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Biomedical subjects

J Kochan

Publications and source records attributed to J Kochan.

At least 19 recordsLinked to original sources

An improved procedure for the development of human mast cells from dispersed fetal liver cells in serum-free culture medium.

The in vitro development of human mast cells from fetal liver cells with recombinant human stem cell factor in serum-containing RPMI was compared to that in AIM-V media with and without serum. Compared to serum-containing media, AIM-V medium caused mast cells to develop earlier and in greater numbers. By 2 weeks, about 60% of cells in serum-free AIM-V medium were phenotypic mast cells, approximately 2 times the percentages in serum-containing media. By 6 weeks the percentages of mast cells were > or =80% under all conditions, but the number of mast cells was 3-4-fold greater in serum-free AIM-V medium than in serum-supplemented media. Mast cells obtained in serum-free AIM-V medium exhibited rounded nuclei, like tissue-derived mast cells; mast cells obtained in serum-supplemented media had segmented nuclei. By 10-12 weeks of culture about 40% of the AIM-V-derived cells showed strong chymase immunocytochemical staining, a pattern observed for only 14% of the cells in serum-containing media. AIM-V medium is a suitable medium for the development of human mast cells in vitro, and permits an earlier, more selective and greater expansion of mast cells than serum-containing media.

Cell Count↗

Expression of the high-affinity receptor for IgE on bronchial epithelial cells of asthmatics.

Bronchial epithelial cells are the first cells to come into contact with inhaled pneumoallergens. It has been suggested that these cells may play an important role in the allergic response, and indeed bronchial epithelial cells of some atopic asthmatic subjects have been shown to express the low-affinity receptor for IgE on their surface. In this report we demonstrate, using bronchial biopsies, that bronchial epithelial cells of some asthmatic subjects express both the alpha and gamma chains of the high-affinity receptor for IgE (Fcepsilon RI) on their surface and that they are capable of fixing IgE. Second, using reverse transcription-polymerase chain reaction, we show that both control and asthmatic subjects have messenger RNA for Fcepsilon RI. Finally, we demonstrate that this receptor may be functional since stimulation of the cells with the antibody to the alpha chain of Fcepsilon RI results in the liberation of 15-hydroxyeicosatetraenoic acid from epithelial cells of asthmatic, but not control, subjects or subjects suffering from chronic bronchitis. These data suggest that bronchial epithelial cells from at least some asthmatic subjects express a functional high-affinity receptor for IgE and it is therefore possible that these cells may be able to interact directly with inhaled allergens.

Adolescent↗

Interaction of phosphorylated FcepsilonRIgamma immunoglobulin receptor tyrosine activation motif-based peptides with dual and single SH2 domains of p72syk. Assessment of binding parameters and real time binding kinetics.

To examine the characteristics of the interaction of the FcepsilonRIgamma ITAM with the SH2 domains of p72(syk), the binding of an 125I-labeled dual phosphorylated FcepsilonRIgamma ITAM-based peptide to the p72(syk) SH2 domains was monitored utilizing a novel scintillation proximity based assay. The Kd for this interaction, determined from the saturation binding isotherm, was 1.4 nM. This high affinity binding was reflected in the rapid rate of association for the peptide binding to the SH2 domains. Competition studies utilizing a soluble C-terminal SH2 domain knockout and N-terminal SH2 domain knockouts revealed that both domains contribute cooperatively to the high affinity binding. Unlabeled dual phosphorylated peptide competed with the 125I-labeled peptide for binding to the dual p72(syk) SH2 domains with an IC50 value of 4.8 nM. Monophosphorylated 24-mer FcepsilonRIgamma ITAM peptides, and phosphotyrosine also competed for binding, but with substantially higher IC50 values. This, and other data discussed, suggest that high affinity binding requires both tyrosine residues to be phosphorylated and that the preferred binding orientation of the ITAM is such that the N-terminal phosphotyrosine occupies the C-terminal SH2 domain and the C-terminal phosphotyrosine occupies the N-terminal SH2 domain.

Amino Acid Sequence↗

[Accessory renal arteries in human fetuses].

