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G D Ross

Publications and source records attributed to G D Ross.

At least 19 recordsLinked to original sources

Macrophage cytoskeleton association with CR3 and CR4 regulates receptor mobility and phagocytosis of iC3b-opsonized erythrocytes.

Alveolar macrophages (AM phi) were examined for CR1 (C3b receptor, CD35), CR3 (iC3b receptor; CD11b/CD18), and CR4 (iC3b receptor; CD11c/CD18) by assays for binding of C3-opsonized sheep erythrocytes (EC3b or EC3bi) and uptake of specific monoclonal antibodies (mAbs). In AM phi isolates from nine normal volunteers, 49% of cells bound EC3b and 71% bound EC3bi. Quantitation of receptors per cell with [125I]mAbs showed 8.5 x 10(4) CR4, 5.1 x 10(4) CR3, and 2.6 x 10(4) CR1. With most AM phi preparations, CR3 was the major receptor mediating attachment of EC3bi, despite the predominance of CR4 antigens. Anti-CR3 inhibited EC3bi rosettes by > or = 50%, whereas anti-CR4 blocked rosettes by < or = 18%. U937 cells differentiated with phorbol myristate acetate resembled AM phi in receptor expression but exhibited almost no CR4-dependent rosetting. Despite the relative inability of CR4 to mediate EC3bi attachment, AM phi ingestion of [51Cr]EC3bi was blocked by either anti-CR3 or anti-CR4. Two lines of evidence indicated that CR3 were more mobile within the membrane than were CR4. Immunofluorescence staining demonstrated patching and occasional capping of CR3, whereas CR4 remained uniformly distributed. This patching and capping of CR3 required the actin cytoskeleton, as it was inhibited by cytochalasin D. Modulation experiments using surfaces coated with anti-CR3 or anti-CR4 also showed that CR3 was more mobile than was CR4. However, there was some variation among AM phi isolates from different donors. In seven isolates, no CR4 modulation was produced with anti-CR4, whereas in six other isolates, CR4 was modulated by 66%. Incubation of cells in cytochalasin D increased modulation of both CR3 and CR4 on mAb-coated surfaces. Cells exhibiting increased mobility of CR4 showed an increased ability to form CR4-dependent EC3bi rosettes. The data are consistent with the hypothesis that CR3 and CR4 exhibit a variable association with the cytoskeleton that regulates their mobility and function. A relatively mobile subset of CR3 and/or CR4 mediates EC3bi attachment, whereas a relatively immobile subset of CR3 and/or CR4 fails to mediate EC3bi attachment but functions to promote ingestion of EC3bi.

Antigens, CD

Staurosporine inhibits neutrophil phagocytosis but not iC3b binding mediated by CR3 (CD11b/CD18).

C receptor CR3 (iC3b-receptor, CD11b/CD18) plays an essential role in several phagocytic and adhesive neutrophil functions. Recent evidence suggests that stimulus-induced phosphorylation of the CR3 beta-chain, CD18, may mediate certain neutrophil functions by transiently converting the molecule to an activated state. Staurosporine, a protein kinase C inhibitor that blocks PMA-induced CD18 phosphorylation, was used to study the functional relevance of this event. Neutrophils adhered to glass were assayed for binding and phagocytosis of iC3b-opsonized sheep E (EC3bi) in the presence or absence of PMA and/or staurosporine. Binding of EC3bi was markedly increased, not only by PMA, but also by staurosporine and by a combination of both agents (three- to sevenfold). The enhancement of rosetting by staurosporine was likely caused by increased surface expression of CR3 via exocytosis of specific granular contents. In contrast, staurosporine alone did not stimulate phagocytosis of EC3bi and markedly inhibited PMA-induced phagocytosis. Staurosporine also inhibited phagocytosis of yeast beta glucan particles, a CR3 ligand that, in contrast to EC3bi, is bound and ingested without additional prior treatment with PMA. beta glucan phagocytosis was associated with a low level of CD18 phosphorylation. Staurosporine did not block phagocytosis in general, because this agent had relatively little effect on FcR-mediated phagocytosis. These data demonstrate that phagocytosis mediated by CR3 requires activation of CR3 via a staurosporine-sensitive pathway. Increased binding of EC3bi, a function of increased surface expression of CR3, does not require activation of CR3 by such a pathway, confirming previous evidence for the independence of these two phenomena. A direct role for CD18 phosphorylation in the activation of CR3 for phagocytosis is consistent with these data.

