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N Dana

Publications and source records attributed to N Dana.

11 recordsLinked to original sources

Expression of a soluble and functional form of the human beta 2 integrin CD11b/CD18.

Polymorphonuclear cells and monocytes (phagocytes) are a critical component of host defense against infections. However, these cells also play a significant role in host tissue damage in many noninfectious diseases, such as ischemia-reperfusion injury syndromes and rejection of transplanted organs. The leukocyte adhesion molecule family CD11/CD18 (beta 2 integrins) is critical to the function of polymorphonuclear cells and monocytes in inflammation and injury. Inherited deficiency of CD11/CD18 impairs phagocyte chemotaxis, adhesion and transmigration across endothelium, and clearance of invading microorganisms through phagocytosis and cell-mediated killing. Furthermore, murine monoclonal antibodies directed against the CD11b/CD18 (CR3) heterodimer have been shown to reduce, by 50%-80%, phagocyte-mediated ischemia-reperfusion injury in several organ systems, such as the myocardium, liver, and gastrointestinal tract and to inhibit development of insulin-dependent diabetes mellitus in nonobese diabetic (NOD) mice. Expression of CD11b/CD18 in a soluble and functional form might therefore be potentially useful as an anti-inflammatory agent. We have now expressed a recombinant soluble heterodimeric form of this human beta 2 integrin, normally expressed as two noncovalently associated membrane-bound subunits. The secreted receptor exhibited direct and specific binding to its ligand, iC3b, the major complement C3 opsonin, and inhibited binding of polymorphonuclear cells to recombinant interleukin 1-activated endothelium.

Amino Acid Sequence

Point mutations impairing cell surface expression of the common beta subunit (CD18) in a patient with leukocyte adhesion molecule (Leu-CAM) deficiency.

The leukocyte adhesion molecules CD11a/CD18, CD11b/CD18, and CD11c/CD18 (Leu-CAM) are members of the integrin receptor family and mediate crucial adhesion-dependent functions in leukocytes. The molecular basis for their deficient cell surface expression was sought in a patient suffering from severe and recurrent bacterial infections. Previous studies revealed that impaired cell surface expression of Leu-CAM is secondary to heterogeneous structural defects in the common beta subunit (CD18). Cloning and sequencing of complementary DNA encoding for CD18 in this patient revealed two mutant alleles, each representing a point mutation in the coding region of CD18 and resulting in an amino acid substitution. Each mutant allele results in impaired CD18 expression on the cell surface membrane of transfected COS M6 cells. One substitution involves an arginine residue (Arg593----cysteine) that is conserved in the highly homologous fourth cysteine-rich repeats of other mammalian integrin subfamilies. The other substitution involves a lysine residue (Lys196----threonine) located within another highly conserved region in integrins. These data identify crucial residues and regions necessary for normal cell surface expression of CD18 and possibly other integrin beta subunits and define a molecular basis for impaired cell surface expression of CD18 in this patient.

Amino Acid Sequence

A dysfunctional Mo1 glycoprotein is present on a subline of the KG1 acute myelogenous leukemia cell line.

Mo1 is a glycoprotein heterodimer found on the surface of phagocytic cells. By use of monoclonal antibodies directed against various epitopes of the 155 kd alpha-chain of Mo1, two distinct functions of this glycoprotein have been identified. Mo1 serves as the receptor (CR3) for iC3b, one of the breakdown products of the third component of complement, and in addition appears to be involved in promoting cell-cell adhesion of granulocytes. In studies performed with a subline of the acute myelogenous leukemia tumor cell line KG1, we found cells from this subline (KG1m) incapable of iC3b-mediated binding despite these cells having surface Mo1. Five distinct epitopes on Mo1 identifiable on normal cells by a panel of anti-Mo1 alpha-chain monoclonal antibodies (including OKM10, thought to be identical to or close to the iC3b binding site) were equally present on KG1m by indirect immunofluorescence. The electrophoretic mobilities of both the alpha- and beta-chains of Mo1 derived from KG1m were identical to those isolated from normal granulocytes. To determine whether altered receptor mobility or decreased surface density of Mo1 was responsible for the lack of Mo1-related functions, binding to EiC3b of isolated Mo1 derived from KG1m lysate was measured. KG1m-derived Mo1 did not bind to EiC3b when compared with normal granulocyte-derived Mo1, suggesting that the lack of iC3b binding is not secondary to decreased surface receptor number or mobility. This subline of KG1 provides an excellent model for the study of the relationship between surface receptor structure and function.

Antibodies, Monoclonal

Leukocytes from four patients with complete or partial Leu-CAM deficiency contain the common beta-subunit precursor and beta-subunit messenger RNA.

Deficiency of a family of three leukocyte adhesion molecules (Leu-CAM) is associated with recurrent and life-threatening bacterial infections in man. Each of the three antigens, Mo1, LFA-1, and Leu M5 has a distinct alpha subunit noncovalently associated with a common beta subunit that appears to be required for the expression of these antigens on the cell surface. To investigate the molecular basis of Leu-CAM deficiency, we studied leukocytes from four unrelated patients suffering from complete or partial Leu-CAM deficiency using immunoprecipitation of metabolically labeled proteins, RNA extraction, and Northern blot analysis. We found that B cells from all four patients synthesized a normal sized beta subunit precursor that either failed to "mature" or matured only partially to the membrane expressed form. B cells from all four patients also had a single normal sized beta subunit mRNA of approximately 3.4 kb. Leu-CAM deficiency, in these unrelated patients, is not due to the absence of the beta chain gene or to aberrant splicing of its mRNA and are consistent with a defective beta subunit gene resulting in abnormal posttranslational processing of the synthesized molecule.

Antigens, Surface

Two functional domains in the phagocyte membrane glycoprotein Mo1 identified with monoclonal antibodies.

