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P Eggleton

Publications and source records attributed to P Eggleton.

At least 55 records · Page 3Linked to original sources

Identification of a gC1q-binding protein (gC1q-R) on the surface of human neutrophils. Subcellular localization and binding properties in comparison with the cC1q-R.

Human neutrophils have multiple C1q-binding proteins. Direct ligand-binding studies with the globular domain of C1q and two-dimensional Western blot analysis revealed two gC1q-binding proteins (gC1q-R): a 33,000 M(r) protein (pI 4.5) mainly in the neutrophil plasma membrane and an 80,000-90,000 M(r) protein (pI 4.1-4.2) located mainly in the granules. Direct binding studies showed that C1q bound to this higher molecular weight protein under physiological conditions. In contrast, anti-cC1q-R antibody, which recognizes a protein binding to collagenous tails of C1q, detected only a 68,000 M(r) protein in the plasma membrane. Both the 33,000 and 68,000 M(r) receptors appear early on the surface of differentiating HL-60 cells. On mature neutrophils, surface expression of both C1q receptors was evident, but no upregulation was observed upon stimulation. Phorbol myristate acetate treatment of neutrophils downregulated both the receptors from cell surface, and significant amounts of soluble gC1q-R were in cell media supernatants, suggesting receptor shedding or secretion. gC1q-R, unlike cC1q-R, did not bind to other C1q-like ligands, namely mannose binding protein, surfactant protein-A, surfactant protein-D, or conglutinin under normal ionic conditions, suggesting a greater specificity for C1q than the "collectin" type receptor (cC1q-R). Rather, gC1q-R only bound purified C1q, and the binding was enhanced under low ionic conditions and in the absence of calcium. The role of C1q receptor shedding and its biologic consequence remain to be defined, but may contribute to the diversity of C1q-mediated responses observed in many cell types.

Blotting, Western↗

Characterization of the human neutrophil C1q receptor and functional effects of free ligand on activated neutrophils.

The partial characterization and expression of the C1q receptor (C1q-R) in relation to other complement receptors present on the surface of neutrophils has been examined, as well as the effects of free C1q on cell function. A polyclonal anti-C1q-R antibody recognizes a 68-kD neutrophil surface protein. C1q-R expression was not upregulated upon warming, priming, or exposure to FMLP, but decreased after exposure to phorbol myristate acetate (PMA), because of shedding of the receptor into the extracellular medium, as detected by enzyme-linked immunosorbent assay. CR3 and CR1 expression was upregulated from intracellular pools after cell stimulation by PMA. No evidence of intracellular pools of C1q-R was found, as assessed by immunoblotting of subcellular fractions. But C1q-R appeared to be expressed early in cell differentiation, was detected on undifferentiated HL-60 cells, and like CR3 expression, increased upon 5 days differentiation towards a neutrophil lineage. However, C1q-R expression decreased upon additional culture, whereas CR3 expression continued to increase. A large variation in the percentage of peripheral cells expressing C1q receptors in donors was observed, ranging from 13% to 100%, contrasting with CR3 receptors that exhibited less variability. Interactions between free monomeric C1q and neutrophils were also studied. Incubation of stimulated neutrophils with 10 to 100 micrograms/mL C1q resulted in a further increase in CR3 expression and adherence to albumin-coated surfaces. Staphylococci opsonized with low quantities of C1q (0.1 to 1 microgram/mL) mediated a moderate and sustained respiratory burst in neutrophils, whereas a burst of similar magnitude was generated only with free C1q at concentrations 10- to 100-fold higher. Stimulation was only partially inhibited if cells were first treated with anti-C1q-R antibody, suggesting other C1q binding proteins may be present on the cell surface. In summary, neutrophil C1q receptor is approximately 68-kD, exhibits varying expression on different subjects, and is not upregulated from intracellular stores on exposure to soluble stimuli. Stimulated, but not resting, neutrophils selectively respond to raised levels of free C1q, resulting in altered cell function and enhanced CR3 receptor expression. These studies thus suggest complex roles for C1q in neutrophil function.

Antibodies↗

Calreticulin is released from activated neutrophils and binds to C1q and mannan-binding protein.

