48 resultados para Lipase EC 3.1.1.3

em Scielo Saúde Pública - SP


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Rapid eye movement (REM) sleep deprivation induces several behavioral changes. Among these, a decrease in yawning behavior produced by low doses of cholinergic agonists is observed which indicates a change in brain cholinergic neurotransmission after REM sleep deprivation. Acetylcholinesterase (Achase) controls acetylcholine (Ach) availability in the synaptic cleft. Therefore, altered Achase activity may lead to a change in Ach availability at the receptor level which, in turn, may result in modification of cholinergic neurotransmission. To determine if REM sleep deprivation would change the activity of Achase, male Wistar rats, 3 months old, weighing 250-300 g, were deprived of REM sleep for 96 h by the flower-pot technique (N = 12). Two additional groups, a home-cage control (N = 6) and a large platform control (N = 6), were also used. Achase was measured in the frontal cortex using two different methods to obtain the enzyme activity. One method consisted of the obtention of total (900 g supernatant), membrane-bound (100,000 g pellet) and soluble (100,000 g supernatant) Achase, and the other method consisted of the obtention of a fraction (40,000 g pellet) enriched in synaptic membrane-bound enzyme. In both preparations, REM sleep deprivation induced a significant decrease in rat frontal cortex Achase activity when compared to both home-cage and large platform controls. REM sleep deprivation induced a significant decrease of 16% in the membrane-bound Achase activity (nmol thiocholine formed min-1 mg protein-1) in the 100,000 g pellet enzyme preparation (home-cage group 152.1 ± 5.7, large platform group 152.7 ± 24.9 and REM sleep-deprived group 127.9 ± 13.8). There was no difference in the soluble enzyme activity. REM sleep deprivation also induced a significant decrease of 20% in the enriched synaptic membrane-bound Achase activity (home-cage group 126.4 ± 21.5, large platform group 127.8 ± 20.4, REM sleep-deprived group 102.8 ± 14.2). Our results suggest that REM sleep deprivation changes Ach availability at the level of its receptors through a decrease in Achase activity

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Cholinergic as well as monoaminergic neurotransmission seems to be involved in the etiology of affective disorders. Chronic treatment with imipramine, a classical antidepressant drug, induces adaptive changes in monoaminergic neurotransmission. In order to identify possible changes in cholinergic neurotransmission we measured total, membrane-bound and soluble acetylcholinesterase (Achase) activity in several rat brain regions after chronic imipramine treatment. Changes in Achase activity would indicate alterations in acetylcholine (Ach) availability to bind to its receptors in the synaptic cleft. Male rats were treated with imipramine (20 mg/kg, ip) for 21 days, once a day. Twenty-four hours after the last dose the rats were sacrificed and homogenates from several brain regions were prepared. Membrane-bound Achase activity (nmol thiocholine formed min-1 mg protein-1) after chronic imipramine treatment was significantly decreased in the hippocampus (control = 188.8 ± 19.4, imipramine = 154.4 ± 7.5, P<0.005) and striatum (control = 850.9 ± 59.6, imipramine = 742.5 ± 34.7, P<0.005). A small increase in total Achase activity was observed in the medulla oblongata and pons. No changes in enzyme activity were detected in the thalamus or total cerebral cortex. Since the levels of Achase seem to be enhanced through the interaction between Ach and its receptors, a decrease in Achase activity may indicate decreased Ach release by the nerve endings. Therefore, our data indicate that cholinergic neurotransmission is decreased after chronic imipramine treatment which is consistent with the idea of an interaction between monoaminergic and cholinergic neurotransmission in the antidepressant effect of imipramine

