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The effect of sera of patients with systemic lupus erythematosus on artificial immune complexes.

The solubilization of artificial immune complexes mediated by complements has been well-known since 1975. It is known that the process is bound to the integrity of the alternative complement pathway. The phenomenon of solubilization can be used in the investigation of the function of the complement system. We have studied the solubilization of artificial complexes containing BSA and 125I labelled anti-BSA on the effect of sera of healthy subjects and those of patients suffering from SLE. We have observed that the solubilization capacity of SLE sera is significantly lower than that of healthy persons. The decrease is the most distinct at the time of the activity of the disease.

Antigen-Antibody Complex↗

Caldesmon is a cytoskeletal target for PKC in endothelium.

We have previously shown that treatment of bovine endothelial cell (EC) monolayers with phorbol myristate acetate (PMA) leads to the thinning of cortical actin ring and rearrangement of the cytoskeleton into a grid-like structure, concomitant with the loss of endothelial barrier function. In the current work, we focused on caldesmon, a cytoskeletal protein, regulating actomyosin interaction. We hypothesized that protein kinase C (PKC) activation by PMA leads to the changes in caldesmon properties such as phosphorylation and cellular localization. We demonstrate here that PMA induces both myosin and caldesmon redistribution from cortical ring into the grid-like network. However, the initial step of PMA-induced actin and myosin redistribution is not followed by caldesmon redistribution. Co-immunoprecipitation experiments revealed that short-term PMA (5 min) treatment leads to the weakening of caldesmon ability to bind actin and, to the lesser extent, myosin. Prolonged incubation (15-60 min) with PMA, however, strengthens caldesmon complexes with actin and myosin, which correlates with the grid-like actin network formation. PMA stimulation leads to an immediate increase in caldesmon Ser/Thr phosphorylation. This process occurs at sites distinct from the sites specific for ERK1/2 phosphorylation and correlates with caldesmon dissociation from the actomyosin complex. Inhibition of ERK-kinase MEK fails to abolish grid-like structure formation, although reducing PMA-induced weakening of the cortical actin ring, whereas inhibition of PKC reverses PMA-induced cytoskeletal rearrangement. Our results suggest that PKC-dependent phosphorylation of caldesmon is involved in PMA-mediated complex cytoskeletal changes leading to the EC barrier compromise.

Amino Acid Sequence↗

Increased phospholipase A2 activity in peritoneal leukocytes in rat experimental colitis.

Activated leukocytes in the peritoneal cavity have been shown to release phospholipase A2(PLA2) activity and increased production of eicosanoids. It is not known whether a similar phenomenon occurs in inflammatory bowel diseases. We measured PLA2 activity in the peritoneal leukocytes and eicosanoid content in the peritoneal cavity of rats with experimental colitis induced by dinitrochlorobenzene, immune complex-mediated colitis, and acetic acid-induced colitis. In all models of colitis, proteins in the peritoneal cavity were increased by 60-260% above control, leukocyte number was elevated by 3- to 10-fold, the PLA2 activity by 4- to 32-fold, and anti-PLA2 activity was absent. Eicosanoid concentrations were 3- to 4-fold higher than controls. In vitro studies confirmed that the peritoneal leukocytes were the source of PLA2. Treatment of rats with dexamethasone and leukocytes in vitro reduced PLA2 significantly, but they were well above control rats without colitis. However, dexamethasone did not improve the histology. These studies suggest that peritoneal leukocytes may serve as an additional source of inflammatory mediators, which may further enhance the inflammatory response in the rat colon.

Acetates↗

Basic fibroblast growth factor utilizes both types of component subunits of Gs for dual signaling in human adipocytes. Stimulation of adenylyl cyclase via Galph(s) and inhibition of NADPH oxidase by Gbeta gamma(s).

Basic fibroblast growth factor (bFGF), a ligand of receptor protein-tyrosine kinases, promoted the dissociation of G(s) and had antagonistic stimulatory and inhibitory effects on adenylyl cyclase and NADPH oxidase in human fat cell plasma membranes. The bFGF-induced activation of adenylyl cyclase was blocked by COOH-terminal anti-Galpha(s), indicating that it was mediated by Galpha(s). The inhibitory action of bFGF was mimicked by exogenously supplied Gbetagamma-subunits and was reversed by anti-Gbeta(1/2), or betaARK-CT, a COOH-terminal beta-adrenergic receptor kinase fragment that specifically binds free Gbetagamma, indicating that it was transduced by Gbetagamma complexes. The bFGF-induced inhibition of NADPH-dependent H(2)O(2) generation was also reversed by peptide 100-119, an inhibitor of G(s) activation by ligand-occupied beta-adrenergic receptors, indicating that the Gbetagamma complexes mediating the inhibitory action of the growth factor are derived from G(s). The findings suggest a direct, non-kinase-dependent, coupling of bFGF receptor(s) to G(s) and provide the first example of a ligand of receptor protein-tyrosine kinases that is capable of utilizing both types of component subunits of a single heterotrimeric G protein for dual signaling in a single cell type.

