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Impaired odor adaptation in olfactory receptor neurons after inhibition of Ca2+/calmodulin kinase II.

Odor adaptation in vertebrate olfactory receptor neurons (ORNs) is commonly attributed to feedback modulation caused by Ca(2+) entry through the transduction channels, but it remains unclear and controversial whether this Ca(2+)-mediated adaptation resides in the cAMP-gated channel alone or whether other molecules of the transduction cascade are modulated as well. Attenuation of adenylyl cyclase activity by Ca(2+)/calmodulin-dependent protein kinase II (CaMKII) has also been proposed as a mechanism for adaptation. To test this in intact ORNs, we have compared the properties of adaptation induced by a sustained (8 sec) or brief (100 msec) odor stimulus. Although adaptation induced by both types of stimuli occurs downstream from the odor receptors and is Ca(2+)-dependent, only adaptation induced by a sustained pulse involves alterations in the odor response kinetics, consistent with a reduction in the rate of adenylyl cyclase activation. By disrupting CaMKII to block adenylyl cyclase attenuation using a specific peptide inhibitor of CaMKII, autocamtide-2-related inhibitory peptide (AIP), we show that this reaction is necessary for odor adaptation in vivo. With CaMKII disrupted, adaptation induced by a sustained stimulus is significantly impaired: the onset rate of adaptation is decreased by threefold, and the recovery rate from adaptation is increased by up to sixfold. In contrast, adaptation induced by a brief odor pulse is unaffected, demonstrating that the effect of AIP must be highly specific. The results indicate that CaMKII controls the temporal response properties of ORNs during odor adaptation. We propose that CaMKII plays a prominent role in odor perception.

Adaptation, Physiological↗

Recalcitrant trichophytic granuloma associated with NK-cell deficiency in a SLE patient treated with corticosteroid.

Although deep trichophytic infection often occurs in immunocompromised patients, the immune deficiency in such patients has not been clarified. A 28-year-old man who suffered from recalcitrant trichophytic granuloma and tinea universalis during treatment for SLE with corticosteroid is described here to define the immunological abnormalities. In addition to routine immunological tests, we evaluated the patient's innate and specific immune functions to dermatophytes, including T cell, natural killer (NK) cell and neutrophil functions and activation of the complement cascade. We measured the minimum inhibitory concentration (MIC) of itraconazole for the isolated fungus and its concentrations in the patient's serum and pus. Trichophyton (T.) rubrum was constantly isolated from the exudates of the patient's skin lesions, although the concentrations of itraconazole in his serum (198 ng/ml) and lesions (210 ng/ml) were sufficient to inhibit the growth of the isolated fungus in vitro. Specific cell-mediated immune responses, determined by T cell stimulation and IFN-gamma production, were evoked following stimulation with trichophytic antigens. The patient's innate immunity, assessed by activation of the complement cascade and neutrophil-mediated phagocytosis, was not impaired. The number of circulating NK cells was markedly decreased (0.2% of the peripheral blood mononuclear cells), and was associated with low NK cell activity against K-562 cells even though lymphopenia had improved. The deficiency of innate immunity mediated by NK cells might be responsible for a part of the persistence of trichophytic granuloma in our case. Dermatophytes usually affect the horny layer of the skin and do not invade the living layers because the host immune system uses various mechanisms to eliminate the fungi. Both specific T cell-mediated immunity and nonspecific immunological mechanisms provide host defense against fungal infections. An adaptive immune response is usually preceded by innate immune responses mediated by neutrophils, NK cells, and circulating proteins such as complement components and anti-microbial peptides. However, in patients with localized or systemic immunological defects, granulomatous cutaneous infection of dermatophytes mostly caused by trichophytic fungi may occur [1]. Trichophytic granuloma includes Majocchi's granuloma [2] and disseminated trichophytic granuloma [3]. Recently, we experienced a patient with trichophytic granuloma and tinea universalis caused by Trichophyton (T.) rubrum infection during treatment with corticosteroid for systemic lupus erythematosus (SLE). We describe the clinical details of this patient, focusing on his immunological defects which led to the persistence of the fungal infection.