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Two intramolecularly quenched fluorogenic peptides containing o-aminobenzoyl (Abz) and ethylenediamine 2,4-dinitrophenyl (EDDnp) groups at amino- and carboxyl-terminal amino acid residues, Abz-DArg-Arg-Leu-EDDnp (Abz-DRRL-EDDnp) and Abz-DArg-Arg-Phe-EDDnp (Abz-DRRF-EDDnp), were selectively hydrolyzed by neutral endopeptidase (NEP, enkephalinase, neprilysin, EC 3.4.24.11) at the Arg-Leu and Arg-Phe bonds, respectively. The kinetic parameters for the NEP-catalyzed hydrolysis of Abz-DRRL-EDDnp and Abz-DRRF-EDDnp were Km = 2.8 µM, kcat = 5.3 min-1, kcat/Km = 2 min-1 µM-1 and Km = 5.0 µM, kcat = 7.0 min-1, kcat/Km = 1.4 min-1 µM-1, respectively. The high specificity of these substrates was demonstrated by their resistance to hydrolysis by metalloproteases [thermolysin (EC 3.4.24.2), angiotensin-converting enzyme (ACE; EC 3.4.24.15)], serineproteases [trypsin (EC 3.4.21.4), a-chymotrypsin (EC 3.4.21.1)] and proteases present in tissue homogenates from kidney, lung, brain and testis. The blocked amino- and carboxyl-terminal amino acids protected these substrates against the action of aminopeptidases, carboxypeptidases and ACE. Furthermore, DR amino acids ensured total protection of Abz-DRRL-EDDnp and Abz-DRRF-EDDnp against the action of thermolysin and trypsin. Leu-EDDnp and Phe-EDDnp were resistant to hydrolysis by a-chymotrypsin. The high specifity of these substrates suggests their use for specific NEP assays in crude enzyme preparations

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A new metalloendopeptidase was purified to apparent homogeneity from a homogenate of normal human brain using successive steps of chromatography on DEAE-Trisacryl, hydroxylapatite and Sephacryl S-200. The purified enzyme cleaved the Gly33-Leu34 bond of the 25-35 neurotoxic sequence of the Alzheimer ß-amyloid 1-40 peptide producing soluble fragments without neurotoxic effects. This enzyme activity was only inhibited by divalent cation chelators such as EDTA, EGTA and o-phenanthroline (1 mM) and was insensitive to phosphoramidon and captopril (1 µM concentration), specific inhibitors of neutral endopeptidase (EC 3.4.24.11) and angiotensin-converting enzyme (EC 3.4.15.1), respectively. The high affinity of this human brain endopeptidase for ß-amyloid 1-40 peptide (Km = 5 µM) suggests that it may play a physiological role in the degradation of this substance produced by normal cellular metabolism. It may also be hypothesized that the abnormal accumulation of the amyloid ß-protein in Alzheimer's disease may be initiated by a defect or an inactivation of this enzyme.

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O objetivo foi avaliar os padrões isoenzimáticos de Esterase (EST - EC 3.1.1.1), Fosfatase Ácida (ACP - EC 3.1.3.2), Malato Desidrogenase (MDH - EC 1.1.1.37), Álcool Deshidrogenase (ADH - EC 1.1.1.1) e Glutamato Oxalacetato Transaminase (GOT - EC 2.6.1.1), em sementes e plântulas de dois cultivares de cevada (MN 721 e Scarlett). As sementes foram fornecidas pela empresa Westermann, localizada no município de Piratini, Rio Grande do Sul, onde foi realizado o cultivo da cevada em 2007. Foram colhidas em três épocas com diferentes percentuais de umidade, secas a 13% de umidade e armazenadas em câmara fria. Os cinco sistemas isoenzimáticos analisados apresentaram variações na expressão, principalmente quando comparados entre sementes e plântulas. Concluiu-se que há variação no padrão de expressão das enzimas EST, ACP, MDH, ADH e GOT entre sementes e plântulas. A expressão das enzimas EST e GOT foi pouco e muito influenciada pela época de colheita, respectivamente.