Alkaloids

Phorbol ester induces transient focal concentrations of functional, newly expressed CR3 in neutrophils at sites of specific granule exocytosis.

Treatment of neutrophils with phorbol myristate acetate (PMA) increases surface expression of CR3 (iC3b-receptor; CD11b/CD18). This up-regulation was examined in whole-mount preparations of adherent neutrophils by stereo high voltage immunoelectron microscopy. In the absence of PMA, immunogold-labeled CR3 was uniformly distributed in the plasma membrane. After 5 to 15-min incubations with PMA, when the highest rates of specific granule exocytosis occurred, the average density of CR3 in the membrane doubled. During this time, dense foci of CR3 were observed in addition to the uniform distribution of CR3. These dense concentrations of CR3 colocalized with secreted lactoferrin (LF), a specific granule marker, above assemblies of cytoplasmic vesicles that were morphologically similar to specific granules and contained LF. After longer incubations in PMA, LF secretion ceased, LF staining became rare, and the high density areas of CR3 were no longer present. These data demonstrate that incipient CR3 appear on the cell surface in high concentration at sites of specific granule exocytosis and then diffuse out into the plasmalemma. PMA also induced shedding of CR3 from the cell surface at the cell margins on structures which also contained LF. Shed CR3 was immunoprecipitated from incubation supernatants and shown to be of identical subunit composition to surface CR3. Although others have shown that the mobile, incipient surface CR3 do not mediate neutrophil adherence to endothelium or homotypic aggregation, the current experiments demonstrated that such CR3 do mediate iC3b-dependent adhesion. The rapid appearance and subsequent dissipation of high concentrations of CR3 on the neutrophil surface caused by specific granule fusion may be essential for neutrophil function at sites of complement deposition.

Cytoplasmic Granules

Synthesis of complement component C5 by human B and T lymphoblastoid cell lines.

Human B and T lymphoblastoid cell lines were shown to synthesize C5. C5 synthesis was quantitated with an enzyme-linked immunosorbent assay (ELISA) that utilized a pool of C5-specific monoclonal antibodies (mAbs). Some level of C5 synthesis was detected in all eight of the B and T cell lines examined. In three of the cell lines, C5 was detected in both culture supernatants and whole cell detergent lysates, whereas in the other five cell lines, C5 was detected only in the cell lysates. Lymphoblastoid cells with both distributions of C5 were shown to synthesize a messenger RNA that was similar in size to the C5 mRNA expressed by the HepG2 hepatoma cell line. Estimates of the concentration of the C5 transcript in poly(A)+ RNA from lymphoblastoid and HepG2 cells suggested that C5 mRNA levels in the lymphoblastoid cell lines were comparable and about one-tenth of the levels in HepG2 cells. Lymphoblastoid C5, isolated by immunoaffinity chromatography from the supernatants of 35S-labeled cultures, had the same subunit composition as plasma-derived C5, but had an alpha subunit of slightly smaller relative mass.

B-Lymphocytes

Dissociation between increased surface expression of gp165/95 and homotypic neutrophil aggregation.

Whether homotypic neutrophil aggregation depends on the quantitative increase of gp165/95 molecules (Mac 1, CR3) recruited to the cell surface during activation was studied using mAb of the CD11b group that recognize distinct epitopes encoded by the alpha-subunit of this glycoprotein. After the addition of antibody MN41, neutrophils did not aggregate in response to a chemoattractant, FMLP. Blockade of preexisting surface gp165/95 by mAb MN41, followed by removal of the excess antibody from the mixture, was used to show that the molecules of gp165/95 newly expressed in response to stimulation by a chemoattractant were incapable of effectively mediating the induced cell-cell interactions of aggregation. Flow cytometry studies confirmed that binding of unlabeled antibody MN41 did not block further increases in surface expression of gp165/95 after stimulation with FMLP. These data suggest that molecules of gp165/95 exhibit two functionally distinct forms, one, present on the surface of freshly isolated neutrophils, that becomes competent to mediate the aggregation response upon activation by a stimulus and a second form that can be translocated to the cell surface by the stimulus but is greatly diminished if not lacking in the ability to participate in that aggregation event.

Antibodies, Monoclonal

Neutrophil and monocyte cell surface p150,95 has iC3b-receptor (CR4) activity resembling CR3.

