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1.
Braz. arch. biol. technol ; 56(1): 61-68, Jan.-Feb. 2013. tab
Article in English | LILACS | ID: lil-670282

ABSTRACT

This study examined the effect of three sessions of cryotherapy (three sessions of 30 minutes applied each 2 h) and muscle compression in the regenerating skeletal muscle of the rats. The middle belly of tibialis anterior muscle was injured by a frozen iron bar and received one of the following intervention: injury + cryotherapy (treated with cryotherapy); injury + placebo (sand pack), and injury (I).The enzymatic activities of citrate synthase (CS) and lactate dehydrogenase (LDH) were measured in the presence of 1mM or 10mM pyruvate. The ANOVA and Tukey's test (p<0.05) were performed for the statistical analysis. In summary, the intermittent sessions of cryotherapy, associated to muscle compression and applied immediately after the primary muscle injury minimized the CS and LDH activity at 4h30 and 24h periods post-lesion, which could be related to the reduction in the secondary muscle injury inherent to cryotherapy treatment.

2.
Pesqui. vet. bras ; 31(11): 1031-1038, Nov. 2011. ilus, tab
Article in Portuguese | LILACS | ID: lil-608545

ABSTRACT

A VDAC é a proteína mais abundante na membrana mitocondrial externa. Exerce o controle da atividade desta organela através da regulação da troca de metabólitos e tem função crucial no mecanismo de apoptose. Em nosso caso, os estudos dos complexos protéicos, das interações entre a VDAC e outras proteínas presentes no interior do neurônio que auxiliam na manutenção das funções das organelas e da célula, fazem parte da chamada interactômica. O presente estudo determinou o interactoma do complexo protéico He-xoquinase-VDAC-ANT presente em cérebros murino, bovino e aviar. Nosso objetivo foi identificar se as expressões diferenciadas da VDAC1 e VDAC2 verificadas nos cérebros murino, aviar e bovino, estão associadas a diferenças nos interactomas dessas proteínas. Este estudo revelou que as espécies aviar e bovina apresentaram o maior número de complexos protéicos contendo VDACs (5) quando comparadas com os neurônios de rato (1), o que é indicativo de uma cinética diferencial de montagem ou desmontagem do complexo. Além disso, a VDAC mitocondrial neuronal aviar também interage com mais proteínas em relação à VDAC mitocondrial neuronal bovina, o que é resultado de uma composição de subunidades diferenciada. Tais resultados indicam diferenças significativas quanto ao metabolismo energético e apoptótico no cérebro aviar, bovino e murino, existindo interações diferenciais da VDAC no cérebro aviar.


The voltage dependent anion channel (VDAC) is the most abundant protein of outer mitochondrial membrane. VDAC controls metabolite exchange through this membrane and the apoptosis machinery. Interactomics is the study of protein complexes, their interactions and the consequences of these interactions. In our case we studied the interactome of the hexokinase-VDAC-ANT (adenine nucleotide transporter) complex in mitochondria of neuronal cells from rat, bovine and chicken brain. We wished to understand if the differential expression of VDAC1 and VDAC2 verified in these cells was linked to differences in the interactions between proteins in these complexes. Our results showed that avian and bovine neurons had more protein complexes (5) containing VDAC than rat cells (1), which indicates a differential kinetics of assembly or disassembly. Moreover, mitochondrial neuronal chicken VDAC interacts with more proteins in comparison with bovine neuronal VDAC, which is indicative of a differential subunit composition. These results supported evidences of differential apoptotic and energetic mechanisms between these brains.