Adenylyl Cyclase Inhibitors↗

Intravascular hemolysis, thrombocytopenia, leukopenia, and circulating immune complexes after jejunal-ileal bypass surgery.

Two years after jejunal-ileal bypass surgery for obesity, a 25-year-old man developed intravascular hemolysis, thrombocytopenia, and neutropenia. The patient's erythrocytes were coated with complement components (C4/C3) and his serum induced complement-dependent immune lysis of chromium-51-labeled platelets. Serum [125I]-C1q binding activity (a measure of the presence of immune complexes) was increased, and serum C4 and C3 hemolytic titers were depressed. Immune complex-mediated complement activation apparently accounted for the blood cell destruction in this patient.

Adult↗

Relapsing polychondritis with glomerulonephritis. Improvement with prednisone and cyclophosphamide.

A 32-year-old man presented with relapsing polychondritis (RP) and microhematuria. A renal biopsy specimen disclosed focal segmental glomerulonephritis with occasional crescents. Immunofluorescent and electron micrographic studies suggested immune complex--mediated glomerular injury. Initially, life-threatening upper airway obstruction responded to high-dose corticosteroid therapy. Subsequently, progressive renal insufficiency and proteinuria caused by increasingly active glomerulonephritis were treated by adding cyclophosphamide, with sustained improvement. This case supports the concept that RP is an immunologically mediated disease and suggests that a regimen of prednisone and cyclophosphamide warrants consideration for use in cases of RP with glomerulonephritis.

Adult↗

Receptors involved in the oxidized 1-palmitoyl-2-arachidonoyl-sn-glycero-3-phosphorylcholine-mediated synthesis of interleukin-8. A role for Toll-like receptor 4 and a glycosylphosphatidylinositol-anchored protein.

We demonstrated previously that oxidized 1-palmitoyl-2-arachidonoyl-sn-glycero-3-phosphorylcholine (ox-PAPC) and, specifically, the component lipid 1-palmitoyl-2-(5,6-epoxyisoprostane E2)-sn-glycero-3-phosphorylcholine increase interleukin-8 (IL-8) synthesis in aortic endothelial cells. The goal of the current studies was to characterize the receptor complex mediating the increased transcription of IL-8. We demonstrate that scavenger receptor class A, types I and II, lectin-like ox-LDL receptor-1, macrophage receptor with collagenous structure, and CD36 are not responsible for the increase in IL-8. Using dominant-negative constructs and antisense oligonucleotides, we demonstrate a role for Toll-like receptor 4 (TLR4) as the ox-PAPC receptor mediating IL-8 transcription. We demonstrate that a glycosylphosphatidylinositol (GPI)-anchored protein is also necessary because phosphatidylinositol-specific phospholipase C pretreatment inhibited the effect of ox-PAPC. CD14, a GPI-anchored protein that associates with TLR4 in mediating lipopolysaccharide action, did not appear to mediate ox-PAPC action because ox-PAPC-induced IL-8 transcription was not blocked by anti-CD14 neutralizing antibodies nor was it augmented by the addition of soluble CD14 or overexpression of membrane CD14. Instead, anti-TLR4 antibodies immunoprecipitated a 37-kDa protein that also bound ox-PAPC. A protein of this same size was found in aerolysin overlays used to detect GPI-anchored proteins. Therefore, these studies suggest that ox-PAPC may initially bind to a 37-kDa GPI-anchored protein, which interacts with TLR4 to induce IL-8 transcription.

Animals↗

Impaired CD4 T cell activation due to reliance upon B cell-mediated costimulation in nonobese diabetic (NOD) mice.