Previous investigations of p150,95 (CD11c), the third member of the CD18 membrane glycoprotein family that includes CR3 (Mac-1 or CD11b) and LFA-1 (CD11a), had demonstrated that solubilized p150,95 bound to iC3b-agarose in a manner similar to isolated CR3. The current study showed that membrane surface p150,95 also expressed iC3b-receptor activity and was probably the same as the neutrophil receptor for iC3b- or C3dg-coated erythrocytes (EC3bi or EC3dg) that had been previously designated CR4. Normal neutrophil and macrophage CR4-dependent EC3bi rosettes were inhibited by monoclonal anti-p150,95, and cells from a patient with CD18 deficiency did not form CR4-dependent EC3bi rosettes. With neutrophils that bore large amounts of CR1 and CR3 and little p150,95, EC3bi were found primarily via CR1 and CR3, and demonstration of p150,95-dependent rosettes required large amounts of fixed iC3b, low-ionic strength buffer, and antibody blockade of CR1 and CR3. By contrast, culture-derived macrophages expressed eight times more p150,95 than did monocytes and EC3bi were bound to both p150,95 and CR3 when EC3bi bore small amounts of fixed iC3b and assays were carried out in isotonic buffer. Comparison of the amounts of CR1, CR3, and CR4 in various tissues by immunoperoxidase staining revealed that CR4 was the most abundant C3 receptor molecule on tissue macrophages, and suggested that CR4 might be involved in clearance of C3-opsonized particles or immune complexes.

Animals

Effect of antigen site and complement receptor status on the rate of cleavage of C3c antigen from red cell bound C3b.

C3b was bound to human red cells when serum complement was activated by addition of antibodies directed against different red cell antigens, and the rate of cleavage to C3dg was determined by assay for loss of bound C3c antigens using radiolabeled monoclonal anti-C3c. When C3b was bound by antibodies to antigens on branched-chain glycoproteins, cleavage to C3dg occurred more rapidly than when C3b was bound by antibodies to antigens closer to the red cell lipid bilayer. The rate of cleavage to C3dg also correlated directly with the number of complement receptors (CR1) per red cell, reflecting their role as cofactors in the cleavage of iC3b by factor I. Thus, the life span of C3b/iC3b on human red cells, which may be important for determining the rate and mechanism of clearance of C3-coated red cells, appears to depend on the CR1 status of the red cells and the characteristics of the antigen sites around which complement is bound.

Antigens

Specificity of membrane complement receptor type three (CR3) for beta-glucans.

The binding of the iC3b receptor (CR3) to unopsonized zymosan was shown to result from CR3 attachment to cell wall beta-glucans. A specificity of neutrophil responses for beta-glucan was first suggested by a comparison of yeast (Saccharomyces cerevisiae) cell wall components for stimulation of a neutrophil superoxide burst. Neutrophils responded poorly to heat-killed yeast, but gave increasingly better responses to cell wall polysaccharides devoid of proteins (zymosan) and nearly pure beta-glucan particles derived from zymosan. Zymosan triggered a burst that was 29% as great as that stimulated by phorbol myristate acetate (PMA), and beta-glucan particles stimulated a burst that was 72% as great as that produced by PMA. Phagocytic responses to yeast were also inhibited by soluble glucans but not by soluble mannans. Three types of experiments demonstrated a role for CR3 in these responses. First, neutrophil ingestion of either yeast or yeast-derived beta-glucan particles was blocked by monoclonal anti-CR3, fluid-phase iC3b, or soluble beta-glucan from barley. Monocyte ingestion of beta-glucan particles was also blocked by anti-CR3, but not by anti-CR1 or anti-C3. Second, the neutrophil superoxide burst response to either zymosan or beta-glucan particles was blocked by anti-CR3 or fluid-phase iC3b, and was completely absent with neutrophils from 3 patients with an inherited deficiency of CR3. Third, CR3 was isolated from solubilized neutrophils by affinity chromatography on beta-glucan-Sepharose.

Glucans

Role of complement receptor type three and serum opsonins in the neutrophil response to yeast.