Adult↗

A study of Xlim1 function in the Spemann-Mangold organizer.

The Spemann-Mangold organizer is required in amphibian embryos to coordinate cell fate specification, differentiation of dorsal cell types and morphogenetic movements at early stages of development. A great number of genes are specifically expressed within the organizer, most of them encoding secreted proteins and transcription factors. The challenge is now to uncover genetic cascades and networks of interactions between these genes, in order to understand how the organizer functions. The task is immense and requires loss-of-function approaches to test the requirement for a given factor in a specific process. For transcription factors, it is possible to generate inhibitory molecules by fusing the DNA binding region to a repressor or activator domain, which should in principle antagonize the activity of the endogenous protein at the level of the DNA targets. We used this strategy to design activated and inhibitory forms of the LIM homeodomain transcription factor Lim1, which is encoded by an organizer gene involved in head development, as revealed by analyses of knockout mice. We found that Lim1 is a transcriptional activator, and can trigger dorso-anterior development upon ventral expression of hyperactive forms, in which Ldb1 is fused to Lim1. Using inhibitory Lim1 fusion proteins, we found that Lim1, or genes closely related to it, is required for head formation as well as for notochord development. Co-expression experiments revealed that Lim1 is required downstream of the early organizer factor Siamois, first, to establish the genetic program of the organizer and second, to mediate the action of organizer agents that are responsible for blocking ventralizing activities in the gastrula.

Animals↗

Antilymphocytic antibodies and marrow transplantation. VIII. Recipient conditioning with Clq-affine monoclonal anti-pan T antibodies prevents GVHD in homozygous fully mismatched mice.

An approach to suppressing secondary disease with antibodies was studied that differed from conventional antibody treatment of donor marrow in vitro. It consisted of the selection of anti-Thy-1 antibodies with high affinity for Clq, the first subunit of the complement cascade, and a single injection of such antibodies into prospective irradiated marrow recipients. Monoclonal mouse IgM and rat IgG 2c antibodies of high titers in complement-dependent test systems but with low affinity for Clq caused little immunosuppression. Monoclonal rat IgG2b or mouse IgG2a anti-Thy-1 antibodies with high affinity for Clq prevented acute and chronic mortality of graft-v-host disease (GVHD), however, when injected in irradiated CBA or AKR mice prior to C57BL/6 spleen and/or bone marrow cell transfusion. This treatment simultaneously suppressed residual host-v-graft reactivity of the irradiated mice, so that permanent hematopoietic engraftment ensued even at 5 or 6 Gy. Full chimerism and specific tolerance were obtained. Primary immune response to SRBC was clearly depressed in the chimeras; secondary immune response was not. Clearance of T cell antibody activity (greater than 6 days), timing, and dose of injected antibody, as well as other modalities of the conditioning treatment that may have contributed to the remarkable immunosuppression, are discussed.

Animals↗

Physical properties and use of pertechnegas as a ventilation agent.