Diabetes in nonobese diabetic (NOD) mice results from the activation of I-A(g7)-restricted, islet-reactive T cells. This study delineates several characteristics of NOD CD4 T cell activation, which, independent of I-A(g7), are likely to promote a dysregulated state of peripheral T cell tolerance. NOD CD4 T cell activation was found to be resistant to antigenic stimulation via the TCR complex, using the progression of cell division as a measure. The extent of NOD CD4 T cell division was highly sensitive to changes in Ag ligand density. Moreover, even upon maximal TCR complex-mediated stimulation, NOD CD4 T cell division prematurely terminated. Maximally stimulated NOD CD4 T cells failed to achieve the threshold number of division cycles required for optimal susceptibility to activation-induced death, a critical mechanism for the regulation of peripheral T cell tolerance. Importantly, these aberrant activation characteristics were not T cell-intrinsic but resulted from reliance on B cell costimulatory function in NOD mice. Costimulation delivered by nonautoimmune strain APCs normalized NOD CD4 T cell division and the extent of activation-induced death. Thus, by disrupting the progression of CD4 T cell division, polarization of APC costimulatory function to the B cell compartment could allow the persistence and activation of diabetogenic cells in NOD mice.

Animals↗

Suppression of rat adjuvant disease by cyclophosphamide pretreatment: evidence for an antibody mediated component in the pathogenesis of the disease.

Cyclophosphamide (Cy), given intraperitoneally at a dose of 100 mg per kg body weight 3 days before adjuvant, was found to abolish the development of adjuvant disease in the PVG/c rat. This treatment, however, enhanced the delayed hypersensitivity responses to purified protein derivative of tuberculin (PPD) developed by these animals. Lower doses of Cy caused a partial inhibition of arthritis which was dose-related. When the time between giving Cy and the injection of adjuvant was increased, a gradual time-dependent recovery of the response was observed. The arthritic response was restored by the passive transfer of 7.6 x 10(7) to 1.5 x 10(8) normal syngeneic spleen cells, although the development of secondary lesions was delayed by 7-14 days. The response could also be restored by the transfer of small amounts of serum from arthritic, but not normal, rats. Large amounts of serum failed to restore the response. Additional evidence that pretreatment with Cy preferentially depleted the B lymphocytes was obtained by the histological examination of the lymphoid tissue. It was also shown that the primary antibody response to sheep erythrocytes was abolished by Cy, but that skin allograft rejection was unaffected. A partial inhibition of the acute inflammatory reaction to carrageenan was observed 3 days after giving Cy. It is suggested that the pathogenesis of adjuvant arthritis involves an immune complex-mediated phase, whihc initiates the joint lesions. Once these lesions have formed, cell-mediated immune mechanisms predominate in the development of the disease. It is not known whether the persistence of immune complexes is necessary to maintain the lesions.

Animals↗

Identification of mouse Vps16 and biochemical characterization of mammalian class C Vps complex.

Many multiprotein complexes mediate the fusion of the intracellular membranes. The question how the specificity of the membrane fusion is controlled has not been fully elucidated. Here we report the identification of a mouse homologue Vps16p (mVps16), which exhibits a high homology to the yeast Vps16p, a component of Class C vacuolar protein sorting (Vps) complex implicated in the yeast vacuole membrane fusion. Northern and Western blot analyses reveal that mVps16 is ubiquitously expressed in the mouse peripheral tissues. Biochemical analyses show that mammalian Class C Vps proteins interact with multiple syntaxins and Vps45p, which localizes in the endosomal compartments. The internalization of transferrin (Tf) is not affected by the overexpression of mammalian class C Vps proteins, but the recycling was inhibited. Taken together, this study provides biochemical characteristics of mVps16p in mammalian cells and the potential roles of mammalian Class C Vps proteins in membrane trafficking.

Animals↗

Structural aspects of RecA-dependent homologous strand exchange involving human telomeric DNA.

Telomeric DNA sequences in human cells and those of other vertebrates consist of long d(TTAGGG) repeats. In somatic cells, telomeres shorten every cell division with shortening serving as a mitotic clock that counts cell divisions and ultimately results in cellular senescence. Telomere length is principally maintained by a ribonucleoprotein, telomerase. However, a non-negligible proportion of human cells use a recombination-based mechanism for telomere maintenance, termed alternative maintenance of telomeres (ALT). Although the molecular mechanism of ALT is not known, GT-rich sequences in prokaryotes and eukaryotes display high levels of recombination relative to those of non-GT-rich DNA. We show that human telomeric strand-exchange complexes mediated by Escherichia coli RecA protein differ from those formed with nontelomeric sequences. Moreover, telomeric strand-exchange intermediates, unlike those involving nontelomeric sequences, exhibit a tendency to form higher-order nucleoprotein structures. We propose that the strong DNA unwinding activity inherent in the assembly of the RecA strand-exchange complex promotes the formation of alternative DNA structures at human telomeric loci. Organization of these noncanonical structures into higher-order complexes involving multiple DNA duplexes could facilitate the search for homology on different DNA molecules and provide a framework for understanding recombination-dependent mechanisms of telomere maintenance.