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O interesse em consorciar plantas de cobertura no inverno tem aumentado nos últimos anos na região Sul do Brasil. Por ser uma prática agrícola recente, é importante avaliar a produção de matéria seca e o acúmulo de nutrientes de espécies consorciadas ou cultivadas isoladamente. Realizou-se um experimento no período de 1998 a 2000, na UFSM (RS), num Argissolo Vermelho distrófico arênico, consorciando-se aveia preta (Avena strigosa Schieb) + ervilhaca comum (Vicia sativa L.) e aveia preta + nabo forrageiro (Raphanus sativus L. var. oleiferus Metzg.) em diferentes quantidades de sementes. Os nove tratamentos foram: (1) 100 % aveia preta (AP); (2) 100 % ervilhaca comum (EC); (3) 100 % nabo forrageiro (NF); (4) 15 % AP + 85 % EC; (5) 30 % AP + 70 % EC; (6) 45 % AP + 55 % EC; (7) 15 % AP + 85 % NF; (8) 30 % AP + 70 % NF, e (9) pousio invernal (vegetação espontânea). Avaliou-se a produção de matéria seca (MS), bem como as concentrações de nitrogênio, fósforo, potássio e carbono do tecido vegetal. O cultivo consorciado de plantas de cobertura proporcionou produção de matéria seca estatisticamente semelhante àquela da aveia e do nabo em culturas isoladas e superior à da ervilhaca. O acúmulo de N na fitomassa dos tratamentos envolvendo consórcio de aveia + ervilhaca não diferiu daquele da ervilhaca isolada e, na média dos três anos, foi superior ao da aveia isolada em 32 kg ha-1 de N. Consorciando aveia + ervilhaca, houve um aumento médio de 67 % na relação C/N da fitomassa, em relação à ervilhaca. As plantas de cobertura proporcionaram maior produção de MS e foram mais eficientes no acúmulo de N, P e K do que a vegetação espontânea do pousio invernal. Os resultados indicaram que o consórcio de aveia + ervilhaca e de aveia + nabo no outono/inverno proporcionou maior produção de biomassa do que o cultivo isolado de cada espécie, pois combinou a elevada capacidade de produção de fitomassa de aveia e nabo com a fixação de N2 atmosférico da ervilhaca.

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A brotação da nogueira é dependente da mobilização de carboidratos do lenho para as gemas localizadas na porção superior dos ramos. O objetivo do trabalho foi contribuir para o entendimento do mecanismo de brotação acrótona da nogueira, em clima temperado, através da mensuração da atividade da ±-amilase (EC 3.2.1.1) e sacarose fosfato sintase (SPS - EC 2.4.1.14) relacionadas com a mobilização de carboidratos, durante o período de dormência. Para cada coleta, foram amostrados cinco ramos do ano, durante os meses de setembro a março. Em abril, próximo à retomada do crescimento ativo, foram feitas três amostragens. As partes apical, subapical e da base dos ramos foram separadas em casca, lenho (xilema) e gemas. O tempo médio de brotação (TMB) em condições controladas (25ºC), a umidade ponderal e a atividade das enzimas acima relacionadas foram determinadas. Os resultados obtidos reforçam a teoria de que o gradiente de brotação na nogueira se desenvolve durante a ecodormência e apresenta uma relação de dependência com a atividade da á-amilase; não está evidente a relação da atividade da SPS com a evolução do crescimento das gemas, durante a ecodormência.

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Este trabalho teve como objetivo avaliar as características agronômicas de seis genótipos de maracujazeiro-azedo cultivados no Distrito Federal. O experimento foi desenvolvido na área experimental da Fazenda Água Limpa da Universidade de Brasília, no DF. Utilizou-se o delineamento em blocos casualizados, com quatro repetições, seis tratamentos e sete plantas por parcela. Foram avaliados os genótipos: Rubi Gigante, EC-3-0, EC-L-7, RC-3, Redondão e Gigante Amarelo. Os parâmetros analisados, durante seis meses (17 colheitas), foram: produtividade total estimada, quantidade de frutos e coloração da casca. O genótipo Rubi Gigante teve a maior produtividade (16,69 t/ha-1), enquanto o RC-3 a menor (2,92 t/ha-1). Foram observados resultados semelhantes quanto às variáveis: produtividade total e quantidade de frutos de tamanho: primeira, 1B e 1A em relação aos seis genótipos. Não houve diferença significativa a 5%, pelo teste de Tukey, para: % de frutos de coloração amarela, rosa e roxa; massa fresca de frutos amarelos e rosas; quantidade de frutos rosas e roxos, e também quantidade de frutos de tamanho 2A e 3A em relação a todos os genótipos avaliados. Os genótipos Rubi Gigante, Redondão, EC-3-0 e EC-L-7 podem ser recomendados para o cultivo no DF e região geoeconômica, se confirmarem a superioridade quando avaliados por um maior período e em diferentes condições ambientais.