The Ca2+ storage protein calreticulin is associated with the endoplasmic reticulum and shares a high degree of amino acid homology with the surface receptor C1q-R. In this study, flow cytometric analysis detected calreticulin on the neutrophil surface, which decreased during stimulation probably as a consequence of shedding, as calreticulin was found by ELISA in the cell supernatants of stimulated cells. Antibodies raised against C1q-R and calreticulin demonstrated a high degree of immunological cross-reactivity for purified calreticulin as determined by dot blot analysis. Western blots of neutrophil subcellular fractions located calreticulin in both the cytosol and cell membrane fractions; C1q-R was largely confined to the cell membrane. Calreticulin and C1q-R both bind to C1q and mannan-binding protein. Therefore, calreticulin may be shed on cell activation and may be associated with the cell membrane, where it can potentially interact with C1q and serum lectins. The implications of this are discussed.

Calcium-Binding Proteins↗

Evidence for a protective role of pulmonary surfactant protein D (SP-D) against influenza A viruses.

We tested the hypothesis that pulmonary surfactant-associated lectins--surfactant proteins A and D (SP-A, and -D)--contribute to initial protective mechanisms against influenza A viruses (IAVs). SP-D potently inhibited hemagglutination activity of several strains of IAV as well as causing viral aggregation. SP-D enhanced neutrophil binding of IAV and neutrophil respiratory burst responses to the virus. Neutrophil dysfunction resulting from IAV exposure was diminished when the virus was pre-incubated with SP-D. Each of these effects was mediated by the calcium-dependent carbohydrate-binding property of SP-D. Native SP-D preparations of both human and rat origin, as well as recombinant rat SP-D, had similar activity. SP-A also inhibited IAV hemagglutination activity. We have previously reported that related mammalian serum lectins (mannose-binding lectin [MBL] and conglutinin) have similar effects. SP-D was at least 10-fold more potent at causing hemagglutination inhibition than were SP-A or MBL. SP-D was shown to contribute to potent anti-IAV activity of human bronchoalveolar lavage fluid. These results suggest that SP-D--alone, and in conjunction with SP-A and phagocytic cells--constitutes an important component of the natural immune response to IAV infection within the respiratory tract.

Animals↗

Hunterian Institute.

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Academies and Institutes↗

Heterogeneity in the circulating neutrophil pool: studies on subpopulations separated by continuous flow electrophoresis.

Isolated blood neutrophils from healthy individuals have been separated by continuous flow electrophoresis (CFE) as a Gaussian-shaped profile extending over 12-15 fractions, on the basis of differences in cell surface electrical charge. The fractions were pooled into three or four subpopulations; the mean electrophoretic mobilities of the least and most electronegative cells were 0.96 and 1.22 microns/sec/V/cm, respectively. Each pool of neutrophils was analyzed for functional and biochemical differences. Expression of respiratory burst in terms of the rate of superoxide production by the least and most electronegative cells to fixed concentrations of N-formyl-methionyl-leucyl-phenylalanine (fMLP, 10(-7) M) or phorbol myristate acetate (PMA, 1 microgram/ml) revealed that the least electronegative cells generated superoxide anion (O2-) at approximately twice the rate of the most electronegative cells. However, when lower concentrations of fMLP were used (1-5 x 10(-9) M), the most electronegative cells were most active. The least electronegative cells were also the most active in terms of phagocytosis and chemotaxis. In accordance with these differences in motile function, the basal F-actin content of the least electronegative cell pool was greater than the F-actin levels found in the most electronegative cells and remained so upon stimulation with fMLP. Such neutrophil heterogeneity as detected by CFE may be important in selective margination and recruitment of cells to inflammatory foci and sites of infection and may in part represent subsets of cells within the circulation that are primed in vivo to respond to inflammatory stimuli.

Actins↗

Fractionation of human neutrophils into subpopulations by countercurrent distribution: surface charge and functional heterogeneity.

Isolated blood neutrophils from normal healthy subjects were separated into fractions by sequential countercurrent distribution (CCD) in a charge-sensitive dextran/polyethylene glycol aqueous phase system. The neutrophils separated as a broad profile, and in a charged phase procedure the separation was based upon differences in cell surface electrokinetic properties, as confirmed by electrophoretic mobility measurements of fractions across the profile using analytical cytopherometry. The CCD cell fractions were generally pooled as three or four major subfractions for analysis of functional and metabolic differences. These included measurements of chemotaxis, phagocytosis, and respiratory burst. An inverse relationship was found between the electrophoretic mobility (EPM) of the subfraction pools and their functional competence, with the less electronegative cell fraction pools often as much as 2 to 3-fold more active than the more electronegative pools. This demonstration of electrokinetic and functional heterogeneity in 'resting' neutrophil subpopulations separated by CCD may reflect changes during their sojourn in the circulation that determine selective margination and recruitment of cells to inflammatory foci and sites of infection.