UNLABELLED: Pertechnegas, a variant of technegas, produces similar ventilation images with a much increased clearance rate. This work aims to determine the properties of pertechnegas and its use as a ventilatory agent. METHODS: Fourteen men and 11 women were scanned for PE, after pertechnegas ventilation. Six were reimaged with technegas within 1 wk. Studies were reported according to PIOPED criteria. Pertechnegas samples were analyzed by transmission electron microscopy (TEM), cascade impaction (CI), aerosol mobility analysis (AMA), Fourier transform mass spectrometry (FTMS), x-ray photoelectron spectroscopy (XPS), paper strip (PC) and gas chromatography (GC). RESULTS: Post-test probabilities were normal in 5, low in 8, high in 5 and indeterminate in 7. There were 15 Grade 1, 6 Grade 2 and 4 Grade 3 studies. All Grade 3 patients had FEV1 < 1.5 liters, 3 with rates < 1.0 liter. Patients with high probability had proven deep venous thrombosis in three by venography and in one by doppler. TEM identified 0.3 micron salt particles. CI demonstrated a 7-min time to half clearance from the chamber for particles in the < 0.1 micron range. AMA indicated all particles were < 0.032 micron when salt was excluded. Pertechnegas behaves in PC as pertechnetate, GC demonstrated CO levels below 516 ppm. CO2 concentrations were 0.146 +/- 0.0009%. FTMS found molecular pertechnetate species including 99TcO3(OH)+, Na99TcO3(OH)3+ and Na99TcO3(OH)3+. XPS confirmed that these Tc species exist in oxidation state +7. CONCLUSION: Comparison with technegas images in the follow-up group proved equivalent in the first five views, but indistinct lung boundaries and a high background activity characterized the final anterior images. The active component of pertechnegas is molecular pertechnetate.

Adult↗

Tumour necrosis factor-alpha-induced phosphorylation and activation of cytosolic phospholipase A2 are abrogated by an inhibitor of the p38 mitogen-activated protein kinase cascade in human neutrophils.

The role of the newly identified p38 mitogen-activated protein kinase (MAP kinase) in terminally differentiated cells, such as human neutrophils, is totally unknown. In order to examine the possible role of this MAP kinase in the phosphorylation and activation of cytoplasmic phospholipase A2 (cPLA2), we tested the effect of the recently synthesized inhibitor of p38 MAP kinase, SB 203580, on the phosphorylation and activation of both p38 MAP kinase and cPLA2. We found that while tumour necrosis factor-alpha (TNF-alpha)-stimulated tyrosine phosphorylation of p38 MAP kinase is affected only slightly by SB 203580, its stimulated kinase activity is greatly reduced in human neutrophils in suspension treated with this inhibitor. Furthermore, the TNF-alpha-stimulated phosphorylation and activation of cPLA2 are completely abolished in cells treated with SB 203580. Based on these data, it is reasonable to conclude that an SB 203580-sensitive kinase, or kinases and/or phosphatases, are involved in the phosphorylation and activation of cPLA2 in intact human neutrophils in suspension stimulated by TNF-alpha. The possible role of the p38 MAP kinase cascade in the phosphorylation and activation of cPLA2 is discussed.

Calcium-Calmodulin-Dependent Protein Kinases↗

Effects of pranlukast on aspirin-induced bronchoconstriction: differences in chemical mediators between aspirin-intolerant and tolerant asthmatic patients.

BACKGROUND: Aspirin inhibits cyclooxygenase activity and modifies production of the arachidonate cascade in aspirin-induced asthma. The aim of the present study was to examine the effects of leukotriene (LT) receptor antagonist on aspirin challenge on eosinophil activity and chemical mediators released into the airway of asthmatic patients. METHODS: Aspirin oral provocation test was performed in aspirin-intolerant asthmatic patients (AIA; N = 7) and aspirin-tolerant asthmatic patients (ATA; N = 7). In AIA, LT receptor antagonist (pranlukast) was administered orally 2 hours before the test, and its inhibitory effects on sputum LTC4+C4, eosinophil cationic protein (ECP), eosinophil count, urinary LTE4/creatinine (Cr), 11-dehydrothromboxane (11-dhTX) B2/Cr, serum LTC4+D4, ECP, and peripheral blood eosinophil count were compared with the findings in ATA subjects. RESULTS: In AIA, aspirin induced an immediate reaction associated with increased urinary LTE4/Cr and sputum ECP and a fall in urinary 11-dhTXB2/Cr. Pranlukast inhibited the bronchial reaction and an increase in sputum ECP after threshold dosed of ASA, but failed to change aspirin-induced LT production in sputum and urine. In ATA, aspirin challenge was only associated with a fall in urinary 11-dhTXB2. CONCLUSIONS: Our results indicated that aspirin-induced asthma is associated with overproduction of LT with a shift to the 5-lipoxygenase series of the arachidonate cascade and that leukotriene receptor antagonist are useful for AIA through inhibition of production of LT and eosinophilic inflammation in the airway.

