucan site for N-linked carbohydrates4 that are expressed by both Fc gamma RIIIB and uPAR. This hypothesis is supported by the results of Stockl et al., who showed that the binding of C-terminal-specific mAb VIM12 to Mo1, which enhances the phospholipase C-mediated release of Fc gamma RIIIB, was inhibited by NADG. However, unlike the sample lectin-carbohydrate interaction that appears to govern the association between Mo1 and Fc gamma RIIIB, effective Mo1-dependent uPAR signaling also depends on the binding of intact uPA to uPAR (the receptor-binding ATF of uPA proving insufficient to prime neutrophils for an enhanced burst response to FMLP). We speculate that ATF (residues 6-135) binds to uPAR while the carboxyl terminal fragment (residues 136-411), which includes a glycosylation site at residue 144, binds to the lectinlike site of Mo1, thus fostering the linkage between the two receptors. In support of this model is the fact that exposure of neutrophils to ATF reduced the degree of molecular proximity between Mo1 and uPAR (the latter probably occupied by endogenous intact uPA) and increased the molecular association between Mo1 and Fc gamma RIIIB (both as detected by quantitative RET). This hypothesis is analogous to the concept proposed by Nykjaer et al in which plasminogen activator inhibitor-1 initially binds to uPA to form a complex that secondarily binds to the alpha 2 macroglobulin receptor, leading to internalization of the complex. Whereas the contribution of intact uPA to the interaction between Mo1 and uPAR remains speculative (based on the indirect data available), no such ambiguity exists for the role of the LPS/LBP ligand in regulating the association between Mo1 and CD14. In this circumstance, no physical linkage exists between the two receptors without the ligand complex. This observation is consistent with the previously described affinity of the beta 2 integrins for LPS, leading to the notion that the LPS portion of the LPS/LPB complex binds to Mo1, serving to link it with LPS/LBP bound to CD14. The observed reversibility of the interactions between the integrin glycoproteins and uPAR or CD14 illustrates the fact that these associations can be highly dynamic and tied to cellular processes that include directed motility (Mo1-uPAR), adherence to substrates (Mo1-CD14), and energy metabolism (p150,95-uPAR). We speculate that the GPI-anchored receptor proteins serve as rapidly diffusible, expendable "scouts" for the beta 2 integrins, which serve to expand their ligand binding repertoire in a cis-acting fashion.

CD11 Antigens↗