Cell Separation↗

Priming action of inositol hexakisphosphate (InsP6) on the stimulated respiratory burst in human neutrophils.

After priming by a number of different host, bacterial and chemical agents, human neutrophils may be stimulated to produce a greater respiratory burst than would be elicited by the stimulus alone. Other neutrophil functions may be similarly enhanced by pre-exposure to a priming agent. We describe here a new extracellular role for inositol hexakisphosphate (InsP6) as a priming agent for a variety of human neutrophil functional responses. Preincubation of the cells with InsP6 alone (up to 250 microM) has no stimulatory effect upon the basal production of reactive oxygen intermediates but the response to a subsequent stimulus (FMLP, PMA or phagocytic particles) is substantially enhanced. Levels 100-200% higher than 'stimulus only' controls have been recorded. Peak enhancement of the FMLP-induced oxidative response occurs after 1-2 min preincubation with InsP6 and the effect is dose-dependent (maximum at approx. 100 microM InsP6). As others have shown FMLP stimulation of superoxide anion production has no external Ca2+ dependence but the presence of low levels of Ca2+ and Mg2+ (0.1 mM) during priming appears to be an essential requirement for full expression. Reports of intracellular concentrations of InsP6 in mammalian cells in the 30-100 microM range suggest that the local release of this inositol polyphosphate from damaged or effect cells could have a physiologically important modulatory role on neutrophil functions.

Calcium↗

Dynamic changes in neutrophil cytoskeleton during priming and subsequent surface stimulated functions.

The naturally occurring inositol polyphosphate, inositol hexakisphosphate (InsP6, phytic acid) primes human neutrophils for enhanced responses to stimulatory agonists. Unlike other primers InsP6 has no effect at high doses (up to 500 microM) on the neutrophil's basal rate of superoxide production (O2-). Pretreatment of the cells for 2 min with InsP6 (100 microM) substantially enhances fMet-Leu-Phe (FMLP) (10(-7) M)-induced respiratory burst. In investigations of the dynamic aspect of neutrophil actin during priming and stimulation with FMLP the content of F-actin has been measured with and NBD (nitrobenz-2-oxa-1,3-diazole)-phallacidin assay. The induced assembly of F-actin is rapid (peaks at approximately 45 s) followed by depolymerization. In contrast, priming with InsP6, with or without FMLP stimulation, results in a sustained assembly of F-actin as visualized with a rhodamine-phalloidin staining technique. These changes in macromolecular status and distribution of F-actin during InsP6 priming occur in the absence of any other demonstrable functional responses and thus InsP6 may be a useful tool to follow early events in neutrophil functions or to monitor the presence of unprimed and preprimed subpopulations in the circulation. Since InsP6 is present in high concentrations in neutrophils (up to 100 microM), its release from damaged or effete cells may have a modulatory role on neutrophil functions.

Actins↗

Rapid method for the isolation of neutrophils in high yield without the use of dextran or density gradient polymers.

A simple, rapid and economical method for the isolation of polymorphonuclear leucocytes (PMNs) from whole blood is compared with dextran and dextran/Lymphoprep gradient techniques. The method eliminates the use of dextran and density gradient polymers such as Ficoll which have been shown to affect PMNs adversely. The technique is based on the lysis of red cells with isotonic ammonium chloride solution followed by differential centrifugation to separate the PMNs. This method gave a PMN yield of 73% (SD +/- 3.5) and a purity of 78% (SD +/- 2.5). Both morphology and functional activity were preserved, as assessed by bacterial phagocytosis and killing, chemotaxis, polarising response, superoxide production and adherence. In contrast, the dextran and dextran/Lymphoprep techniques gave yields of 50% and 15% with purities of 78% and 91% respectively. In a series of 14 PMN isolations, the differential centrifugation method gave an average yield of 63% with an average purity of 83%.

Ammonium Chloride↗