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Biocatalysts have innumerous advantages with respect to classical chemical processes, such as high specificity. Lipases (EC 3.1.1.3) are biocatalysts with large application in synthesis and hydrolysis reactions of triacylglycerols. The search for new sources of lipases has been intensified in the last years due to the high cost of microbial and animal lipases, wich restricts their use on an industrial scale. Lipases obtained from the latex of Carica papaya, Carica pentagona, Euphorbia characias, E. wulfenii, known for their proteolytic properties, are a good alternative source. In this review, we describe the well-known sources of vegetal lipases extracted from the latex and present some of their industrial applications.

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Cutinases (EC 3.1.1.74) are also known as cutin hidrolases. These enzymes share catalytic properties of lipases and esterases, presenting a unique feature of being active regardless the presence of an oil-water interface, making them interesting as biocatalysts in several industrial processes involving hydrolysis, esterification and trans-esterification reactions. They are also active in different reaction media, allowing their applications in different areas such as food industry, cosmetics, fine chemicals, pesticide and insecticide degradation, treatment and laundry of fiber textiles and polymer chemistry. The present review describes the characteristics, potential applications and new perspectives for these enzymes.

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A new metalloendopeptidase was purified to apparent homogeneity from a homogenate of normal human liver using successive steps of chromatography on DEAE-cellulose, hydroxyapatite and Sephacryl S-200. The purified enzyme hydrolyzed the Pro7-Phe8 bond of bradykinin and the Ser25-Tyr26 bond of atrial natriuretic peptide. No cleavage was produced in other peptide hormones such as vasopressin, oxytocin or Met- and Leu-enkephalin. This enzyme activity was inhibited by 1 mM divalent cation chelators such as EDTA, EGTA and o-phenanthroline and was insensitive to 1 µM phosphoramidon and captopril, specific inhibitors of neutral endopeptidase (EC 3.4.24.11) and angiotensin-converting enzyme (EC 3.4.15.1), respectively. With Mr 85 kDa, the enzyme exhibits optimal activity at pH 7.5. The high affinity of this endopeptidase for bradykinin (Km = 10 µM) and for atrial natriuretic peptide (Km = 5 µM) suggests that it may play a physiological role in the inactivation of these circulating hypotensive peptide hormones.

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Sertoli cells have been shown to be targets for extracellular purines such as ATP and adenosine. These purines evoke responses in Sertoli cells through two subtypes of purinoreceptors, P2Y2 and P A1. The signals to purinoreceptors are usually terminated by the action of ectonucleotidases. To demonstrate these enzymatic activities, we cultured rat Sertoli cells for four days and then used them for different assays. ATP, ADP and AMP hydrolysis was estimated by measuring the Pi released using a colorimetric method. Adenosine deaminase activity (EC 3.5.4.4) was determined by HPLC. The cells were not disrupted after 40 min of incubation and the enzymatic activities were considered to be ectocellularly localized. ATP and ADP hydrolysis was markedly increased by the addition of divalent cations to the reaction medium. A competition plot demonstrated that only one enzymatic site is responsible for the hydrolysis of ATP and ADP. This result indicates that the enzyme that acts on the degradation of tri- and diphosphate nucleosides on the surface of Sertoli cells is a true ATP diphosphohydrolase (EC 3.6.1.5) (specific activities of 113 ± 6 and 21 ± 2 nmol Pi mg-1 min-1 for ATP and ADP, respectively). The ecto-5'-nucleotidase (EC 3.1.3.5) and ectoadenosine deaminase activities (specific activities of 32 ± 2 nmol Pi mg-1 min-1 for AMP and 1.52 ± 0.13 nmol adenosine mg-1 min-1, respectively) were shown to be able to terminate the effects of purines and may be relevant for the physiological control of extracellular levels of nucleotides and nucleosides inside the seminiferous tubules.

