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Biomedical subjects

S Pillai

Publications and source records attributed to S Pillai.

At least 19 recordsLinked to original sources

Association of activated phosphatidylinositol 3-kinase with p120cbl in antigen receptor-ligated B cells.

A 120-kDa protein that is tyrosine-phosphorylated upon antigen receptor ligation in B lymphocytes has been identified as the product of the c-cbl protooncogene. Tyrosine phosphorylation of Cbl depends on the efficient association of membrane immunoglobulin heavy chains with the Ig alpha/beta heterodimer but is unimpaired in splenic B cells from the Xid mouse. Cross-linking of membrane IgM and membrane IgG, but not of CD40, leads to the tyrosine phosphorylation of Cbl. In receptor-ligated B lymphocytes, p120cbl associates with an 85-kDa protein that has been identified as the 85-kDa subunit of phosphatidylinositol 3-kinase.

Animals

The SH2 domains of Src family kinases associate with Syk.

Src family kinases (Lyn, Fyn, Lck, and Blk) and Syk, a tandem SH2 domain containing tyrosine kinase, have been demonstrated to be associated with the antigen receptor in B cells. Both of these categories of tyrosine kinases are presumed to be critical players in the process of antigen-mediated signal transduction. Cross-linking of membrane immunoglobulin on the surface of B cells leads to the activation of Lyn, Fyn, and Blk, which presumably associate with the cytoplasmic tails of the membrane immunoglobulin-associated Ig alpha/beta heterodimer. Receptor ligation also leads to the tyrosine phosphorylation and catalytic activation of Syk, but the mechanism of association of this kinase with the antigen receptor remains to be established. A number of phosphoproteins that can associate with the SH2 domains of Blk, Lyn, and Fyn have been described in activated B cells. We demonstrate here that Syk is one of the proteins in the lysates of activated B cells which bind to the SH2 domains of Src family kinases. Syk binds directly to the SH2 domain of Blk and complexes in vivo with Lyn and Blk in activated B cells.

Animals

Orbital tuberculosis.

Orbital tuberculosis (TB) is an extremely rare condition in North America. The authors present a case of TB involving the orbit, lower lid, and zygoma and review pertinent literature regarding orbital TB. Following excision of the orbital lesion, the patient responded well to anti-TB therapy. With the reemergence of TB associated with AIDS, orbital TB may be a more frequent presentation and should be considered in the differential diagnosis of inflammatory orbital disease.

Adult

22-Oxa calcitriol is a less potent regulator of keratinocyte proliferation and differentiation due to decreased cellular uptake and enhanced catabolism.

22-oxa calcitriol (OCT) is a recently synthesized analog of calcitriol (1,25(OH)2D3) with potent biologic actions both in vivo and in vitro. Because it is considerably less hypercalcemic than 1,25(OH)2D3 when given in vivo, OCT is of potential use for the treatment of diseases, such as psoriasis, that respond to the antiproliferative, prodifferentiating actions of 1,25(OH)2D3. To determine the potential usefulness of OCT in hyperproliferative skin diseases, we compared the ability of OCT to that of 1,25(OH)2D3 with respect to regulation of keratinocyte proliferation and differentiation in vitro. These studies were performed in serum-free media to eliminate differences in potency secondary to differences in binding to the serum vitamin D-binding protein. We observed that OCT was considerably less effective than 1,25(OH)2D3 in inhibiting keratinocyte proliferation and stimulating differentiation. The decreased potency of OCT appeared to be due to decreased uptake and increased catabolism rather than decreased affinity for the vitamin D receptor. We conclude that under the conditions of our experiments OCT was less potent than 1,25(OH)2D3 because it failed to achieve comparable concentrations within the cell.

Antineoplastic Agents

Immunogenicity of genetically engineered glutathione S-transferase fusion proteins containing a T-cell epitope from diphtheria toxin.

Glutathione S-transferase (GST) has been shown to induce a marginal antibody response in experimental animals as well as partial protection against a number of parasitic worms, including Schistosoma and Fasciola species. The objective of our study was to increase the immunogenicity of GST by adding heterologous T-cell epitopes at the carboxy terminus of the protein. We generated recombinant GST proteins by attaching one or three tandem repeats of a T-cell epitope of CRM197, a nontoxic variant of diphtheria toxin. This T-cell epitope encoding the region of amino acids 366 to 383 of CRM197, when contained in a GST fusion protein and/or after purification as a recombinant peptide, retained the ability to induce a CRM197-specific T-cell response. The fusion protein containing a single T-cell epitope induced a strong T-cell proliferative response to GST and also enhanced anti-GST antibody production in mice. The addition of three repeats of the epitope did not augment the responses when compared with the responses of GST itself. The results suggest that the addition of a single T-cell epitope to a larger protein like GST increases the immunogenicity of the protein.