DNA Methylation↗

A new look at hypersensitivity pneumonitis.

Hypersensitivity pneumonitis is an immunologically induced lung disease. Although both immune complex-mediated immune response and T cell-mediated immune response are involved in the pathogenesis of the disease, recent studies show the latter mechanism to be more important. As for T cell-mediated immune response, Th1/Th2 and Tc1/Tc2 cytokines produced by CD4+ and CD8+ T cells play important roles in the development of granulomatous inflammation in the lung, a pathologically characteristic feature of the disease. The critical distinction between CD4+ and CD8+ T cells pertains to recognition of antigens presented by different major histocompatibility complex molecules. Serum levels of KL-6 and soluble intercellular adhesion molecule-1 in patients with HP are useful markers of the disease activity. The chronic form of HP can be difficult to diagnose, and provocation testing is helpful. Erythromycin might be useful for anti-inflammatory therapy.

Alveolitis, Extrinsic Allergic↗

Diabetes mellitus with immune complex glomerulonephritis.

The present study describes 3 patients with the simultaneous occurrence of diabetic nephropathy and immune-complex mediated glomerulonephritis. Renal manifestation included proteinuria and hematuria which were preceded by or co-existent with an infectious process. Renal manifestation included proteinuria and hematuria which were preceded by or co-existent with an infectious process. Renal histology showed the characteristic change of diabetic nephropathy along with those of immune complex glomerulonephritis. Immunofluorescence studies showed a linear pattern with a superimposed granular pattern of IgG and C3 deposits. Renal function and urinary findings improved in the 2 patients who were followed up.

Adult↗

Induction of gene amplification as a gain-of-function phenotype of mutant p53 proteins.

Gene amplification accompanies tumor progression and is involved in the development of drug resistance. Previously, we reported (A. Albor et al., Cancer Res. 58: 2091-2094, 1998) that mutant p53 proteins conserve the capacity to interact with and activate topoisomerase I, and that this could be a mechanism for induction of genomic instability by mutant p53 proteins. To test this hypothesis, the effect of exogenous mutant p53 protein expression on genomic instability in human p53-/- Saos-2 cells was measured by the frequency of formation of N-(phosphoacetyl)-L-aspartate (PALA)-resistant (PALA(R)) colonies, mediated by gene amplification. Interaction of exogenous mutant p53 and topoisomerase I was confirmed by immunoprecipitation. Growth under continuous expression of mutant p53 proteins for 16-17 population doublings increased the frequency of appearance of PALA(R) colonies after subsequent exposure to PALA. Subtoxic concentrations of camptothecin (which stabilizes topoisomerase I cleavage complexes, mediating nonhomologous recombination) produced a dose-dependent increase in PALA(R) colonies, and combining expression of mutant p53 with exposure to camptothecin produced a greater than additive increase in PALA(R) colony formation. These results indicate that mutant p53 proteins promote gene amplification independently of their capacity to inactivate the wild-type p53 protein, and suggest that this effect is dependent on interaction of mutant p53 with topoisomerase I. Additional studies are needed to assess the potential of targeting mutant p53 interaction with topoisomerase I for the reduction of drug resistance development during chemotherapy.

Aspartic Acid↗

Small interfering RNAs that trigger posttranscriptional gene silencing are not required for the histone H3 Lys9 methylation necessary for transgenic tandem repeat stabilization in Neurospora crassa.

