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Biomedical subjects

D Rodríguez

Publications and source records attributed to D Rodríguez.

At least 55 records · Page 3Linked to original sources

Tuberculosis in a wild subantarctic fur seal from Argentina.

The first case of tuberculosis is described in a wild subantarctic fur seal (Arctocephalus tropicalis) found on the Argentine coast. There was hydrothorax and white firm granulomatous lesions of 40-50 mm in diameter in the lungs. Lesions consisted of a central area of caseous necrosis, an intermediate zone of epithelioid and lymphocytic mononuclear cells, and a peripheral zone of connective tissue. Biochemical and drug sensitivity tests and inoculation of Guinea pigs confirmed the identification as Mycobacterium tuberculosis complex. Arctocephalus tropicalis is the fifth pinniped species in which the M. tuberculosis complex has been detected. Since subantarctic fur seals are widely distributed in the Southern Hemisphere, it is possible that the tuberculosis cases may have a common origin and could spread to other austral regions and species.

Animals↗

Impairment of the inflammatory reaction on implanted Taenia solium metacestodes in mice by a T. solium RNA-peptide: a scanning electron microscopy study.

Inhibition of inflammation by a Taenia solium RNA-peptide (metacestode factor, MF) was studied by scanning electron microscopy (SEM). Viable (96%) T. solium metacestodes obtained from a naturally infected pig were dissected and implanted in treated and control mice, removed at 6 and 12 days postimplantation (p.i.), and studied by SEM. At day 6, metacestodes in control mice showed vigorous inflammation, whereas in mice treated with MF they were apparently intact with exiguous inflammation. Mice immunized with T. solium metacestode antigens showed a moderate inflammation; those treated with both MF and T. solium antigens presented scanty inflammation. At day 12, metacestodes presented copious inflammation and severe damage to the sucker tissues in mice immunized with T. solium; in mice treated with either MF or MF and T. solium antigens there was only discrete inflammation. These observations illustrate the central role of MF in the inhibition of the early events leading to the parasite's destruction by means of an inflammatory response.

Animals↗

Transcripts of a gene, encoding a small GTP-binding protein from Fagus sylvatica, are induced by ABA and accumulated in the embryonic axis of dormant seeds.

A cDNA clone was selected from a cDNA library constructed using mRNA from ABA-treated Fagus sylvatica L dormant seeds as a template. The clone is highly expressed in the presence of ABA and tends to disappear in stratified seeds. A search of sequence databases showed that the clone encodes a small GTP-binding protein. By means of in situ hybridization, the mRNA has been located in the apical meristem of the embryonic axis and in the central vascular cylinder. Its possible involvement in growth regulation in the embryonic axis of F. sylvatica is discussed.

Abscisic Acid↗

Vaccinia virus 15-kilodalton (A14L) protein is essential for assembly and attachment of viral crescents to virosomes.

Early stages in vaccinia virus (VV) assembly involve the recruitment of cellular membranes from the endoplasmic reticulum-Golgi intermediate compartment (ERGIC) to virus factories (or virosomes). The key viral factors involved in this process are not yet known. We have previously identified and characterized two viral proteins, of 21 kDa (A17L gene) and 15 kDa (A14L gene), that associate with tubulovesicular elements related to the ERGIC and are localized in viral membranes at all stages of virion assembly. We showed that the 21-kDa protein is not responsible for the recruitment of membranes from the ERGIC to viral factories. However, it appears to be essential for the organization of viral membranes. In this investigation we have generated a VV recombinant, VVindA14L, in which the expression of the A14L gene is inducibly regulated by the Escherichia coli lacI operator-repressor system. Repression of 15-kDa protein synthesis has a dramatic effect on virus yields and severely impairs plaque formation. Compared to wild-type VV, reduced amounts of 15-kDa protein are produced in VVindA14L-infected cells in the presence of IPTG (isopropyl-beta-D-thiogalactoside), and this correlates with a small-plaque phenotype and reduced VVindA14L yields under these conditions. In the absence of the 15-kDa protein, early and late viral protein syntheses proceed normally; however, proteolytic cleavage of the major core precursors is inhibited. Electron microscopic examination of cells infected with VVindA14L under nonpermissive conditions reveals the presence of numerous membranous elements that look like unfinished or disassembled crescents interspersed between electron-dense masses. These abnormal membrane elements are usually well separated from the surfaces of the dense structures. These findings show that the 15-kDa protein is essential for VV morphogenesis and indicate that this polypeptide is necessary both for the correct assembly of viral crescents and for their stable attachment to the surfaces of viral factories.