3.
Braz. j. vet. res. anim. sci ; 48(1): 27-37, 2011. tab
Article in Portuguese | LILACS | ID: lil-591491

ABSTRACT

Em fêmeas bovinas, a liberação de prostaglandina F2α (PGF2α) é induzida in vivo pelo estradiol (E2). Acredita-se que o E2 estimule a síntese de proteínas essenciais na produção de PGF2α. Objetivou-se avaliar o efeito do E2 no incremento da concentração de proteínas totais e na modificação da composição proteica em explantes endometriais de fêmeas bovinas tratadas com E2 no 17º dia do ciclo estral. Novilhas cruzadas foram tratadas no 17º dia do ciclo estral, via intravenosa, com 0 mg (Grupo Controle; n = 6) ou 3 mg de E2 (Grupo E2; n = 6) e abatidas duas horas após. Explantes endometriais foram isolados, submetidos à extração de proteínas totais, quantificados e avaliados por Eletroforese Unidimensional em gel de poliacrilamida 10% SDS-PAGE. A concentração de proteínas totais não diferiu entre os grupos, 6296,10 + 439,90 µg/mL para o Grupo Controle e 8426,56 + 1156,00 µg/mL para o Grupo E2 (p = 0,1158). Não houve diferença significativa (p > 0,05) no perfil proteico dos explantes endometriais em géis corados com Coomasie Blue. Em géis corados com Nitrato de Prata verificou-se no Grupo E2 maior porcentagem relativa das bandas referentes ao peso molecular de 75 a 76 kDa (8,40% vs. 4,89%; no Grupo E2 e Controle respectivamente; p < 0,05) e 108 a 110 kDa (6,85% vs. 3,84%; no Grupo E2 e Controle respectivamente; p < 0,05). Observou-se no Grupo E2 menor porcentagem relativa da banda referente ao peso molecular de 90 kDa (5,78% vs. 9,83%; no Grupo E2 e Controle respectivamente; p < 0,05). Conclui-se que o E2 não incrementa a concentração de proteínas no endométrio, entretanto, altera a composição proteica nos explantes endometriais, indicando que o E2 altera a expressão de proteínas específicas.


In bovine females the release of prostaglandin F2α (PGF2α) is induced in vivo by estradiol (E2). It is believed that E2 stimulates the synthesis of essential proteins for the production of PGF2α. This study aimed to evaluate the effect of E2 in increasing the concentration of total protein and modifying the protein composition of endometrial explants from bovine females treated with E2 at the 17th day of estrous cycle. Crossbred heifers were treated at 17th day of estrous cycle intravenously with 0 mg (Control Group; n = 6) or 3 mg of E2 (E2 Group; n = 6) and killed two hours after. Endometrial explants were isolated, subjected to extraction of total protein, quantified and were analyzed by one-dimensional electrophoresis on polyacrylamide gel 10% SDS-PAGE. The concentration of total protein did not differ between groups, 6296.10 + 439.90 µg/mL for the Control Group and 8426.56 + 1156.00 µg/mL for E2 Group (p = 0.1158). There was no significant difference (p > 0.05) in the protein profile of endometrial explants in gels stained with Coomasie Blue. In gels stained with Silver Nitrate it was verified in E2 Group greater relative percentage of the bands referring to the molecular weight of 75 to 76 kDa (8.40% vs. 4.89% in E2 Group and Control respectively; p < 0.05) and 108 to 110 Kda (6.85% vs. 3.84% in E2 Group and Control respectively, p < 0.05). It was observed in E2 Group lower relative percentage of the band referring to the molecular weight of 90 kDa (5.78% vs. 9.83% in E2 Group and control respectively; p < 0.05). We concluded that the E2 does not increase the protein concentration in the endometrium, however, it modifies the proteinic composition in the endometrial explants, indicating that E2 alters the expression of specific proteins.


Subject(s)
Animals , Female , Cattle , Cattle , Dinoprost
4.
Genet. mol. biol ; 31(1,suppl): 337-342, 2008. ilus, graf
Article in English | LILACS | ID: lil-484608

ABSTRACT

Kinetic properties and thermal stabilities of Geophagus brasiliensis skeletal muscle unfractionated malate dehydrogenase (MDH, EC 1.1.1.37) and its isolated isoforms were analyzed to examine a possible sMDH-B* locus duplication in a fixation process influenced by genetic drift. Two optimal pHs were detected: 7.5 for AB1 unfractionated muscle phenotype and its B1 isoform, and 8.0 for AB1B2 unfractionated muscle phenotype, A and B2 isoforms. While G. brasiliensis A isoform could be characterized as thermostable, the duplicated B isoform cannot be assumed as thermolabile. Km values for isolated B2 isoforms were 1.6 times lower than for B1. A duplication event in progress best explains the electrophoretic six-band pattern detected in G. brasiliensis, which would be caused by genetic drift.


Subject(s)
Animals , Malate Dehydrogenase , Perciformes/genetics , Gene Duplication , Fishes/genetics
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