Using conventional anatomical methods, renal arteries of 140 human fetuses were studied. It was found (21.1%) that the accessory renal arteries occurred in a three-fold manner: 1. as single arteries (19.2%), 2. as double arteries (2.1%) and 3. as triplex arteries (0.7%). More often they originated from the right part of the circumference of the abdominal aorta, mainly in the female fetuses. These arteries penetrated the following segments of the kidney: the inferior (12.9%), the superior (2.3%), the anterior inferior (2.8%), the posterior (2.1%) and the anterior superior (1.5%). They crossed the renal pelvis more often in front (12.2%) than from behind of it (5%). The frequency of the occurrence of the accessory arteries depends not from the age of the fetus.

Aorta, Abdominal↗

Endocytosis of urokinase-plasminogen activator inhibitor type 1 complexes bound to a chimeric transmembrane urokinase receptor.

The urokinase receptor (uPAR) is linked to plasma membranes through a glycosylphosphatidylinositol (GPI) anchor. It has been posited that the GPI anchor facilitates clearance of uPAR-bound complexes between two chain urokinase (tcuPA) and plasminogen activator inhibitor type 1 (PAI-1) by the alpha 2-macroglobulin receptor (alpha 2MR) which permits re-expression of unoccupied uPA receptors on the cell surface. To test this hypothesis we compared internalization and degradation of 125I-labeled tcuPA-PAI-1 by COS cells expressing either transfected wild-type, GPI-linked uPAR (uPAR/GPI), or a chimeric receptor composed of the extracellular domains of uPAR linked to the transmembrane and cytosolic domains of the alpha chain (p55 subunit) of the interleukin-2 receptor (uPAR/IL-2R alpha). The kinetics of binding, internalization and degradation of tcuPA-PAI-1 by COS cells expressing each form of uPAR were virtually identical. However, internalization of complexes by uPAR/IL-2R alpha was more susceptible to inhibition by recombinant soluble 39-kDa alpha 2MR-associated protein (RAP) which competes for binding of tcuPA-PAI-1 complexes to alpha 2MR (p < 0.001), and the internalization was accompanied by a greater reduction in the number of surface uPAR/IL-2R alpha, than uPAR/GPI (p < 0.05). These studies indicate that the rate of internalization of tcuPA-PAI-1 is governed primarily by the extracellular domains of uPAR, whereas the GPI anchor may facilitate internalization of complexes and re-expression of uPAR when binding sites on alpha 2MR are limiting.

Animals↗

CD3 zeta dependence of the CD2 pathway of activation in T lymphocytes and natural killer cells.

In T lymphocytes, signal transduction through the CD2 adhesion molecule requires surface expression of the CD3-Ti T-cell receptor (TCR) complex. In contrast, in natural killer (NK) cells, CD2 functions in the absence of a TCR. Because the TCR on T lymphocytes and the CD16 low-affinity IgG Fc receptor (Fc gamma receptor type III) complex on NK cells share a common CD3 zeta subunit, we reasoned that CD3 zeta may be critical for CD2 signaling in T lymphocytes and NK cells. Here we show that transfection of a cDNA encoding a transmembrane form of CD16 into TCR- variants of the Jurkat T-cell line results in CD16 expression in association with endogenous CD3 zeta homodimers and restores CD2 signaling function. To test directly the role of CD3 zeta in CD2 triggering, we then transfected human CD2 into each of two murine T-T hybridomas that express TCRs containing either a full-length CD3 zeta subunit or a truncated CD3 zeta subunit incapable of transducing signals. Despite expression of equivalent surface levels of TCR, CD2-mediated signaling is seen only in the T cells containing wild-type CD3 zeta. These findings show that (i) CD16 on NK cells is functionally equivalent to the TCR on T lymphocytes for coupling CD2 to signaling pathways and (ii) CD2 signal transduction depends upon the CD3 zeta subunit of the TCR complex and, by inference, the CD3 zeta subunit of the CD16 complex.

Animals↗

The purification and properties of the scaffolding protein of bacteriophage lambda.