HeLa Cells↗

The apoptosis pathway triggered by the interferon-induced protein kinase PKR requires the third basic domain, initiates upstream of Bcl-2, and involves ICE-like proteases.

The interferon-induced double-stranded RNA-dependent protein kinase (PKR) is a serine/threonine kinase which exerts antiviral and anticellular functions. The antiviral effect of PKR is mediated by the phosphorylation of the alpha subunit of the translational initiation factor elF-2 alpha, while it is not known whether the anticellular effect is due to phosphorylation of elF-2 alpha, l kappa B, or other unknown substrates. We have previously shown that activation of PKR during infection of cells with a vaccinia virus recombinant expressing the wild-type kinase resulted in a complete inhibition of viral and cellular protein synthesis and in the induction of apoptosis. Here, we report that expression of the human proto-oncogene bcl-2 blocks PKR-induced apoptosis but not PKR-induced inhibition of translation. In addition, PKR-induced apoptosis resulted in a cleavage of the death substrate poly(ADP-ribose) polymerase (PARP). Moreover, induction of apoptosis by PKR was not observed with a mutant lacking the third basic region (aa 234-272). Taken together, these results suggest that the third basic region of PKR is required for PKR-induced apoptosis, the process is initiated upstream of bcl-2 and involves activation of a cellular protease, CPP32, or its family members that cleave PARP.

Apoptosis↗

Field trial for reducing porcine Taenia solium cysticercosis in Mexico by systematic vaccination of pigs.

It has previously been demonstrated that immunization of pigs with a crude extract of Taenia solium metacestodes can confer a high level of protection against an egg challenge. Furthermore, vaccination of infected animals also induces an immune response against the larvae, which are either destroyed or rendered non-infectious. To assess the efficacy of immunization as a strategy for reducing the prevalence of porcine cysticercosis, a field trial of this vaccine was performed in an endemic area in the northern region of the Guerrero State, Mexico, Random samples of pigs belonging to 17 villages were examined for metacestodes by inspection of their tongues. Each animal was immunized with a dose of 150 micrograms of protein (antigenic extract from Taenia solium metacestodes) by the intramuscular route. A prevalence of 2.4% of porcine cysticercosis on average was found in these villages at the beginning of the trial (62 cysticercotic pigs out of 2650 inspected). Six of these villages were selected for the periodic vaccination of new random samples of pigs. A statistically significant decline in the prevalence of porcine cysticercosis was observed at the end of the trial, decreasing from 2.4% at the beginning of vaccination to 0.45% at the end of the trial. A reduction of 82% was observed in spite of the poor living conditions in these villages. These results are consistent with previous data and suggest that it may be possible to turn a susceptible pig population into a protected one by systematic vaccination.

Animals↗

The expression of an abscisic acid-responsive glycine-rich protein coincides with the level of seed dormancy in Fagus sylvatica.

By differential screening of a cDNA library constructed from poly (A+) RNA of ABA-treated seeds of Fagus sylvatica L., we have isolated an ABA-responsive clone that is present in dormant seeds and under conditions that maintain dormancy, but it tends to disappear under conditions breaking seed dormancy. A search of the sequence data bases showed that the clone codes for a Glycine-Rich Protein and has sequence similarity to RNA-binding proteins. The clone, which exibits the characteristics of lea-genes, is up-regulated by ABA and down-regulated by GA3. Paclobutrazol abolishes the effect of GA3, which is restored upon addition of GA3. The possible relationship of this Glycine-Rich Protein to seed dormancy in F. sylvatica is discussed.