In Neurospora crassa, the introduction of a transgene can lead to small interfering RNA (siRNA)-mediated posttranscriptional gene silencing (PTGS) of homologous genes. siRNAs can also guide locus-specific methylation of Lys9 of histone H3 (Lys9H3) in Schizosaccharomyces pombe. Here we tested the hypothesis that transgenically derived siRNAs may contemporaneously both activate the PTGS mechanism and induce chromatin modifications at the transgene and the homologous endogenous gene. We carried out chromatin immunoprecipitation using a previously characterized albino-1 (al-1) silenced strain but detected no alterations in the pattern of histone modifications at the endogenous al-1 locus, suggesting that siRNAs produced from the transgenic locus do not trigger modifications in trans of those histones tested. Instead, we found that the transgenic locus was hypermethylated at Lys9H3 in our silenced strain and remained hypermethylated in the quelling defective mutants (qde), further demonstrating that the PTGS machinery is dispensable for Lys9H3 methylation. However, we found that a mutant in the histone Lys9H3 methyltransferase dim-5 was unable to maintain PTGS, with transgenic copies being rapidly lost, resulting in reversion of the silenced phenotype. These results indicate that the defect in PTGS of the Deltadim-5 strain is due to the inability to maintain the transgene in tandem, suggesting a role for DIM-5 in stabilizing such repeated sequences. We conclude that in Neurospora, siRNAs produced from the transgenic locus are used in the RNA-induced silencing complex-mediated PTGS pathway and do not communicate with an RNAi-induced initiation of transcriptional gene silencing complex to effect chromatin-based silencing.

Chromatin Immunoprecipitation↗

Polymorphonuclear leukocyte-mediated cell and tissue injury: oxygen metabolites and their relations to human disease.

Reactive oxygen metabolic products derived from an activated NADPH oxidase present in the cell membrane of PMNs and mononuclear phagocytic cells play a critical role in the host's defense against bacterial infection. Recent studies have also demonstrated the ability of these toxic products to initiate eukaryotic cell injury and promote the development of the acute inflammatory responses. Experimental studies suggest that neutrophil-derived oxygen metabolites contribute to the development of the tissue injury associated with a variety of disease states, including emphysema, myocardial infarction, adult respiratory distress syndrome, immune complex-mediated vasculitis, and rheumatoid arthritis. Future studies to define further the mechanisms by which reactive oxygen-derived metabolic products mediate tissue injury will provide insight into the development of new therapeutic strategies for the modulation of disease states that are mediated by the recruitment and activation of PMNs.

Animals↗

The intersectin 2 adaptor links Wiskott Aldrich Syndrome protein (WASp)-mediated actin polymerization to T cell antigen receptor endocytosis.

Induction of T cell antigen receptor (TCR) endocytosis has a significant impact on TCR signaling and T cell behavior, but the molecular interactions coordinating internalization of the activated TCR are poorly understood. Previously we have shown that TCR endocytosis is regulated by the Wiskott Aldrich Syndrome protein (WASp), a cytosolic effector which, upon interaction with the cdc42 Rho GTPase, couples TCR engagement to Arp 2/3 complex-mediated actin polymerization. Here we report that WASp associates in T cells with intersectin 2, an endocytic adaptor containing multiple domains including a Dbl homology (DH) domain with the potential to activate Rho GTPases. Intersectin 2 association with WASp increases after TCR engagement, and its overexpression in Cos-7 cells induces WASp translocation to endocytic vesicles within which intersectin 2 colocalizes with both WASp and cdc42. Intersectin 2, but not a DH domain-deleted (DeltaDH) form of intersectin 2, and stimulation via the TCR also trigger the activation of cdc42. Induction of TCR internalization is also augmented by intersectin 2 and severely impaired by latrunculin B treatment. Thus, intersection 2 appears to function cooperatively with WASp and cdc42 to link the clathrin endocytic machinery to WASp-mediated actin polymerization and ultimately to occupancy-induced TCR endocytosis.

Actins↗

CD4+ lymphocyte depletion in HIV-infected patients is associated with gp120-immunoglobulin-complement attachment to CD4+ cells.

The mechanism of CD4+ lymphocyte depletion, which is the main immunological feature in HIV-infected patients, is unclear. We investigated whether gp120-immunoglobulin-complement complexes on the surface of CD4+ cells might be involved in the elimination of CD4+ lymphocytes. The results obtained in 63 HIV-infected patients show that gp120 is attached to a variable degree to CD4+ cells. Importantly, the percentage of CD4+gp120+ lymphocytes is inversely associated with CD4+ lymphocyte counts in the peripheral blood (p = 0.0004). CD4+gp120+ blood lymphocytes bind IgM (p = 0.0027) and IgG antibodies (p = 0.0001) and complement (p = 0.0005). These results suggest that immune complex-mediated cell elimination is an important mechanism of CD4+ cell depletion in patients with AIDS.

Antigen-Antibody Complex↗