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W Kolanus

Publications and source records attributed to W Kolanus.

36 records · Page 2Linked to original sources

FAN, a novel WD-repeat protein, couples the p55 TNF-receptor to neutral sphingomyelinase.

The initiation of intracellular signaling events through the 55 kDa tumor necrosis factor-receptor (TNF-R55) appears to depend on protein intermediates that interact with specific cytoplasmic domains of TNF-R55. By combined use of the yeast interaction trap system and a peptide scanning library, the novel WD-repeat protein FAN has been identified, which specifically binds to a cytoplasmic nine amino acid binding motif of TNF-R55. This region has been previously recognized as a distinct functional domain that is both required and sufficient for the activation of neutral sphingomyelinase (N-SMase). Overexpression of full-length FAN enhanced N-SMase activity in TNF-treated cells, while truncated mutants of FAN produced dominant negative effects. The data suggest that FAN regulates ceramide production by N-SMase, which is a crucial step in TNF signaling.

Amino Acid Sequence↗

Alpha L beta 2 integrin/LFA-1 binding to ICAM-1 induced by cytohesin-1, a cytoplasmic regulatory molecule.

The avidity of integrin adhesion receptors for extracellular ligands is subject to dynamic regulation by intracellular programs that have yet to be elucidated. We describe here a protein, cytohesin-1, which specifically interacts with the intracellular portion of the integrin beta 2 chain (CD18). The molecule shows homology to the yeast SEC7 gene product and bears a pleckstrin homology (PH) domain. Overexpression of either the full-length cytohesin-1 or the SEC7 domain induces beta 2 integrin-dependent binding of Jurkat cells to ICAM-1, whereas expression of the isolated cytohesin-1 PH domain inhibits T cell receptor-stimulated adhesion. Similar inhibition is not exhibited by PH domains taken from other proteins, showing that the interaction is specific and that individual PH domains are capable of discriminating between alternative targets.

Amino Acid Sequence↗

The human low affinity immunoglobulin G Fc receptor III-A and III-B genes. Molecular characterization of the promoter regions.

The human Fc receptor with low affinity for IgG (Fc gamma RIII, CD16) is encoded by two nearly identical genes, Fc gamma RIII-A and Fc gamma RIII-B, resulting in tissue-specific expression of alternative membrane-anchored isoforms. The transmembrane CD16 receptor forms a heteromeric structure with the Fc epsilon RI (gamma) and/or CD3 (zeta) subunits on the surface of activated monocytes/macrophages, NK cells, and a subset of T cells. The expression of the glycosylphosphatidylinositol-anchored CD16 isoform encoded by the Fc gamma RIII-B gene is restricted to polymorphonuclear leukocytes and can be induced by Me2SO differentiation of HL60 cells. We have isolated and sequenced genomic clones of the human Fc gamma RIII-A and Fc gamma RIII-B genes, located their transcription initiation sites, identified a different organization of their 5' regions, and demonstrated four distinct classes of Fc gamma RIII-A transcripts (a1-a4) compared with a single class of Fc gamma RIII-Bb1 transcripts. Both CD16 promoters (positions -198 to -10) lack the classical "TATA" positioning consensus sequence but confer transcriptional activity when coupled to the human lysozyme enhancer. Both promoters also display different tissue-specific transcriptional activities reflecting the expected gene expression of Fc gamma RIII-A and Fc gamma RIII-B in NK cells versus polymorphonuclear leukocytes. Within the -198/-10 fragments, the sequences of the two CD16 genes have been identified to differ in 10 positions. It is suggested that these nucleotide differences might contribute to cell type-specific transcription of Fc gamma RIII genes.

Amino Acid Sequence↗

T cell activation by clustered tyrosine kinases.

Many cellular recognition events in the immune system are initiated by aggregation of cell surface receptors that lack intrinsic protein-tyrosine kinase activity. Receptor-associated kinases related to the src protooncogene product have been found to be essential for cellular activation and may interact with the cytoplasmic domains of the antigen receptor chains. We show here that anti-CD16 antibody-mediated clustering of chimeric transmembrane proteins bearing a CD16 extracellular domain and a Src family kinase intracellular domain is not sufficient to initiate a cellular activation signal in T cells, whereas clustering of similar chimeras bearing Syk or ZAP-70 kinase sequences triggers calcium mobilization. Aggregation of the Syk chimera alone, or coaggregation of chimeras bearing Fyn and ZAP-70 kinases, suffices to initiate cytolytic effector function. The pattern of tyrosine phosphorylation induced by clustering of the Syk chimera is similar to the pattern induced by aggregation of T cell receptor.