Abscisic Acid↗

Characterization of early stages in vaccinia virus membrane biogenesis: implications of the 21-kilodalton protein and a newly identified 15-kilodalton envelope protein.

Vaccinia virus (VV) membrane biogenesis is a poorly understood process. It has been proposed that cellular membranes derived from the endoplasmic reticulum-Golgi intermediate compartment (ERGIC) are incorporated in the early stages of virion assembly. We have recently shown that the VV 21-kDa (A17L gene) envelope protein is essential for the formation of viral membranes. In the present work, we identify a 15-kDa VV membrane protein encoded by the A14L gene. This protein is phosphorylated and myristylated during infection and is incorporated into the virion envelope. Both the 21- and 15-kDa proteins are found associated with cellular tubulovesicular elements related to the ERGIC, suggesting that these proteins are transported in these membranes to the nascent viral factories. When synthesis of the 21-kDa protein is repressed, organized membranes are not formed but numerous ERGIC-derived tubulovesicular structures containing the 15-kDa protein accumulate in the boundaries of the precursors of the viral factories. These data suggest that the 21-kDa protein is involved in organizing the recruited viral membranes, while the 15-kDa protein appears to be one of the viral elements participating in the membrane recruitment process from the ERGIC, to initiate virus formation.

Amino Acid Sequence↗

Metallic ion release in artificial saliva of titanium oral implants coupled with different metal superstructures.

In this work the metallic ion release in oral implants with superstructures of different metals and alloys used in clinical dentistry has been determined. This study has been realized in a saliva environment at 37 degrees C. The measurements of the ion release were carried out by means of the Inductively Coupled Plasma Mass Spectrometry technique. The titanium oral implant coupled with a chromium-nickel alloy releases a high quantity of ions and the implant coupled with the titanium superstructure presents a low value of ion release.

Chromium Alloys↗

Immunosuppression and inhibition of inflammation in mice induced by a small Taenia solium RNA-peptide to implanted T. solium metacestodes.

Subcutaneous implantation of Taenia solium metacestodes in mice induces an inflammatory reaction made up mainly of neutrophils and eosinophils after 12 days. Administration of a small RNA-peptide (metacestode factor, MF) purified from T. solium metacestodes significantly reduces the inflammatory site in both size and composition, yielding a very low number of eosinophils. The metacestodes implanted in control mice were completely destroyed and their remnants were surrounded by an intense inflammation predominantly made up of neutrophils and eosinophils. In contrast, metacestodes implanted in mice treated with MF showed apparently intact suckers, rostellum, hooks, and tegument. Inhibition of inflammation around the parasites was also observed in mice immunized with T. solium metacestode antigens and inoculated simultaneously with MF. Mice immunized only with T. solium metacestode antigens produced a granulomatous process around metacestodes that destroyed most of the large metacestode structures: suckers, rostellum, hooks, and tegument-wall tissues. Furthermore, treatment of mice with MF or implanted metacestodes decreased the antibody (P < 0.05) and cellular responses (P < 0.05) to metacestode antigens. The antibody responses was even lower when both of these treatments were given simultaneously. These findings support the idea that MF plays a key role in the down-regulation of the host immune response, contributing to the parasite's survival.

Animals↗

Use of persistent infections with vaccinia virus recombinants to introduce alterations in foreign proteins: an application to HIV-1 env protein.