Adult↗

Role of mitogen activated protein kinase cascade pathway and anti-stress response in liver transplantation.

OBJECTIVE: To explore the changes of mitogen activated protein kinase (MAPK) cascade pathway and anti-stress response of hepatocytes after liver transplantation. METHODS: Ten normal liver specimens and 18 punctured donor liver specimens were divided into 3 groups: A (control:10), B (no rejection:10) and C (acute rejection:8). MAPK, Ras, Jun and heat shock protein 70 (HSP70) were tested immunohistochemically while Ras and HSP70 were tested by in situ hybridization. All sections were subjected to image analysis. RESULTS: Protein expressions of MAPK, Ras and Jun were increased by an ascending order of groups A, B and C. The protein expression of HSP70 was the highest in group B but lower in group C. Expressions of Ras and HSP70 mRNA were consistent with those of protein. CONCLUSIONS: The changes of the MAPK cascade pathway and anti-stress response of hepatocytes after liver transplantation are one of regulation mechanisms for protecting the hepatocytes from damage after liver transplantation. This mechanism is active to support individual survival

Gene Expression↗

Modulation of T cell morphology and induction of homotypic adhesion by a protein tyrosine kinase inhibitor.

T cells are spherical in culture and during travel through the bloodstream. They depart from this shape as part of the adhesion cascade by which they penetrate endothelium, interact with the extracellular matrix, and migrate through tissues. The mechanisms by which shape changes and altered adhesive properties are regulated are largely uncharacterized; however, they involve modulation of protein phosphorylation on tyrosine. Here, an inhibitor (MDHC) of protein tyrosine kinases (PTK) caused a shift in the morphology of a human T cell line from spherical to spread. This involved cytoskeletal components and was preceded by altered tyrosyl-phosphorylation and accompanied by an increased capacity for homotypic adhesion involving LFA-1 and CD2. Examples exist demonstrating prevention of morphological alteration or cell adhesion by PTK inhibitors, and thus MDHC differed from these other inhibitors. This suggests differential sites of action for PTK inhibitors and perhaps that MDHC accessed different steps in the adhesion cascade.

Cell Adhesion↗

Mi-1-Mediated aphid resistance involves salicylic acid and mitogen-activated protein kinase signaling cascades.

The tomato Mi-1 gene confers resistance to root-knot nematodes (Meloidogyne spp.), potato aphids (Macrosiphum eluphorbiae), and whiteflies (Bemisia tabaci and B. tabaci biotype B). Resistance to potato aphid is developmentally regulated and is not associated with induction of a hypersensitive response. The NahG transgene that eliminates endogenous salicylic acid (SA) was used to test the role of the SA signaling pathway in the resistance mediated by Mi-1 to potato aphids. Aphids survived longer on NahG tomato plants than on wild type. However, aphid reproduction was not affected on NahG tomato. Aphid resistance in Mi-1 NahG plants was completely abolished and the phenotype was successfully rescued by application of BTH (benzo(1,2,3)-thiaiazole-7-carbothioic acid S-methyl ester), indicating that the SA signaling pathway is an important component of Mi-1-mediated aphid resistance. Using virus-induced gene silencing, one or more mitogen-activated protein kinase (MAPK) cascades required for Mi-1-mediated aphid resistance were identified. Silencing plants for MAPK kinase (LeMKK2) and MAPKs (LeMPK2 and LeMPK1, or LeMPK3) resulted in attenuation of Mi-1-mediated aphid resistance. These results further demonstrate that resistance gene-mediated signaling events against piercing-sucking insects are similar to those against other plant pathogens.

Animals↗

An anti-inflammatory benzamide derivative inhibits the protein kinase C (PKC)-dependent pathway of ERK2 phosphorylation in murine macrophages.