Amino Acid Sequence

1,25-Dihydroxyvitamin D3 upregulates the phosphatidylinositol signaling pathway in human keratinocytes by increasing phospholipase C levels.

1,25-Dihydroxyvitamin D3 (1,25(OH)2D3) induces the differentiation of normal human keratinocytes, in part by increasing their basal intracellular calcium levels (Cai) over a period of hours. Agonists such as ATP acting through membrane receptors cause an immediate but transient increase in Cai accompanied by an increase in inositol trisphosphate (IP3). Treatment of keratinocytes for 24 h with 1 nM 1,25(OH)2D3 resulted in a two- to four-fold potentiation of the Cai response of these cells to ATP. This potentiation was inhibitable with cycloheximide, unaccompanied by a change in total intracellular calcium pools, but associated with an increase in basal IP3 levels and ATP-stimulated IP3 production. Treatment with 1,25(OH)2D3 raised the protein and mRNA levels of phospholipase C isoenzymes, particularly phospholipase C-beta 1 in a dose-dependent manner. These studies indicate that 1,25(OH)2D3 modulates the keratinocyte signal transduction pathway by induction of phospholipase isoenzymes, a previously undescribed action for this hormone.

Adenosine Triphosphate

Bruton tyrosine kinase is tyrosine phosphorylated and activated in pre-B lymphocytes and receptor-ligated B cells.

The gene encoding Bruton tyrosine kinase (Btk) is known to be mutated in human X chromosome-linked agammaglobulinemia and in the Xid mouse. This kinase was examined in B lymphocytes before and after antigen receptor ligation and also in pre-B cells. Btk was found to be catalytically activated and tyrosine phosphorylated in response to anti-IgM stimulation in B cells. This kinase is also constitutively phosphorylated on tyrosine residues in pre-B cells. These findings point to a functional role for Btk in pre-antigen and antigen receptor signaling during B-cell development and provide a biochemical explanation for the X-linked genetic syndromes already linked to this kinase.

Agammaglobulinaemia Tyrosine Kinase

1,25-Dihydroxyvitamin D3 potentiates the keratinocyte response to calcium.

Extracellular calcium (Cao) stimulates the differentiation of keratinocytes; 1,25 dihydroxyvitamin D3 1,25(OH)2D3) does likewise. Since 1,25(OH)2D3 regulates calcium flux in other cells, we hypothesized that 1,25(OH)2D)3 acted through and promoted the effects of calcium on keratinocyte differentiation. To test this hypothesis, we evaluated the effects of calcium and 1,25(OH)2D3 alone and in combination on the mRNA and protein levels of involucrin and transglutaminase in neonatal human keratinocytes. Cao alone increased these mRNA levels in a dose-dependent fashion (0.03 to 1.2 mM) over a 24-h period. This increase in mRNA levels was associated with a stimulation by calcium of involucrin and transglutaminase gene transcription. However, by 72 h, the mRNA levels of involucrin and transglutaminase decreased. At 0.03 mM Cao, 1,25(OH)2D3 showed a dose-dependent stimulation of involucrin and transglutaminase mRNA for up to 48 h and potentiated the initial (4-h) stimulation by Cao of involucrin and transglutaminase mRNA. As for calcium alone, this increase in mRNA was associated with an increase in transcription of the involucrin and transglutaminase genes. However, by 24 h of exposure to both calcium and 1,25(OH)2D3, a dose-dependent fall in mRNA levels was seen. The mRNA levels of involucrin and transglutaminase were stable for 24 h when neonatal human keratinocytes were grown in serum-free keratinocyte growth medium containing 0.03 or 1.2 mM Cao alone. However, the mRNAs of both genes underwent rapid degradation when neonatal human keratinocytes were treated with 1,25(OH)2D3, especially in high Cao. 1,25(OH)2D3 and Cao increased the protein levels of involucrin and transglutaminase activity in a synergistic fashion throughout the 48-h time course. These data support the hypothesis that 1,25(OH)2D3 promotes calcium-induced differentiation at the level of both gene expression and mRNA stability.

Calcitriol

Tyrosine phosphorylation of Blk and Fyn Src homology 2 domain-binding proteins occurs in response to antigen-receptor ligation in B cells and constitutively in pre-B cells.

Proteins that bind to discrete domains of the Blk, Fyn, Lyn, and Btk protein tyrosine kinases were examined in pre-B cells that had not been subjected to any external stimulation, as well as in nonstimulated and antigen-receptor-ligated B cells. Proteins that bind to the Src homology 2 domains of Blk and Fyn were identified in B cells that had been activated with anti-IgM but were not identified in unstimulated B cells. A number of Blk and Fyn Src homology 2 domain-binding phosphoproteins were also observed in pre-B cells that had not been stimulated in vitro. The phosphoproteins seen in activated B cells potentially represent substrates that play a role in the pathway of antigen-receptor-mediated signaling. Distinct signaling pathways involving distinguishable kinase substrates may be relevant in pre-B-cell-receptor-mediated cell survival during ontogeny. These results indirectly support models that predict constitutive ligand-independent signaling by the pre-antigen receptor during lymphoid ontogeny.