Granulocytes from patients genetically deficient in the leukocyte glycoprotein family, Mo1, LFA-1, and Leu-M5 (P150,94), have defective complement receptor type III (CR3) activity as well as abnormal adhesion-dependent functions such as spreading, chemotaxis, and phagocytosis. To determine the contribution of the Mo1 heterodimer deficiency to the various functional aberrations observed in deficient granulocytes, we mapped the functional domains of Mo1 using several monoclonal antibodies to this molecule. In addition to iC3b binding, two granulocyte adhesion functions were examined: Cell spreading on plastic coverslips and chemotaxis. One monoclonal antibody to Mo1, 44, inhibits all three functions. Other monoclonal antibodies (903, Leu-15, and OKM10) inhibit iC3b binding to granulocytes but have no effect on cell spreading and/or chemotaxis. Another antibody, 904, has no significant inhibition of iC3b binding but inhibits spreading on plastic and chemotaxis. These studies suggest the presence of two functional domains in Mo1: one involved in iC3b binding and the other in enhancing certain granulocyte adhesion-dependent functions.

Antibodies, Monoclonal

Increased expression of an adhesion-promoting surface glycoprotein in the granulocytopenia of hemodialysis.

To identify the mechanisms accounting for hemodialysis-induced granulocytopenia, we undertook quantitative kinetic studies of a granulocyte-adhesion-promoting surface glycoprotein (Mo1). In eight patients undergoing maintenance hemodialysis, there was a fivefold increase in the mean cell-surface expression of Mo1 within 15 minutes after the start of dialysis with a new cuprophane membrane. The peak increase in surface Mo1 coincided with the maximal drop in neutrophil count and with the peak rise in the plasma levels of the complement-activation products C5a desArg and C3a desArg. During dialysis on a membrane being reused for the fifth time, no significant complement activation, no increase in Mo1 expression, and no change in neutrophil count were seen. C5a desArg (but not C3a desArg) induced a comparable increase in Mo1 expression on normal granulocytes in vitro at concentrations similar to those measured in vivo. Chemotactic peptide-induced granulocyte aggregation (a reflection of increased cell-to-cell adhesiveness) was specifically blocked by mouse monoclonal antibodies to Mo1 in vitro. These data suggest that the increased expression of Mo1 on granulocytes in vivo is in part mediated by C5a (and C5a desArg). The quantitative increase in granulocyte-surface Mo1 may provide a mechanism for initiating leukoaggregation, sequestration of granulocytes, and neutropenia during hemodialysis.

Adult

Deficiency of two human leukocyte surface membrane glycoproteins (Mo1 and LFA-1).

Structural and functional features of a novel disorder characterized by recurrent bacterial infections are reviewed. This disease is associated with a number of phagocyte adhesion defects. In 10 patients, phenotypic analysis with monoclonal antibodies (MAb) revealed the same basic defect in all patients: deficiency of at least two leukocyte surface glycoproteins, Mo1 and LFA-1. These two antigens have distinct alpha subunits (Mo1 alpha = 155 kilodaltons, LFA-1 alpha = 177 kilodaltons) noncovalently linked to a common beta subunit (94 kilodaltons). Mo1 is closely associated with or identical to a receptor for the iC3b fragment of the third component of complement. LFA-1 is involved in lymphocyte proliferation, cytotoxicity, and natural killing. MAb directed to this family of glycoproteins induce functional defects in normal cells similar to those observed in deficient cells. In normal cells, the surface expression of these glycoproteins is regulated by the state of cell activation. Mitogens and alloantigens significantly increase the surface expression of LFA-1 on T lymphocytes. Stimuli that induce degranulation in neutrophils increase the surface expression of Mo1. In all patients with combined Mo1, LFA-1 deficiency, the predominant clinical manifestations were more characteristic of a phagocyte than a lymphocyte disorder. In vitro studies, however, reveal significant defects in phytohemagglutinin-induced proliferation that are more apparent at lower concentrations of the lectin. In some families, more than one sibling is affected. Intermediate levels of Mo1 were observed on granulocytes from both parents of one child. In one family, however, only the mother had significantly reduced levels of Mo1, which indicates heterogeneity in the inheritance of this disorder.

Animals

Supersensitivity to d-amphetamine- and apomorphine-induced stereotyped behavior induced by chronic d-amphetamine administration.

Guinea pigs exhibit an increased sensitivity to both d-amphetamine- and apomorphine-induced stereotyped behavior following chronic pretreatment with d-amphetamine. This chronic agonist or "innervation" supersensitivity is believed to be a reflection of an increased sensitivity of dopamine receptor sites within the corpus striatum to dopaminergic agonists. The appearance of dyskinetic movement disorders in humans following the chronic use of levodopa or amphetamine may be a manifestation of similarly increased dopamine receptor site sensitivity within the striatum. It is suggested that the animal model of "innervation" supersensitivity may be useful in the investigation of these human movement disorders.

Animals

Effect of chronic amphetamine exposure on stereotyped behavior: implications for pathogenesis of l-dopa-induced dyskinesias.

The effect of chronic high doses of d-amphetamine on amphetamine- and apomorphine-induced stereotyped behavior in guinea pigs was studied in an attempt to determine the mechanism involved in the development of L-DOPA-induced dyskinesias in parkinsonism. Prolonged pretreatment with suprathreshold doses of amphetamine decreased the threshold dosage of both amphetamine and apomorphine necessary to elicit stereotyped behavior. This suggests that chronic striatal dopamine stimulation may induce striatal dopamine receptor site hypersensitivity and that this type of induced hypersensitivity may play a role in the development of L-DOPA-induced dyskinesia. This mechanism may also play a role in the development of amphetamine-induced chorea and psychosis.

Amphetamine