We have previously described benzamide derivatives that inhibited tumor necrosis factor (TNF) production from activated macrophages (Mphi) probably by interacting with a protein kinase C (PKC)-dependent pathway. To investigate their mode of action further, we first tested their effect on isolated PKC in vitro, using the selective inhibitor bisindolylmaleimide (BIM) as a positive control. We found that our representative compound JM34 did not inhibit PKC activity in vitro. We then investigated pathways located downstream of PKC and focused on the Raf1/MEK1,2/Erk1,2 cascade known to be preferentially activated by PKC activators such as phorbol esters. We found that JM34 dose-dependently inhibited Erk2 phosphorylation in Mphi stimulated by phorbol dibutyrate and calcium ionophore (maximal inhibition of 85% at 300 microM). BIM at 3 microM totally abrogated Erk2 phosphorylation. After stimulation with endotoxin or zymosan, Erk2 phosphorylation was only partially inhibited (25-30%) by JM34 or BIM, which confirmed that PKC-independent events were also involved in Erk2 phosphorylation. Because activated Erk2 has been shown to activate phospholipase A2, we tested the effect of JM34 and BIM on the release of arachidonate metabolites from activated Mphi. We found that both products partially inhibited the release of arachidonate metabolites from zymosan-activated Mphi at levels comparable to their inhibition of Erk2 phosphorylation. In contrast, JM34 and BIM markedly differed in their ability to inhibit TNF production. Taken together, our results suggest that JM34 inhibited the PKC-dependent pathway of Erk2 phosphorylation, which may fully account for its inhibitory effect on phospholipase A2 activation. However, the inhibition of TNF release by JM34 probably involved inhibition of an additional pathway, distinct from the Erk1/Erk2 cascade.

Animals↗

Intact pancreatic islet function despite humoral xenorecognition in the pig-to-monkey combination.

BACKGROUND: The aim of this study was to analyze humoral xenoreactivity of various Old World primate species sera against pig islets and the effects of these sera on pig islet viability and function after culture. METHODS: Freshly isolated or cultured adult pig islets were analyzed by immunohistology or by cytofluorimetry for Old World primate xenoreactive natural antibody (XNA) binding and complement deposition. Complement-mediated cytotoxicity was evaluated by 51Cr release assays. After 4 days of culture in 50% sera from Old World primates, the morphology and in vitro metabolic function of pig islets were also analyzed. RESULTS: Chimpanzee, Macaca mulatta (rhesus), or baboon XNA binding was detectable only on intra-islet endothelial cells (ECs). Incubation of pig islets with sera from all Old World primate species tested showed C3 and C4 deposition on ECs and on some surrounding endocrine cells. However, membrane attack complex (MAC) showed a pattern of positivity similar to XNA binding, i.e., restricted to ECs only. No deposition of factor B was detected. Although complement cascade was activated, no cytotoxicity was observed after incubation of islets with chimpanzee serum, whereas between 10% and 35% 51Cr specific release was obtained with rhesus, baboon, or Macaca fascicularis sera. Despite this cytotoxic effect, purified pig islets showed a normal morphology and a well-preserved insulin release in response to an acute glucose stimulus, after prolonged culture with 50% serum obtained from all primate species considered. CONCLUSIONS: Despite the fact that pig beta-cell function was not affected by the serum of any of the primate species tested, some of them yielded significant lysis of islet cells, presumably as a result of a cytotoxic effect on intra-islet ECs. These data show that Old World primate sera from different species do not have equivalent effect on pig islets; these differences should be taken into account in preclinical trials of pig islet xenotransplantation.

Animals↗

An automatic autotransfusion system with a centrifugal pump: a hematologic evaluation in dogs.