Previous studies have suggested that neutrophil complement receptor type three (CR3) has two binding sites: (1) a site for fixed iC3b that does not trigger ingestion or a superoxide (O2-) burst, and (2) a function-triggering site for the beta-glucan component of yeast (Saccharomyces cerevisiae) cell walls. In the present study it was found that yeast (Y) coated with C3b (YC3b) or iC3b (YC3bi), prepared with purified complement in an IgG-free system, were avidly ingested ans stimulated a vigorous O2- burst, whereas sheep erythrocytes (E) bearing C3b or iC3b, were not ingested and did not give an O2- burst. YC3b and YC3bi contained an amount of fixed C3 that was approximately equal to serum-opsonized Y (OY), and produced O2- bursts comparable to OY. Experiments utilizing rabbit F(ab')2 anticomplement receptor type one (anti-CR1) to block fixed C3b binding to CR1, and monoclonal anti-CR3 (MN-41 or OKM1) to block fixed iC3b and Y cell wall binding to CR3, indicated that the O2- burst response to OY was primarily due to fixed iC3b and Y cell wall binding to CR3. Fixed C3b (that represented 33% of the fixed C3 on OY) and IgG anti-Y antibodies that bound to CR1 and Fc receptors, respectively, were found to contribute little to the response. Although YC3b did bind avidly to neutrophil CR1, the results suggested that the O2- burst response to YC3b was triggered after the initial YC3b binding by the secondary attachment of Y cell wall components to CR3. When neutrophils were treated with anti-CR3, 90% of neutrophils bound YC3b (via CR1), but phagocytosis and an O2- burst were completely absent. Similar findings were made with OKM1-treated neutrophils and YC3bi. Responses of OKM1-treated neutrophils were inhibited because only the iC3b-binding site of CR3 was ligated by the YC3bi. Thus, fixed C3b or iC3b on Y mediate avid binding of Y to neutrophils via CR1 or the iC3b-binding site of CR3, respectively, but ingestion and an O2- burst response are only triggered when glucans in the Y cell wall secondarily bind to neutrophils via the beta-glucan binding site of CR3.

Binding Sites

Identification of a spontaneously shed fragment of B cell complement receptor type two (CR2) containing the C3d-binding site.

CR2 is a 140-kilodalton glycoprotein expressed on B lymphocytes which binds to both C3d and Epstein-Barr virus (EBV). The present study identified a 72-kilodalton C3d-binding protein (gp72) in the spent culture media of Raji B lymphoblastoid cells as a spontaneously shed fragment of the 140-kilodalton CR2 molecule. Both polyclonal and monoclonal antibodies (AB) were used in several assay systems to detect antigenic determinants shared between the gp72 fragment and CR2. Rabbit antibodies to either intact CR2 or gp72 blocked C3d receptor activity, and this inhibitory activity was removed by absorption of anti-CR2 with purified gp72.OKB7, a monoclonal anti-CR2 AB that blocks both C3d and EBV binding to CR2, reacted specifically with both CR2 and gp72, whereas both anti-B2 and HB-5 monoclonal anti-CR2 AB, that block neither of these receptor sites, were unreactive with gp72. The data suggested that the gp72 fragment was not present as such in intact cells, but rather was a product of cells generated by proteolysis of CR2. Thus, intrinsically labeled gp72 was isolated from Raji cell media by affinity chromatography on OKB7-Sepharose, but only intact CR2 was isolated from the Raji cell fraction solubilized in the presence of protease inhibitors. Several lines of evidence suggested that gp72 was not a second type of C3d receptor that was distinct from CR2. First, Raji cells expressed nearly identical amounts of OKB7 and HB-5 epitopes when analyzed by flow cytometry or radioimmune assay, excluding the possibility that B cells expressed OKB7 antigens in both CR2 and a distinct HB-5-negative C3d receptor. Second, all Raji cell surface C3d receptor activity was associated with HB-5-reactive CR2 molecules. We conclude that gp72 represents a spontaneously shed proteolytic fragment of CR2 that contains the C3d-binding site and the closely associated OKB7 epitope.

B-Lymphocytes

Clinical and laboratory features of patients with an inherited deficiency of neutrophil membrane complement receptor type 3 (CR3) and the related membrane antigens LFA-1 and p150,95.