The Nu3 gene of bacteriophage lambda resides within a cluster of genes that specify structural components of the bacteriophage head. Previous experiments indicate that the Nu3 gene product (gpNu3) is associated with immature proheads but is not detectable in mature proheads or bacteriophage particles, hence its classification as a scaffolding protein. The Nu3 gene has been cloned and overexpressed, and its protein product has been purified. The purified protein is biologically active, as demonstrated by its ability to complement a gpNu3-deficient extract in an in vitro assembly reaction. The sequence of the amino terminus of the protein indicates that translation of Nu3 starts at nucleotide position 5,342 on the standard lambda DNA sequence, yielding a protein with a calculated Mr of 13,396. A combination of gel exclusion chromatography and velocity sedimentation gradient data indicates that gpNu3 possesses an unusually elongated shape.

Amino Acid Sequence↗

Interaction of aggregated native and mutant IgE receptors with the cellular skeleton.

When aggregated, cell surface proteins become resistant to solubilization by detergents, presumably because of aggregation-induced or -stabilized interactions between the membrane protein and the cytoskeleton or plasma membrane skeleton. We genetically engineered variants of the tetrameric high-affinity receptor for IgE (Fc epsilon RI) to identify a site on its alpha, beta, or gamma chains that mediates such putative interactions. Using flow cytofluorometry, we studied rat basophilic leukemia cells, transiently transfected COS cells, and stably transfected P815 cells bearing wild-type and mutated receptors. We observed that (i) solubilization was markedly dependent on the degree of aggregation, the extent varying somewhat with the cell type and, particularly at lower levels of aggregation, with the time after addition of detergent; (ii) truncation of no single cytoplasmic domain of the alpha, beta, or gamma chains ablated the insolubilization effect; and (iii) incomplete receptors were also efficiently insolubilized by aggregation. Thus receptors consisting only of alpha and gamma chains, a "receptor" consisting of only the ectodomain of the alpha chain attached to the plasma membrane by a glycosyl-phosphatidyl inositol anchor, and "receptors" consisting only of minimally modified gamma chains were resistant to solubilization after aggregation. We conclude that no unique subunit or domain of Fc epsilon RI mediates the insolubilization phenomenon. Our results support a model in which the bridging of membrane proteins leads to their becoming nonspecifically enmeshed in a network of membrane skeletal proteins on either the outside and/or the inside of the membrane so that dissolution of the lipid bilayer becomes irrelevant.

Animals↗

High affinity human IgE receptor (Fc epsilon RI). Analysis of functional domains of the alpha-subunit with monoclonal antibodies.

The binding of IgE to the high affinity Fc epsilon receptor (Fc epsilon RI) on mast cells and basophils is mediated by the alpha-subunit of the tetrameric receptor complex. Based on sequence homologies, the 50-kDa alpha-subunit is a member of the immunoglobulin superfamily of proteins and has two predicted disulfide-bonded loops. Monoclonal antibodies specific for the human alpha-subunit have been identified and separated into two major classes: inhibitory and noninhibitory antibodies. Inhibitory antibodies (i.e. 15A5) block 125I-IgE binding to a recombinant chimeric alpha-subunit (ch-alpha-protein) expressed on Chinese hamster ovary cells and immunoprecipitate 125I-labeled purified ch-alpha-protein. Noninhibitory antibodies (i.e. 22E7) immunoprecipitate both 125I-labeled ch-alpha-protein and the soluble complex of 125I-IgE cross-linked to ch-alpha-protein but do not block 125I-IgE binding to the ch-alpha-protein expressed on Chinese hamster ovary cells. Both classes of antibodies bind to natural Fc epsilon RI present on human basophils and induce histamine release from these cells. Inhibitory antibody 15A5 specifically binds to a peptide corresponding to amino acids 125-140 of the putative second domain of the alpha-subunit sequence. All the inhibitory antibodies compete with 125I-15A5 for binding to the ch-alpha-protein, indicating that these antibodies recognize inhibitory epitopes that are either identical or sterically overlapping. Noninhibitory antibodies (i.e. 22E7) do not block 125I-15A5 binding to the ch-alpha-protein. These data suggest that antibodies binding to the predicted second domain of the alpha-subunit can inhibit IgE binding to the alpha-subunit, while antibodies binding at a distance from this site do not inhibit IgE binding. These inhibitory antibodies may block IgE binding to the ch-alpha-protein by direct overlap, steric inhibition, or induced conformational changes of the receptor contact points for IgE.