Animals

Heparin and its non-anticoagulant analogues inhibit human keratinocyte growth without inducing differentiation.

In addition to its anti-coagulant effect, heparin inhibits the growth of several types of cells. Recent studies suggest that heparin inhibition of proliferation of cultured human keratinocytes, results primarily from interaction with keratinocyte-generated, heparin-binding autocrine growth factors. In this study, we evaluated whether non-anticoagulant heparin analogs, and oligosaccharide fragments of heparin, retain the growth-inhibitory properties of whole heparin on human keratinocytes. Second-passage neonatal keratinocytes were grown in serum-free keratinocyte growth medium, and the effect of heparin analogs was studied in the absence of exogenous growth factors using keratinocyte-conditioned medium. Cell proliferation was assessed by measurement of both DNA content and [3H]-thymidine incorporation. The addition of heparin inhibited the conditioned medium-stimulated keratinocyte proliferation in a dose-dependent manner, with 80% inhibition at or above 10 micrograms/ml. Moreover, heparin was not toxic to keratinocytes (as detected by propidium-iodide fluorescence and by retention of normal protein synthetic rate) and it did not induce terminal differentiation (as measured by cornified envelope formation). Furthermore, heparin stimulated protein secretion by keratinocytes without altering rates of protein synthesis. The growth-inhibitory effects of heparin oligosaccharides were directly proportional to their chain length. The hexasaccharide unit represented the minimum requirement for inhibition, whereas decasaccharide units demonstrated nearly equivalent growth inhibition to native heparin. Finally, two non-anticoagulant heparin analogs were equipotent with heparin in inhibiting autocrine-induced keratinocyte growth. These studies show that the growth-inhibitory activities of heparin are independent of the anticoagulant effects and that decasaccharides contain the optimal oligosaccharide chain length for the antiproliferative effect in human keratinocytes.

Anticoagulants

Binding of collagen causes intracellular mobilization of calcium in human mononuclear cells.

The possibility that extracellular matrix-cell surface interaction might lead to signalling was examined in human mononuclear cells. In mononuclear cells loaded with Indo-1 acetoxymethylester, collagen binding elicited a 2-3 fold increase in cytosolic free calcium concentration within seconds. Plasma fibronectin, serum albumin and heparin did not cause any significant change in intracellular calcium levels. Collagen I, collagen IV and glucosylated collagen I evoked an increase in intracellular Ca++ both in the presence and absence of extracellular calcium. However, in the presence of 2mM EDTA, the increase in cytosolic free calcium concentration caused by collagen I and collagen IV was partly abolished, suggesting the requirement of a cation-dependent interaction of collagen with mononuclear cells. Glucosylated collagen induced intracellular calcium mobilization even in the presence of EDTA suggesting a cation-independent interaction. These results indicate that collagen binding induces rapid mobilization of calcium in human mononuclear cells, apparently from intracellular sources.

Calcium

The major histocompatibility complex class I antigen-binding protein p88 is the product of the calnexin gene.

A 90-kDa phosphoprotein (p90) of the endoplasmic reticulum was identified by a monoclonal antibody generated against human hepatoma cells. Pulse-chase experiments with [32P]phosphate and [35S]methionine demonstrated that p90 formed both stable and transient complexes with other cellular proteins, suggesting its role as a molecular chaperone. This protein associates with heavy chains of major histocompatibility complex class I proteins, suggesting that it is the human homolog of the recently described 88-kDa protein that transiently associates with murine class I molecules in the endoplasmic reticulum. The p90 protein also associates in B lymphocytes with membrane immunoglobulin mu heavy chains and may serve as a chaperone for many membrane-bound polypeptides. A partial human p90 cDNA was cloned from a lambda gt11 expression library and identified as the human homolog of calnexin, a major canine calcium-binding protein found to be associated with the signal-sequence receptor in endoplasmic reticulum membranes.

Amino Acid Sequence

Tetrameric cell-surface MHC class I molecules.

Purified major histocompatibility complex (MHC) class I molecules have been studied at high resolution by X-ray crystallography; the structure is a complex of a single heavy chain, a beta 2-microglobulin light chain and a tightly bound peptide moiety. We show here that complete MHC class I molecules are post-translationally assembled into tetramers (made up of four heavy chains and four beta 2-microglobulin units) and that this tetrameric species is expressed on the cell surface. The multivalent tetrameric structure of class I molecules can be reconciled with models of T-cell activation that invoke antigen-receptor crosslinking, as opposed to models that depend on an allosteric change.