Amino Acid Sequence↗

Ti gamma A + delta TCS1+ T cells in human thymus. Analysis of the T cell receptor.

TcR1+ T cells in peripheral blood have been shown to express in an exclusive fashion either the Ti gamma A or the delta TCS1 epitope. Here, we characterize a subset of TcR1+ T cells in fresh thymus co-expressing the Ti gamma A and delta TCS1 epitopes. TcR1dim and TcR1bright clones can be distinguished. Biochemical and molecular studies on both types of clones generated from these thymocytes reveal a unique T cell receptor structure characterized by the use of a V gamma 9/C gamma 2-encoded 55-kDa gamma chain nondisulfide linked to a V delta 1-encoded delta chain.

Cell Line↗

Lineage-independent activation of immune system effector function by myeloid Fc receptors.

An emerging theme in immunology finds receptors which initiate cellular effector programs forming multichain complexes in which the ligand recognition elements associate with one or more 'trigger molecules' whose aggregation initiates a signal transduction cascade. The sequence motifs constituting the active sites of these trigger molecules are found in the T cell and B cell antigen receptors, and some Fc receptors, and appear to be central to effector function activation. For example, of the many molecules that mimic or potentiate the action of the T cell antigen receptor (TCR), none have yet been found to initiate effector programs autonomously in cells lacking TCR. We have devised two strategies to study activation mediated by myeloid Fc receptors, which appear not to associate with trigger molecules: the use of primary human cytolytic T cells as surrogate effector cells for genetically delivered receptors, and the use of vaccinia virus vectors to introduce genetically modified receptors into primary human monocytes. Using these approaches, we have found that the cytoplasmic domains of two Fc receptors show comparable function to equivalent domains of the trigger molecule family, but are not homologous to members of that family.

Amino Acid Sequence↗

CD62/P-selectin recognition of myeloid and tumor cell sulfatides.

CD62, also called PADGEM protein, GMP-140, or P-selectin, is a granule membrane protein of endothelial cells and platelets that is mobilized to the plasma membrane following exposure to mediators such as thrombin, histamine, complement components, or peroxides. Data presented to date suggest that one ligand of CD62 includes CD15 (Lewis x determinant) and sialic acid. We show here that sulfatides, heterogeneous 3-sulfated galactosyl ceramides, are an apparently unrelated ligand of CD62. Sulfatides are expressed on the plasma membrane of, and are excreted by, granulocytes, and constitute the principal ligand for CD62 on the plasma membrane of some tumor cells. CD62 binds to sulfatides adsorbed to plastic as avidly as it binds to myeloid or tumor cells. We find that granulocytes excrete sulfatides at a rate predicted to allow them to be rapidly released from CD62 once they have exited the bloodstream.

Animals↗

Activation of CD16+ effector cells by rheumatoid factor complex. Role of natural killer cells in rheumatoid arthritis.

The role of natural killer (NK) cells in rheumatoid arthritis (RA) remains unclear. A pathogenetic function of rheumatoid factors (RF) also has not been defined. In the present studies, natural killer (NK) cells were examined as a model for FC gamma receptor type III-positive (FC gamma RIII+) cells, with regard to their interaction with RF. NK cell antigen CD16 (FC gamma RIII) and CD56 expression and functional NK and antibody-dependent cell-mediated cytotoxicity (ADCC) activity were compared in peripheral blood lymphocytes and autologous synovial fluid lymphocytes (SFL) of RA patients. Peripheral blood lymphocytes and SFL showed normal CD56 expression. In contrast, both the frequency and the density of CD16 antigen were decreased in SFL. Furthermore, diminished NK cytotoxicity and a significant decrease in ADCC were observed in SF NK cells. In subsequent in vitro studies with normal fresh NK cells, it was demonstrated that IgG-containing RF complexes from RA patients induced a modulation of FC gamma RIII structure from the NK cell surface, a decrease in NK activity, and a complete loss of ADCC. When purified RF was incubated with NK-enriched cell lines from RA patients, increased transcription and subsequent production of interferon-gamma and tumor necrosis factor alpha were observed. These data suggest a direct involvement of RF complexes in the pathogenetic process of chronic inflammation in RA.

Antibody-Dependent Cell Cytotoxicity↗

Recognition by ELAM-1 of the sialyl-Lex determinant on myeloid and tumor cells.

