267 resultados para Hsp70


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Pós-graduação em Agronomia (Genética e Melhoramento de Plantas) - FCAV

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Pós-graduação em Patologia - FMB

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pós-graduação em Ginecologia, Obstetrícia e Mastologia - FMB

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Monitoring of the kinetics of production of serum antibodies to multiple mycobacterial antigens can be useful as a diagnostic tool for the detection of Mycobacterium bovis infection as well as for the characterization of disease progression and the efficacy of intervention strategies in several species. The humoral immune responses to multiple M. bovis antigens by white-tailed deer vaccinated with BCG orally via a lipid-formulated bait (n = 5), orally in liquid form (n = 5), and subcutaneously (n = 6) were evaluated over time after vaccination and after experimental challenge with virulent M. bovis and were compared to the responses by unvaccinated deer (n = 6). Antibody responses were evaluated by using a rapid test (RT), a multiantigen print immunoassay (MAPIA), a lipoarabinomannan enzyme-linked immunosorbent assay (LAM-ELISA), and immunoblotting to whole-cell sonicate and recombinant antigen MPB83. MAPIA and RT detected minimal to no antibody responses over those at the baseline to multiple M. bovis antigens in vaccinated white-tailed deer after challenge. This was in contrast to the presence of more readily detectable antibody responses in nonvaccinated deer with more advanced disease. The LAM-ELISA results indicated an overall decrease in the level of production of detectable antibodies against lipoarabinomannan-enriched mycobacterial antigen in vaccinated animals compared to that in nonvaccinated animals after challenge. Immunoblot data were inconsistent but did suggest the occurrence of unique antibody responses by certain vaccinated groups to Ag85 and HSP70. These findings support further research toward the improvement and potential use of antibody-based assays, such as MAPIA, RT, and LAM-ELISA, as tools for the antemortem assessment of disease progression in white-tailed deer in both experimental and field vaccine trials.

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Heat shock proteins play a key regulatory role in cellular defense. To investigate the role of the inducible 70-kDa heat shock protein (HSP70) in skeletal muscle atrophy and subsequent recovery, soleus (SOL) and extensor digitorum longus (EDL) muscles from overexpressing HSP70 transgenic mice were immobilized for 7 days and subsequently released from immobilization and evaluated after 7 days. Histological analysis showed that there was a decrease in cross-sectional area of type II myofiber from EDL and types I and II myofiber from SOL muscles at 7-day immobilization in both wild-type and HSP70 mice. At 7-day recovery, EDL and SOL myofibers from HSP70 mice, but not from wild-type mice, recovered their size. Muscle tetanic contraction decreased only in SOL muscles from wild-type mice at both 7-day immobilization and 7-day recovery; however, it was unaltered in the respective groups from HSP70 mice. Although no effect in a fatigue protocol was observed among groups, we noticed a better contractile performance of EDL muscles from overexpressing HSP70 groups as compared to their matched wild-type groups. The number of NCAM positive-satellite cells reduced after immobilization and recovery in both EDL and SOL muscles from wild-type mice, but it was unchanged in the muscles from HSP70 mice. These results suggest that HSP70 improves structural and functional recovery of skeletal muscle after disuse atrophy, and this effect might be associated with preservation of satellite cell amount.

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Protein folding, refolding and degradation are essential for cellular life and are regulated by protein homeostatic processes such those that involve the molecular chaperone DnaK/Hsp70 and its co-chaperone DnaJ. Hsp70 action is initiated when proteins from the DnaJ family bind an unfolded protein for delivery purposes. In eukaryotes, the DnaJ family can be divided into two main groups, Type I and Type II, represented by yeast cytosolic Ydj1 and Sis1, respectively. Although sharing some unique features both members of the DnaJ family, Ydj1 and Sis1 are structurally and functionally distinct as deemed by previous studies, including the observation that their central domains carry the structural and functional information even in switched chimeras. In this study, we combined several biophysical tools for evaluating the stability of Sis1 and mutants that had the central domains (named Gly/Met rich domain and C-terminal Domain I) deleted or switched to those of Ydj1 to gain insight into the role of these regions in the structure and function of Sis1. The mutants retained some functions similar to full length wild-type Sis1, however they were defective in others. We found that: 1) Sis1 unfolds in at least two steps as follows: folded dimer to partially folded monomer and then to an unfolded monomer. 2) The Gly/Met rich domain had intrinsically disordered characteristics and its deletion had no effect on the conformational stability of the protein. 3) The deletion of the C-terminal Domain I perturbed the stability of the dimer. 4) Exchanging the central domains perturbed the conformational stability of the protein. Altogether, our results suggest the existence of two similar subdomains in the C-terminal domain of DnaJ that could be important for stabilizing each other in order to maintain a folded substrate-binding site as well as the dimeric state of the protein.