The requirements that have to be met by an on-line autotransfusion system (ATS) in case of massive blood loss are a sufficient capacity for reinfusing the shed blood, an optimal hemocompatibility, ability to prevent reinfusion of aspirated air, and ease of operation. In a previous study we tested a diaphragm pump in our pneumatically driven ATS that met these requirements. In this study a centrifugal pump was used as an outflow pump in otherwise the same system. A centrifugal pump has important advantages: It prevents the occurrence of massive air embolism, accidental obstruction of the outflow line will not cause bursting of the tubing, and there is no spallation. There are also indications that a centrifugal pump causes less stimulation of the coagulation cascade than do other pumps. Because of these advantages, we were interested in the hemocompatibility and pumping characteristics of the centrifugal pump in our ATS. From this study we conclude that the hemocompatibility of the centrifugal pump was not significantly different from that of the previously tested diaphragm pump. Also, the system can easily and safely be operated by non-specialized personnel. Because of the advantages, especially in pumping characteristics, the centrifugal pump is our choice in on-line ATSs.

Animals↗

Detection of peptidoglycan and beta-glucan with silkworm larvae plasma test.

A method to detect peptidoglycan and (1-->3) beta-D-glucan with silkworm larvae plasma (SLP) derived from the hemolymph of the silkworm, Bombyx mori was developed. SLP contains all of the factors of the pro-phenol oxidase cascade, an important self-defense mechanism of insects. Peptidoglycan or (1-->3)-beta-D-glucan initiates the cascade, in which pro-phenol oxidase is finally activated to phenol oxidase. The phenol oxidase activity was colorimetrically or visually detected with 3,4-dihydroxyphenylalanine as a substrate. SLP displayed high reactivity with peptidoglycan and polysaccharides containing 1,3-beta-glucosidic linkages, but not with endotoxins. SLP is useful for the detection of microbial contamination because peptidoglycan and (1-->3)-beta-D-glucan are cell wall components of bacteria and fungi, respectively.

Animals↗

Binding of vitronectin by the Moraxella catarrhalis UspA2 protein interferes with late stages of the complement cascade.

Many Moraxella catarrhalis strains are resistant to the bactericidal activity of normal human serum (NHS). The UspA2 protein of the serum-resistant strain O35E has previously been shown to be directly involved in conferring serum resistance on this strain. Testing of 11 additional serum-resistant M. catarrhalis wild-type isolates and their uspA1 and uspA2 mutants showed that the uspA1 mutants of all 11 strains were consistently serum resistant and that the uspA2 mutants of these same 11 strains were always serum sensitive. Analysis of complement deposition on four different serum-resistant M. catarrhalis strains and their serum-sensitive uspA2 mutants showed that, for three of these four strain sets, the wild-type and mutant strains bound similar amounts of early complement components. In contrast, there was a significant reduction in the amount of the polymerized C9 on the wild-type strains relative to that on the uspA2 mutants. These same three wild-type strains bound more vitronectin than did their uspA2 mutants. UspA2 proteins from these three strains, when expressed in Haemophilus influenzae, bound vitronectin and conferred serum resistance on this organism. Furthermore, vitronectin-depleted NHS exhibited bactericidal activity against these same three serum-resistant wild-type strains; addition of purified vitronectin to this serum restored serum resistance. In contrast, binding of the complement regulator C4b-binding protein by the M. catarrhalis strains used in this study was found to be highly variable and did not appear to correlate with the serum-resistant phenotype. These results indicate that binding of vitronectin by UspA2 is involved in the serum resistance of M. catarrhalis; this represents the first example of vitronectin-mediated serum resistance on a microbe.

Bacterial Outer Membrane Proteins↗

No evidence for productive PERV infection of baboon cells in in vivo infection model.