Animals↗

Immunization of owl monkeys with a recombinant protein containing repeated epitopes of a Plasmodium falciparum glycophorin-binding protein.

A Plasmodium falciparum glycophorin binding protein (GBP-130) has been implicated in protective immunity to malaria. The gene for GBP-130 encodes a protein containing 11 tandemly repetitive 50 amino acid units. We report an immunization trial in Aotus monkeys using a recombinant DNA protein containing three of these 50 amino acid repeats. When administered with aluminum hydroxide, this antigen induced low levels of antibodies that reacted with the recombinant protein by ELISA and with parasite antigens in immunoblot and immunofluorescence assays, but not by immunoprecipitation. When administered with Freund's complete adjuvant, this antigen induced high levels of antibodies that reacted in ELISA, immunoblot, immunofluorescence, and immunoprecipitation assays. Serum from immunized monkeys did not inhibit parasite growth, and protection from intravenous challenge with P. falciparum-infected erythrocytes was not observed in any experimental group. These results suggest that the repetitive region of GBP-130 is not a useful vaccine candidate.

Amino Acid Sequence↗

The alpha subunit of the human IgE receptor (FcERI) is sufficient for high affinity IgE binding.

The alpha subunit of the FcERI binds IgE with high affinity. Previous studies have demonstrated that alpha subunit expression requires the presence of beta and/or gamma subunits, and it is not known how these two subunits contribute to the ability of the alpha subunit to bind IgE. In this report, we describe the expression and characterization of a human chimeric alpha subunit. The data demonstrate that high affinity IgE binding does not require the presence of the beta and/or gamma subunits and that this activity is localized to the extracellular domain (residues 26-201) of the human alpha subunit. Permanent cell lines expressing the chimeric receptor were used to characterize the binding parameters of the alpha subunit. These cell lines provide a means of identifying therapeutic agents which may be effective in the treatment/management of allergic diseases.

Animals↗

Emerging picture of the receptor with high affinity for IgE.

The cDNAs for two of the subunits of the receptor with high affinity for IgE have been isolated and sequenced. That for the IgE-binding alpha subunit predicts a polypeptide with a single transmembrane segment. The predicted extracellular amino terminal portion, comprised of 180 residues, is homologous to the corresponding region of Fc gamma receptors and contains two truncated immunoglobulin-like domains. The cDNA for beta predicts a peptide with four transmembrane segments, but its sequence is unrelated to known proteins. Experiments to isolate the cDNA for the gamma subunit have begun; when completed, cotransfection of the three genes will be attempted to get expression, a process that has not so far been successful for the individual subunits. Such expression will permit further analysis of the receptor's function and ultimately may provide information on how best to intervene clinically in the activation of mast cells and basophils.

Animals↗

Receptors for Fc epsilon and Fc gamma are linked on mouse chromosome 1.

Recently isolated cDNA clones for the high affinity Fc epsilon receptors on mast cells and basophils (Fc epsilon RI alpha) and Fc gamma receptors on macrophages and lymphocytes (Fc gamma 2b/gamma 1R) are homologous members of the Ig supergene family. Analysis of the segregation of restriction fragment length polymorphism in crosses of inbred mice now establish that the structural genes encoding both Fc epsilon RI alpha and Fc gamma 2b/gamma 1R are indeed discrete genes and are linked at the distal end of mouse chromosome 1. This finding raises the possibility that a family of Fc receptors could be found in a region that is known to contain immunologically important markers of lymphocyte surface Ag and autoimmune defects.

Animals↗

Isolation and characterization of cDNAs coding for the beta subunit of the high-affinity receptor for immunoglobulin E.