Endothelial leukocyte adhesion molecule-1 (ELAM-1) is an endothelial cell adhesion molecule that allows myeloid cells to attach to the walls of blood vessels adjacent to sites of inflammation. ELAM-1 recognizes the sialyl-Lewis X (sialyl-Lex) determinant, NeuAc alpha 2-3Gal beta 1-4(Fuc alpha 1-3)GlcNAc-, a granulocyte carbohydrate also found on the surface of some tumor cell lines. Binding of myeloid cells to soluble ELAM-1 is inhibited by a monoclonal antibody recognizing sialyl-Lex or by proteins bearing sialyl-Lex, some of which may participate in humoral regulation of myeloid cell adhesion. Stimulated granulocytes also release an inhibitor of ELAM-1 binding that can be selectively adsorbed by monoclonal antibody to sialyl-Lex.

Amniotic Fluid↗

The PIG-anchoring defect in NK lymphocytes of PNH patients.

Paroxysmal nocturnal hemoglobinuria (PNH) is clinically characterized by intravascular hemolysis, hemoglobinuria, iron deficiency anemia, and venous thrombosis. Pathophysiologically the disease has now been generally accepted as an acquired defect of phosphatidylinositol glycan (PIG)-anchored molecules on the cell surface of bone marrow-derived cells. This defect is functionally characterized by an abnormal susceptibility to complement-mediated lysis and has been described on erythrocytes, granulocytes, monocytes, and platelets. In contrast, contradictory data exist so far on the involvement of lymphocytes and natural killer (NK) cells. Using monoclonal antibodies (MoAbs) against newly defined PIG-linked surface structures such as CD48, CD55, and CD59, which are homogeneously expressed on lymphocytes of normal donors, we analyzed lymphocytes and their subpopulations in nine PNH patients by two color immunofluorescence. Our results showed that CD3+ T cells as well as CD16+ NK cells are at least partially involved in the deficient PIG-molecule surface expression. To more clearly define the defect in PNH, we generated NK clones from a PNH patient. Phenotypic analysis of these NK clones showed that they either were positive (n = 3) for PIG-linked surface structures such as CD48, CD55, and CD59 (eg, NKP1) or were completely negative (n = 7) for all of them (eg, NKP1). In functional tests the PIG-molecule negative clone NKP2 showed increased susceptibility to human complement compared with the PIG molecule positive clone NKP1. When analyzing the mRNA levels of the PIG-linked molecules CD55 and CD59 there was no difference at all between the two clones. We conclude from our data that NK cells as well as other lymphocyte subpopulations are involved in the PIG-linkage defect of PNH. These NK clones with differential expression of PIG-linked surface structures present for the first time ex vivo mutant cell lymphocyte lines that carry the defect leading to PIG deficiency in PNH.

Antibodies, Monoclonal↗

Human natural killer clones enhance in vitro antibody production by tumour necrosis factor alpha and gamma interferon.

To determine whether NK cells are involved in the regulation of the antibody response, we studied the effects of human NK clones on B-cell growth and differentiation and the mechanisms involved. We demonstrate that various human NK clones enhance the immunoglobulin production of SAC/rIL-2-activated B cells, e.g. IgG and IgM by up to 230% and anti-tetanus toxoid antibodies by up to 430%. Cell-cell interactions via cell-surface structures, e.g. the CD11a/CD18 molecule, were found to be critical. Subsequently the NK-mediated B-cell regulation involves cytokines, since cell-free supernatants obtained by 48-h cultures of NK clones exerted BCGF and BCDF activity. Neutralization studies and direct determination characterized these cytokines as IFN-gamma and TNF-alpha. The cytokine production of NK clones could be triggered by activated B cells only. Northern blot analysis demonstrated that activated B cells in co-culture with NK clones were able to induce accumulation of mRNA transcripts for IFN-gamma and TNF-alpha in NK cells.

Antibodies, Monoclonal↗

[Granulomatous inflammation with combined immunodeficiency].

Pulmonary infection with mycobacterium tuberculosis and clonal B-cell expansion is described in a 26-year-old woman with granulomatous disease of lung, liver, and bone marrow as well as a late onset common variable immunodeficiency syndrome (CVID).

Adult↗

The structure and light-dependent transient expression of a nuclear-encoded chloroplast protein gene from pea (Pisum sativum L.).

A nuclear gene encoding a light-induced transiently expressed protein that is localized in the chloroplast has been isolated from an EMBL3 library of pea DNA. The gene is a member of a multigene family. The sequence of the gene contains the complete reading frame of previously characterized cDNA clones and two introns in the 5' region of the protein coding sequence. Primer extension and S1 nuclease studies have defined the cap site. Two TATA boxes are found 5' to the initiating methionine codon. Only a limited homology is found between the presequence of the gene and transit sequences of other previously sequenced precursors. Isolated nuclei of pea have been labelled and the in vitro synthesized transcripts analysed. The results show that the light-dependent expression of the gene family is regulated at the level of transcription.

Amino Acid Sequence↗