OBJECTIVES: The discovery that pig endogenous retroviruses are infectious for human cells in vitro lead to vehement discussions about the possible risk of infection after clinical xenotransplantation. Since PERV transmission to non-human primate cells in vitro has been observed, similar to human cells, infection studies in non-human primates should represent the best model to analyze a potential PERV transmission after xenotransplantation. However, it is still open to discussion, whether non-human primate cells can be infected productively-similar to human cells- and whether those species are suitable to analyze PERV infection risks in vivo. METHODS: In vitro, only few cell types can be tested for susceptibility. We developed a pig to baboon cell transplantation model with special emphasis on B-cell effective immunosuppression, removal of anti Gal-alpha 1,3-Gal-antibodies, inhibition of the complement cascade and long term survival of transplanted cellular grafts. This model allows us to investigate in vivo, whether any baboon cell types may be permissive for productive PERV infection. The xenograft recipients were investigated for up to 535 days post transplantation. Gal-alpha 1,3-Gal-antibody and complement levels were monitored. Potential PERV transmission was analyzed, not only in PBMC, but in a variety of tissue samples as well as in serum and plasma samples by PCR, RT-PCR and by detection of RT-activity. Moreover, potential PERV specific immune responses were studied by a highly sensitive Western-Blot-assay. RESULTS: Despite several days of extremely low levels of Gal-alpha 1,3-Gal-antibody and complement, and despite of long term xenochimerism, no evidence for PERV infection was obtained in any of the tested tissues or in the tested serum samples. CONCLUSION: This study supplies further evidence for a low susceptibility of baboons towards productive PERV infection after xenotransplantation.

Animals↗

Evaluation of baculovirus expression vectors with enhanced stability in continuous cascaded insect-cell bioreactors.

Continuous protein production with baculovirus expression vectors in insect-cell bioreactors is characterized by a dramatic drop in heterologous protein production within a few weeks. This is mainly due to the spontaneous deletion of the heterologous gene(s) from the baculovirus genome and/or to the rapid accumulation of defective interfering baculoviruses (DIs). Cell culture experiments with bacmid-derived baculoviruses showed that spontaneous deletions in the foreign bacterial artificial chromosome (BAC) sequences readily occurred. These deletions correlated with a low density of baculovirus homologous (repeat) regions (hrs), which are located dispersed throughout the baculovirus genome and are believed to act as origins of viral DNA replication (oris). To test the hypothesis that deletions are more likely to occur in regions with a low ori density, the properties of bacmid-derived baculoviruses with an additional hr in the unstable BAC sequences were compared to the standard bacmid-derived baculovirus in a continuous cascaded insect-cell bioreactor configuration. All viruses were equipped with a green fluorescent protein (GFP) gene and a gene encoding the classical swine fever virus E2 glycoprotein (CSFV-E2). The insertion of an extra hr in the BAC vector led to improved genetic stability of adjacent sequences, resulting in prolonged protein expression. The maintenance of the BAC sequences appeared to be dependent on the orientation of the inserted hr. The advantages of the utilization of hrs to improve the stability of baculovirus expression vectors for the large-scale protein production in insect-cell bioreactors are discussed.

Animals↗

C-reactive protein-mediated complement activation in polymyalgia rheumatica and other systemic inflammatory diseases.

An immunoglobulin-independent deposition of the complement (C) components C4 and C3 occurs on rat kidney medullary structures, when sera of patients with various inflammatory diseases are studied by indirect immunofluorescence. The diagnostic value of this new test (C4-C3-IFT) for polymyalgia rheumatica (PMR) is stressed, since all sera from patients with active disease yielded positive reactions. Though highly sensitive with respect to PMR, C4/C3-IFT is not specific for this syndrome. Examples of positive reactions in systemic inflammatory diseases other than PMR are documented. Besides the clinical studies, C4/C3-IFT reactivity was analyzed with regard to the mechanisms of the reaction. Experimental data are presented which suggest that C-reactive protein (CRP) binds to rat kidney structures, thereby activating the classical C cascade. As a result of CRP-C interaction, C4 and C3 components are fixed to distinct renal medullary structures. Because of its technical simplicity, C4/C3-IFT can routinely be used to screen patients' sera for CRP-mediated C activation. This ex vivo test system may contribute to a better understanding of pathophysiological functions of serum CRP in various inflammatory diseases.

Antigen-Antibody Complex↗