Animals

Lanthanum influx into cultured human keratinocytes: effect on calcium flux and terminal differentiation.

Trivalent cation lanthanum (La) binds to calcium binding sites of cells and either mimics the properties of calcium or inhibits the effects of calcium by displacing calcium from its binding sites. Extracellular calcium induces differentiation of human epidermal keratinocytes in culture, in part by increasing the intracellular calcium levels (Cai). Therefore, in this study we determined the effect of La on differentiation and intracellular calcium levels of keratinocytes. We observed that La inhibited the production of cornified envelopes, a marker for terminal differentiation of keratinocytes. La inhibited the calcium requiring envelope cross-linking enzyme, transglutaminase, in a direct manner, presumably, by displacing calcium from its binding site on the enzyme. La inhibited the influx and the efflux of 45Ca from keratinocytes. Paradoxically, extracellular La appeared to increase the Cai levels of keratinocytes as measured by the fluorescent probe indo-1. However, subsequent experiments revealed that indo-1 bound La with a higher affinity than Ca and emitted fluorescence in the same wavelength as the Ca bound form. Using this probe, we observed that La enters keratinocytes in a dose-dependent fashion and achieves concentrations exceeding 80 nM when the external La concentration is raised to 300 microM. This fully accounted for the apparent increase in Cai when La was added to the cells. Treatment of cells with ionomycin increased indo-1 fluorescence maximally in the presence of La indicating influx of La via this Ca specific ionophore. Our results indicate that La enters cells and inhibits calcium mediated keratinocyte differentiation both by blocking Ca influx and by blocking calcium regulated intracellular processes such as transglutaminase directed cornified envelope formation.

Biological Transport

Adenosine triphosphate stimulates phosphoinositide metabolism, mobilizes intracellular calcium, and inhibits terminal differentiation of human epidermal keratinocytes.

During wound healing, release of ATP from platelets potentially exposes the epidermis to concentrations of ATP known to alter cellular functions mediated via changes in inositol trisphosphate (IP3) and intracellular calcium (Cai) levels. Therefore, we determined whether keratinocytes respond to ATP with a rise in Cai and IP3 and whether such increases are accompanied by a change in their proliferation and differentiation. Changes in Cai were measured in Indo-1-loaded neonatal human foreskin keratinocytes after stimulation with extracellular ATP. Extracellular ATP evoked a transient and acute increase in Cai of keratinocytes both in the presence and in the absence of extracellular calcium. ATP also induced the phosphoinositide turnover of keratinocytes, consistent with its effect in releasing calcium from intracellular sources. ATP did not permeabilize keratinocytes, nor did it promote Ca influx into the cells. The half-maximal effect of ATP was at 10 microM, and saturation was observed at 30-100 microM. UTP, ITP, and ATP gamma S were as effective as ATP in releasing Cai from intracellular stores and competed with ATP for their response, whereas AMP and adenosine were ineffective, suggesting the specificity of P2 purinergic receptors in mediating the ATP response in keratinocytes. Single cell measurements revealed heterogeneity in the calcium response to ATP. This heterogeneity did not appear to be due to differences in the initial Cai response but to subsequent removal of increased Cai by these cells. ATP inhibited terminal differentiation of keratinocytes as measured by [35S]methionine incorporation into cornified envelopes and modestly stimulated incorporation of [3H]thymidine into DNA. Chelation of Cai by bis-(o-aminophenoxy)-N,N,N',N'-tetraacetic acid reduced basal Cai, blocked the Cai response to ATP, inhibited the basal rate of DNA synthesis, and blocked the ATP-induced increase in DNA synthesis. We conclude that extracellular ATP may be an important physiological regulator of epidermal growth and differentiation acting via IP3 and Cai.

Adenosine Triphosphate

Bilateral progressive essential iris atrophy and keratoconus with coincident features of posterior polymorphous dystrophy: a case report and proposed pathogenesis.

We report the first case known to us of an apparent bilateral association of essential iris atrophy (EIA) and keratoconus (KC), with coincident features of posterior polymorphous dystrophy (PPD). Based on this case and the published natural history and findings of both the irido corneal endothelial (ICE) syndrome and PPD, we propose a new hypothesis for the pathogenesis of the ICE syndrome with associated KC and/or PPD. We suggest that, similar to the genetics of retinoblastoma, the predisposition for either the ICE syndrome or for PPD is inherited as an inactive allele, the so-called "first hit." Inactivation of the second allele, or "second hit," which could occur at any time, might be the product of the background mutation rate or of an environmental trigger. Dedifferentiation or an abnormality in normal development could occur after the first or second hit, resulting in varying clinical patterns. We also concur with other investigators that PPD could be part of the spectrum of the ICE syndrome, owing to similarities in their clinical presentations, histopathology, specular and electron microscopy, and natural history.

Atrophy