Over the last 3 years a group of more than 20 patients has been described worldwide who have a similar history of recurrent bacterial infections and an inherited deficiency of three related leukocyte membrane surface antigens known as CR3, LFA-1 (lymphocyte function-associated antigen type 1), and p150,95 (function unknown). These antigens share a common beta-chain structure linked noncovalently to one of three distinct alpha-chain types. It is believed that the patients with this disease have a reduced or absent ability to synthesize the common beta subunit of the antigen family, resulting in absent or reduced expression of all three antigen family members on different leukocyte types. Neutrophils have a reduced phagocytic and respiratory burst response to bacteria and yeast as well as a reduced ability to adhere to various substrates and migrate into sites of infection. In vitro functional studies of normal neutrophils, monocytes, and lymphocytes treated with monoclonal antibodies to the individual alpha and beta chains of these antigens suggest that most of the clinical features of the patients may be due to the neutrophil and monocyte deficiency of CR3. Although natural killer-cell activity is diminished or absent, no immune deficiency of the patients' lymphocytes attributable to the absence of LFA-1 has been detected. Diagnosis of this disease has been facilitated by the commercial availability of monoclonal antibodies specific for the alpha chains of CR3 and p150,95.

Adolescent

p150/95, Third member of the LFA-1/CR3 polypeptide family identified by anti-Leu M5 monoclonal antibody.

Monoclonal antibody (mAb) anti-Leu M5 reacts with a two-chain molecule composed of a 150-kDa alpha subunit noncovalently associated with a 95-kDa beta subunit and probably is specific for an epitope on the 150-kDa alpha chain. This p150/95 antigen is the third member of a family of polypeptides sharing a common 95-kDa beta chain, which includes the lymphocyte function-associated antigen LFA-1 (p177/95) and complement receptor CR3 (Mo1/MAC-1/OKM1; p165/95) antigens. Sequential immunoprecipitation with anti-p95 beta chain mAb specifically removed the antigens detected by anti-LFA-1, anti-CR3 and anti-Leu M5 mAb. Certain patients with recurrent bacterial infections are genetically deficient in expression of the LFA-1 and Mo1 antigens, and have impaired granulocyte function. Granulocytes from a patient with this disease also failed to react with anti-Leu M5. Stimulation of normal granulocytes with f-Met-Leu-Phe, C5a-desArg, or calcium ionophore resulted in increased expression of Mo1 and Leu M5 antigens on the cell surface, but did not significantly increase expression of LFA-1 antigen. In functional assays, anti-Leu M5 did not inhibit T cell-mediated or natural killer cell-mediated cytotoxicity. In addition, anti-Leu M5 neither inhibited the binding of complement-coated particles to CR1 or CR3 nor did it affect the binding of EC3dg to neutrophils (CR4). These studies clearly indicate that the p150/95 antigen recognized by the anti-Leu M5 antibody is a structurally distinct member of the LFA-1/CR3 family.

Antibodies, Monoclonal

gp140, a C3b-binding membrane component of lymphocytes, is the B cell C3dg/C3d receptor (CR2) and is distinct from the neutrophil C3dg receptor (CR4).

gp140, previously identified as a 140-kDa C3b-binding membrane glycoprotein present on Raji cell surface, was shown to be the C3dg/C3d receptor of B lymphocytes (CR2). Specific polyclonal anti-gp140, prepared by immunizing rabbits with this highly purified C3 receptor, blocked Raji cell rosettes with EC3b, EC3bi, EC3dg and EC3d, and also blocked normal lymphocyte rosettes with EC3dg and EC3d without affecting CR1 or CR3 activity. Moreover, a monoclonal anti-C3 (C3b/#130), described by others as reacting with the d region highly expressed on EC3bi, EC3dg and EC3d and poorly exposed on EC3b, completely inhibited EC3bi, EC3dg and EC3d rosettes with Raji cells, but had no effect on EC3b rosettes. Treatment of Raji cells with rabbit anti-gp140 blocked the uptake of three 125I-labeled monoclonal antibodies anti-B2, HB-5 and OKB7 reported to react with C3d-binding proteins, indicating that each of these monoclonal antibodies recognizes epitopes present on gp140. The neutrophil C3dg receptor was examined to determine its relationship to lymphocyte CR2. While neutrophil rosettes with EC3d were undetectable, a specificity for C3d was suggested by the inhibition of EC3dg rosettes by fluid phase C3d-complexes bearing no detectable C3dg. However, such neutrophil EC3dg and EC3bi rosettes were not inhibited by rabbit anti-gp140 nor an excess of anti-CR1, anti-CR2, and anti-CR3. In addition, neutrophils did not bind 125I-labeled anti-gp140, anti-B2, or HB-5. Thus, the neutrophil C3dg receptor is distinct from gp140, the lymphocyte CR2, and should be designated CR4.

Antibodies, Monoclonal