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Characterization of Human Respiratory Syncytial Virus (HRSV) protein interactions with host cell components is crucial to devise antiviral strategies. Viral nucleoprotein, phosphoprotein and matrix protein genes were optimized for human codon usage and cloned into expression vectors. HEK-293T cells were transfected with these vectors, viral proteins were immunoprecipitated, and co-immunoprecipitated cellular proteins were identified through mass spectrometry. Cell proteins identified with higher confidence scores were probed in the immunoprecipitation using specific antibodies. The results indicate that nucleoprotein interacts with arginine methyl-transferase, methylosome protein and Hsp70. Phosphoprotein interacts with Hsp70 and tropomysin, and matrix with tropomysin and nucleophosmin. Additionally, we performed immunoprecipitation of these cellular proteins in cells infected with HRSV, followed by detection of co-immunoprecipitated viral proteins. The results indicate that these interactions also occur in the context of viral infection, and their potential contribution for a HRSV replication model is discussed.

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In the last decades, the increase of industrial activities and of the request for the world food requirement, the intensification of natural resources exploitation, directly connected to pollution, have aroused an increasing interest of the public opinion towards initiatives linked to the regulation of food production, as well to the institution of a modern legislation for the consumer guardianship. This work was planned taking into account some important thematics related to marine environment, collecting and showing the data obtained from the studies made on different marine species of commercial interest (Chamelea gallina, Mytilus edulis, Ostrea edulis, Crassostrea gigas, Salmo salar, Gadus morhua). These studies have evaluated the effects of important physic and chemical parameters variations (temperature, xenobiotics like drugs, hydrocarbons and pesticides) on cells involved in the immune defence (haemocytes) and on some important enzymatic systems involved in xenobiotic biotransformation processes (cytochrome P450 complex) and in the related antioxidant defence processes (Superoxide dismutase, Catalase, Heat Shock Protein), from a biochemical and bimolecular point of view. Oxygen is essential in the biological answer of a living organism. Its consume in the normal cellular breathing physiological processes and foreign substances biotransformation, leads to reactive oxygen species (ROS) formation, potentially toxic and responsible of biological macromolecules damages with consequent pathologies worsening. Such processes can bring to a qualitative alteration of the derived products, but also to a general state of suffering that in the most serious cases can provoke the death of the organism, with important repercussions in economic field, in the output of the breedings, of fishing and of aquaculture. In this study it seemed interesting to apply also alternative methodologies currently in use in the medical field (cytofluorimetry) and in proteomic studies (bidimensional electrophoresis, mass spectrometry) with the aim of identify new biomarkers to place beside the traditional methods for the control of the animal origin food quality. From the results it’s possible to point out some relevant aspects from each experiment: 1. The cytofluorimetric techniques applied to O. edulis and C. gigas could bring to important developments in the search of alternative methods that quickly allows to identify with precision the origin of a specific sample, contributing to oppose possible alimentary frauds, in this case for example related to presence of a different species, also under a qualitative profile, but morpholgically similar. A concrete perspective for the application in the inspective field of this method has to be confirmed by further laboratory tests that take also in account in vivo experiments to evaluate the effect in the whole organism of the factors evaluated only on haemocytes in vitro. These elements suggest therefore the possibility to suit the cytofluorimetric methods for the study of animal organisms of food interest, still before these enter the phase of industrial working processes, giving useful information about the possible presence of contaminants sources that can induce an increase of the immune defence and an alteration of normal cellular parameter values. 