Among receptors that bind the Fc region of immunoglobulins ("Fc receptors"), only the one with high affinity for immunoglobulin E (IgE) is known to consist of more than a single polypeptide. In addition to the IgE-binding alpha chain, the receptor contains a single beta chain and two, disulfide-linked, gamma chains. From a cDNA library of a rat mucosal mast cell tumor, from which we recently cloned cDNAs coding for the alpha chain, we have now isolated cDNAs coding for the beta subunit. In vitro transcription-translation of the cDNA directed the synthesis of a polypeptide reactive with two distinctive anti-beta monoclonal antibodies and whose molecular weight was identical to that of authentic beta chains. Polyclonal antibodies to beta peptides expressed in Escherichia coli reacted with intact receptors and isolated beta chains. The gene encodes a protein of 243 residues with no leader sequence. A hydropathicity plot suggests that the polypeptide crosses the plasma membrane four times. The epitope recognized by one of the monoclonal antibodies was localized to the NH2 terminus; that by the other was localized to the COOH terminus. Since those antibodies react with membranes and not with intact cells, we suggest that both ends of the beta subunit are cytoplasmic. RNA transfer blots at high stringency failed to reveal mRNA for beta chains in a variety of cells (in particular, monocytes) that do not contain the high-affinity receptor for IgE.

Amino Acid Sequence↗

A cDNA presumptively coding for the alpha subunit of the receptor with high affinity for immunoglobulin E.

Rat mast cells and a neoplastic analogue such as rat basophilic leukemia (RBL) cells have receptors that have exceptionally high affinity for immunoglobulin E (IgE). When aggregated, these receptors induce cellular degranulation. The alpha chain of the receptor contains the binding site for IgE; the function(s) of the noncovalently associated beta and gamma chains is (are) still undefined. Using a cDNA library constructed from the mRNA of RBL cells, we have isolated a cDNA clone whose sequence predicts a putative 23-residue signal peptide, followed by a sequence that accurately predicts the amino acid composition, the peptide molecular weight, and six peptide sequences (encompassing 59 residues or 26% of the total number) determined for the alpha chain by direct analysis. These findings provide strong evidence that the cDNA codes for the alpha chain, even though expression has not been unambiguously achieved. The sequence suggests that the alpha chain contains a 180-residue extracellular portion with two homologous domains of approximately 35 residues, a 20-residue transmembrane segment containing an aspartic acid, and a 27-residue cytoplasmic portion containing 9 basic amino acids. The sequence shows no homology with the low-affinity receptor for IgE from lymphocytes but over 30% homology with an Fc gamma receptor.

Amino Acid Sequence↗

Structural heterogeneity and functional domains of murine immunoglobulin G Fc receptors.

Binding of antibodies to effector cells by way of receptors to their constant regions (Fc receptors) is central to the pathway that leads to clearance of antigens by the immune system. The structure and function of this important class of receptors on immune cells is addressed through the molecular characterization of Fc receptors (FcR) specific for the murine immunoglobulin G isotype. Structural diversity is encoded by two genes that by alternative splicing result in expression of molecules with highly conserved extracellular domains and different transmembrane and intracytoplasmic domains. The proteins encoded by these genes are members of the immunoglobulin supergene family, most homologous to the major histocompatibility complex molecule E beta. Functional reconstitution of ligand binding by transfection of individual FcR genes demonstrates that the requirements for ligand binding are encoded in a single gene. These studies demonstrate the molecular basis for the functional heterogeneity of FcR's, accounting for the possible transduction of different signals in response to a single ligand.

Amino Acid Sequence↗

Cloning and characterization of a mouse cysteine proteinase.

cDNA clones encoding a mouse cysteine proteinase were isolated from a cDNA library constructed from mRNA derived from the macrophage-like cell line J774. The DNA sequence predicts a protein that is closely related to, but distinct from, the lysosomal enzyme cathepsin H. Alignment of the predicted amino acid sequence with the known protein sequences for seven other cysteine proteinases suggests that the cloned DNA encodes a 334-residue protein containing both a 17-amino acid pre-region and a 96-amino acid pro-region. Consistent with this prediction, antiserum raised to a recombinant fusion protein expressed in Escherichia coli immunoprecipitated multiple forms of the cysteine proteinase in mouse peritoneal macrophages and fibroblasts. In pulse-chase experiments, a 36-kDa precursor, presumedly the pro-form, was converted intracellularly into a 28-kDa protein and subsequently into a 21-kDa protein. Indirect immunofluorescence microscopy results suggested that the cysteine proteinase was localized to lysosomes. Western blot analysis detected significantly more of the proteinase in thioglycolate-elicited peritoneal macrophages than in resident peritoneal macrophages. Northern blot analysis revealed that several cell lines failed to express mouse cysteine proteinase mRNA.

Amino Acid Sequence↗