With the aim of generating a virus-cell system to introduce alterations in proteins of interest--which may be of use in studies of their biological functions--we established a persistent infection on a B-lymphoma cell line (A20.2J) with vaccinia virus (VV) recombinants. As a model, we used a vaccinia virus recombinant expressing the human immunodeficiency virus HIV-1 env gene. In this unique virus-cell system, we found that it is possible to introduce several structural and functional alterations in the env protein with passage numbers. From passage 10-20, two new env products emerged: an uncleaved gp160 and a glycoprotein fragment of 110 kDa. The uncleaved gp160 exhibit interesting properties as an immunogen. This protein forms stable oligomers, is not released from the cells, cannot fuse CD4+ presenting HeLa cells and activates a stronger cellular immune response than the parental cleaved env. In contrast, the 110 kDa product is a poor immunogen, since it lacks the gp41 domain, cannot form oligomers, accumulates intracellularly and cannot fuse CD4+ cells. In the persistently infected cells we have also found alterations in another heterologous protein-beta-galactosidase-a gene inserted in the same locus of VV as the env gene. This alteration resulted in a truncation of the (beta-galactosidase protein from 125 kDa to about 70 kDa. A similar size truncation of env and of beta-galactosidase was observed in many of the isolated VV recombinants.

Animals↗

Inducible expression of the vaccinia virus A17L gene provides a synchronized system to monitor sorting of viral proteins during morphogenesis.

The vaccinia virus (VV) A17L gene encodes a 21- to 23-kDa virion component that forms a stable complex with the 14-kDa envelope protein (A27L gene). In a previous report, we described the construction of a VV recombinant, VVindA17L, in which the expression of the A17L gene is inducibly regulated by isopropyl-beta-D-thiogalactoside (IPTG). We demonstrated that shutoff of the A17L gene results in a blockade of virion morphogenesis at a very early stage (D. Rodríguez, M. Esteban, and J. R. Rodríguez, J. Virol. 69:4640-4648, 1995). In the present study, we show that virus growth is restored if the inducer is provided not later than 6 h postinfection. Immunofluorescence and immunoelectron microscopy analysis of VVindA17L-infected cells revealed that in the absence of the 21- to 23-kDa protein, the 14-kDa protein is distributed throughout the cytoplasm. After IPTG addition, the 14-kDa protein can be detected around viral factories and immature virions; at later times, it localizes in the external membranes of intracellular mature virions. Immunoelectron microscopy with anti-21- to 23-kDa antibodies showed that soon after induction, the protein accumulates in membranes of the rough endoplasmic reticulum and in the nuclear envelope. With time, the protein localizes in viral crescents and subsequently associates to the membranes of immature and intracellular mature virions. These results are consistent with a model in which the 21- to 23-kDa protein would be synthesized at the endoplasmic reticulum, from where the protein could be translocated to the membranes of the intermediate compartment to generate the precursors of the viral membranes. Also, these results argue that 14-kDa envelope protein becomes posttranslationally associated to viral membranes through its interaction with the 21-kDa protein.

Animals↗

[Sympathetic nervous activity in cirrhosis: the relationship between peripheral hemodynamics and renal function changes].

The relationship between the activity of the sympathetic nervous system and the systemic and peripheral hemodynamic and renal function changes and the antinatriuretic activity in a group of 30 cirrhotic patients and 8 healthy subjects (control group) was investigated. Plasma catecholamines (noradrenaline, adrenaline and dopamine), plasma renin activity, plasma aldosterone concentrations, mean arterial pressure, cardiac output, blood volume, right femoral arterial flow (RFAF) and renal function parameters were determined in all the participants. Cyclic GMP urinary excretion (cV-UGMP) was used as an indirect index of systemic nitric oxide production. The plasma concentration of noradrenaline was greater in the patients than in the control group and was directly correlated with other vasopressor and antinatriuretic systems, RFAF, cV-UGMP, the degree of hepatic failure studied by the Pugh score and was inversely correlated with creatinine clearance and urinary sodium excretion. On Cox regression analysis, only the RFAF, creatinine clearance and plasma adrenaline concentration remained independently associated with plasma noradrenaline levels. Furthermore, plasma noradrenaline was significantly higher in patients with greater hyperdynamic circulation. These results indicate that extrasplanchnic vasodilatation substantially contributes to sympathetic nervous hyperactivity which may significantly influence in the renal function changes observed in these patients.