2. C. gallina immune system has shown an interesting answer to benzo[a]pyrene (B[a]P) exposure, dose and time dependent, with a significant decrease of the expression and of the activity of one of the most important enzymes involved in the antioxidant defence in haemocytes and haemolymph. The data obtained are confirmed by several measurements of physiological parameters, that together with the decrease of the activity of 7-etossi-resourifine-O-deetilase (EROD linked to xenobiotic biotransformation processes) during exposure, underline the major effects of B[a]P action. The identification of basal levels of EROD supports the possible presence of CYP1A subfamily in the invertebrates, still today controversial, never identified previously in C. gallina and never isolated in the immune cells, as confirmed instead in this study with the identification of CYP1A-immunopositive protein (CYP1A-IPP). This protein could reveal a good biomarker at the base of a simple and quick method that could give clear information about specific pollutants presence, even at low concentrations in the environment where usually these organisms are fished before being commercialized. 3. In this experiment it has been evaluated the effect of the antibiotic chloramphenicol (CA) in an important species of commercial interest, Chamelea gallina. Chloramphenicol is a drug still used in some developing countries, also in veterinary field. Controls to evaluate its presence in the alimentary products of animal origin, can reveal ineffective whereas the concentration results to be below the limit of sensitivity of the instruments usually used in this type of analysis. Negative effects of CA towards the CYP1A- IPP proteins, underlined in this work, seem to be due to the attack of free radicals resultant from the action of the antibiotic. This brings to a meaningful alteration of the biotransformation mechanisms through the free radicals. It seems particularly interesting to pay attention to the narrow relationships in C. gallina, between SOD/CAT and CYP450 system, actively involved in detoxification mechanism, especially if compared with the few similar works today present about mollusc, a group that is composed by numerous species that enter in the food field and on which constant controls are necessary to evaluate in a rapid and effective way the presence of possible contaminations. 4. The investigations on fishes (Gadus morhua, and Salmo salar) and on a bivalve mollusc (Mytilus edulis) have allowed to evaluate different aspects related to the possibility to identify a biomarker for the evaluation of the health of organisms of food interest and consequently for the quality of the final product through 2DE methodologies. In the seafood field these techniques are currently used with a discreet success only for vertebrates (fishes), while in the study of the invertebrates (molluscs) there are a lot of difficulties. The results obtained in this work have underline several problems in the correct identification of the isolated proteins in animal organisms of which doesn’t currently exist a complete genomic sequence. This brings to attribute some identities on the base of the comparison with similar proteins in other animal groups, incurring in the possibility to obtain inaccurate data and above all discordant with those obtained on the same animals by other authors. Nevertheless the data obtained in this work after MALDI-ToF analysis, result however objective and the spectra collected could be again analyzed in the future after the update of genomic database related to the species studied. 4-A. The investigation about the presence of HSP70 isoforms directly induced by different phenomena of stress like B[a]P presence, has used bidimensional electrophoresis methods in C. gallina, that have allowed to isolate numerous protein on 2DE gels, allowing the collection of several spots currently in phase of analysis with MALDI-ToF-MS. The present preliminary work has allowed therefore to acquire and to improve important methodologies in the study of cellular parameters and in the proteomic field, that is not only revealed of great potentiality in the application in medical and veterinary field, but also in the field of the inspection of the foods with connections to the toxicology and the environmental pollution. Such study contributes therefore to the search of rapid and new methodologies, that can increase the inspective strategies, integrating themselves with those existing, but improving at the same time the general background of information related to the state of health of the considered animal organism, with the possibility, still hypothetical, to replace in particular cases the employment of the traditional techniques in the alimentary field.

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Zusammenfassung In der vorliegenden Arbeit wurden unterschiedliche Eigenschaften von tandem repetitiver DNA (trDNA) analysiert. Drei der untersuchten trDNA-Familien (Cla-Elemente, Alu-Elemente, 1,688-Satelliten-DNA) stammen aus der genomischen DNA von Insekten, während ein trDNA-Cluster artifiziell aus Hsp70 Promotoren hergestellt wurde. Untersucht wurde die Stabilität dieser trDNA-Sequenzfamilien innerhalb eines Plasmidvektors in E. coli bzw. nach Integration der trDNA auch im Genom von D. melanogaster. Der Schwerpunkt der Arbeit liegt jedoch in der Analyse des Einflusses von trDNA auf die Expression eines benachbarten Reportergens in D. melanogaster.Ziel der Untersuchungen zur Stabilität war es, Eigenschaften von trDNA-Clustern und Mechanismen aufzuzeigen, die die Stabilität derselben in E. coli und im Genom von D. melanogaster beeinflussen. Mit Ausnahme der Alu-Elemente zeigen alle trDNA-Familien eine deutliche Instabilität in E. coli. Am Beispiel der Cla-Elemente wurde gezeigt, daß spezifische Eigenschaften der trDNA-Familie, wie etwa die sequenzbedingte Krümmung der Helixachse, keinen Einfluß auf die Stabilität des trDNA-Clusters haben, sondern die Orientierung des trDNA-Clusters innerhalb des Vektors ausschlaggebend ist. Ein entscheidender Faktor könnte die Orientierung des trDNA-Clusters relativ zur Wanderungsrichtung der Replikationsgabel in E. coli sein. Am Beispiel des trDNA-Clusters aus artifiziellen Hsp70 Promotoren konnte gezeigt werden, daß verschiedene Rekombinationssysteme an der Instabilität in E. coli beteiligt sind. Die meisten beobachteten Deletionen von trDNA sind RecA-abhängig. Zusätzlich findet jedoch in einem kleinen Teil der Plasmide auch eine RecA-unabhängige Rekombination statt. Sowohl in E. coli als auch in D. melanogaster wurde als vorherrschender Mechanismus der trDNA-Instabilität die homologe Rekombination identifiziert. TrDNA-Cluster, die in E. coli deutlich instabil sind, können jedoch im Genom von D. melanogaster weitgehend stabil sein. Auch Faktoren, die in E. coli die Stabilität eines trDNA-Clusters beeinflussen, wie etwa die Orientierung, zeigen in D. melanogaster keinen Einfluß auf die Stabilität der trDNA-Cluster. Ergebnisse aus Stabilitätsuntersuchungen in E. coli können damit nicht ohne Überprüfung auf andere Organismen übertragen werden. Im Hauptteil der Arbeit sollte geklärt werden, ob trDNA generell die Expression benachbarter Gene beeinflußt und welche Eigenschaften der trDNA für diesen inhibitorischen oder stimulierenden Effekt verantwortlich sind. Keine der untersuchten trDNA-Familien zeigt einen inhibitorischen Effekt auf ein benachbartes Reportergen. Entgegen dem Modell von Dorer und Henikoff (1994) führen trDNA-Cluster nicht per se zu der Entstehung von Heterochromatin. Die Ergebnisse der vorliegenden Arbeit zeigen, daß sowohl ein trDNA-Cluster aus Cla-Elementen als auch aus Hsp70 Promotor-Elementen eine deutliche Steigerung der Expression des miniwhite-Reportergens bewirken. Diese Steigerung ist für beide trDNA-Familien unabhängig von der chromosomalen Lage des Transgens im Euchromatin. In beiden Fällen ist der Effekt von der Orientierung des trDNA-Clusters abhängig und verstärkt sich mit wachsender Kopienzahl der trDNA-Einheiten. Während eines der trDNA-Cluster aus trDNA-Einheiten besteht, die bekanntermaßen eine Promotoraktivität aufweisen (Hsp70 Promotoren), war für die Cla-Elemente kein Einfluß auf die Expression eines benachbarten Gens bekannt. Damit wurde für eine trDNA-Familie aus Chironomus nachgewiesen, daß sie auf ein benachbartes Gen ähnlich wirkt wie zusätzliche Promotoren. Die experimentellen Befunde unterstützen ein Modell, demzufolge die Cla-Elemente in gleicher Weise wie tandem repetitive Promotoren auf ein benachbartes Gen expressionssteigernd wirken. Die TATA-Box ist für das Modell ein wichtiges Strukturelement, da diese in beiden expressionssteigernden DNA-Sequenzen der trDNA-Cluster vorkommt und ausschließlich in einer Orientierung wirkt. Das Modell besagt, daß durch die Verbindung einer offenen Chromatinstruktur mit korrekt orientierten Bindungsstellen für TBP der Aufbau von vollständigen Transkriptionskomplexen an den tandem repetitiven Promotoren initiiert wird. Einer Perlenschnur ähnlich wären die Transkriptionskomplexe direkt verfügbar, nachdem ein Transkriptionskomplex den Promotor zur Transkription verlassen hat (Abb. 32). Dies würde zu der beobachteten Steigerung der Expression des Reportergens sowohl durch die tandem repetitiven Hsp70 Promotoren als auch durch die Cla-Elemente führen.