Creatinine↗

Unusual sequence and characteristics of a chick-pea seed protein which is regulated by abscisic acid and is similar to late-embryogenesis-abundant proteins.

The cDNA clone GAB-9 was selected from a cDNA gene library constructed from the mRNA of embryonic axes of chick-pea (Cicer arietinum L.) seeds imbibed for 12 h in the presence of abscisic acid. The sequence of this cDNA has an open reading frame of 546 nucleotides that code for 182 amino acids. The polypeptide encoded by the corresponding mRNA is of approx. 20.5 kDa, is basic, and has a broad hydrophobic central region flanked by two hydrophilic regions. The unusual characteristics of this protein, which is similar to late-embryogenesis-abundant proteins, and its possible function are discussed.

Abscisic Acid↗

Suppression of murine lymphocyte proliferation induced by a small RNA purified from the Taenia solium metacestode.

A substance from Taenia solium metacestodes that decreases lymphocyte proliferation induced by concanavalin A was isolated. The molecular weight of this substance was estimated to be slightly more than 1,450 Da. Crude metacestode factor was fractionated through a Bio-gel P-6 column. Peak 1 showed suppressive activity. After incubation with RNase the substance lost its activity. Incubation of this material with trypsin or papain increased its suppressive activity. It was stable at boiling temperature for 10 min. The incubation of this substance with murine macrophages had no effect on [3H]-thymidine uptake by cocultured fresh splenic lymphocytes stimulated with concanavalin A. Conversely, cocultures of lymphocytes pretreated with the substance and fresh splenic lymphocytes showed a decreased incorporation of [3H]-thymidine. These results suggest that this substance is a RNA-peptide molecule whose RNA moiety accounts for its suppressive activity. The findings also suggest that in vivo the factor may be a modulator of the immune response.

Animals↗

Vaccinia virus A17L gene product is essential for an early step in virion morphogenesis.

Vaccinia virus (VV) A17L gene encodes a 23-kDa protein that is proteolytically cleaved to generate a 21-kDa product that is incorporated into the viral particles. We have previously shown that the 21-kDa protein forms a stable complex with the VV 14-kDa envelope protein and suggested that the 21-kDa protein may serve to anchor the 14-kDa protein to the envelope of the virion (D. Rodríguez, J. R. Rodríguez, and M. Esteban, J. Virol. 67:3435-3440, 1993). To study the role of the 21-kDa protein in virion assembly, in this investigation we generated a VV recombinant, VVindA17L, that contains an inducible A17L gene regulated by the E. coli repressor/operator system. In the absence of the inducer, shutoff of the A17L gene was complete, and this shutoff correlated with a reduction in virus yields of about 3 log units. Although early and late viral polypeptides are normally synthesized in the absence of the A17L gene product, proteolytic processing of the major p4a and p4b core proteins was clearly impaired under these conditions. Electron microscopy examination of cells infected in the absence of isopropylthiogalactopyranoside (IPTG) revealed that virion morphogenesis was completely arrested at a very early stage, even prior to the formation of crescent-shaped membranes, which are the first distinguishable viral structures. Only electron-dense structures similar to rifampin bodies, but devoid of membranes, could be observed in the cytoplasm of cells infected with VVindA17L under nonpermissive conditions. Considering the most recent assembly model presented by Sodeik et al. (B. Sodeik, R. W. Doms, M. Ericsson, G. Hiller, C. E. Machamer, W. van't Hof, G. van Meer, B. Moss, and G. Griffiths, J. Cell Biol. 121:521-541, 1993), we propose that this protein is targeted to the intermediate compartment and is involved in the recruitment of these membranes to the viral factories, where it forms the characteristic crescent structures that subsequently result in the formation of virions.

Base Sequence↗