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The maximal lactate steady state (MLSS) is the highest blood lactate concentration that can be identified as maintaining a steady state during a prolonged submaximal constant workload. The objective of the present study was to analyze the influence of the aerobic capacity on the validity of anaerobic threshold (AT) to estimate the exercise intensity at MLSS (MLSS intensity) during cycling. Ten untrained males (UC) and 9 male endurance cyclists (EC) matched for age, weight and height performed one incremental maximal load test to determine AT and two to four 30-min constant submaximal load tests on a mechanically braked cycle ergometer to determine MLSS and MLSS intensity. AT was determined as the intensity corresponding to 3.5 mM blood lactate. MLSS intensity was defined as the highest workload at which blood lactate concentration did not increase by more than 1 mM between minutes 10 and 30 of the constant workload. MLSS intensity (EC = 282.1 ± 23.8 W; UC = 180.2 ± 24.5 W) and AT (EC = 274.8 ± 24.9 W; UC = 187.2 ± 28.0 W) were significantly higher in trained group. However, there was no significant difference in MLSS between EC (5.0 ± 1.2 mM) and UC (4.9 ± 1.7 mM). The MLSS intensity and AT were not different and significantly correlated in both groups (EC: r = 0.77; UC: r = 0.81). We conclude that MLSS and the validity of AT to estimate MLSS intensity during cycling, analyzed in a cross-sectional design (trained x sedentary), do not depend on the aerobic capacity.

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Foi utilizado o método enzimático recomendado pela AOAC para determinação de beta-glucanas em cereais e alimentos que os contém. O método, utiliza liquenase (EC 3.2.1.73) e beta-glucosidase (EC 3.2.1.21) para hidrólise debeta-glucanas, é rápido, fácil de executar e específico para beta-glucanas com ligações beta(1->3) e beta(1->4). As sementes analisadas foram subministradas pelo Instituto Agronômico de Campinas (IAC) e os alimentos adquiridos nos supermercados. Aveia e cevada são os grãos com maior conteúdo de beta-glucanas. Na aveia os teores determinados foram 6,48 e 5,94%. Nos 10 cultivares de cevada os teores de beta-glucanas oscilaram entre 2,04 e 9,68%. Trigo e triticale apresentaram teores de b-glucanas menores que 1%. Nos produtos comerciais o teor de beta-glucanas estava relacionado ao tipo de cereal da fórmula. O produto comercial de maior conteúdo de beta-glucanas é o farelo de aveia. As beta-glucanas são ingredientes funcionais em potencial e a conveniência ou não de estimular sua incorporação em alimentos deve ser mais estudada. Quanto à composição centesimal dos grãos de cereais, o teor de proteínas foi o que apresentou a maior variação e isso se reflete na composição dos produtos comerciais.

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Neste trabalho propomos o aproveitamento dos resíduos de laranja gerados após remoção do suco como substrato para a obtenção de enzimas hidrolíticas e oxidativas envolvidas na degradação de materiais lignocelulósicos, tais como: lacase (EC 1.10.3.2), manganês peroxidase (EC 1.11.1.14), xilanase (EC 3.2.1.8) e endo-1,4 glucanase (EC 3.2.1.4), pelo basidiomiceto Pleurotus ostreatus cultivado em estado sólido. O fungo desenvolveu-se bem no resíduo, em diferentes umidades iniciais e sem a necessidade de qualquer suplementação. O meio à base de resíduo de laranja proporcionou a obtenção de elevadas atividades de enzimas com grande potencial de uso industrial, especialmente lacase (74,3 U.g -1 substrato após 15 dias de cultivo) e manganês peroxidase (6,8 U.g -1 substrato após 30 dias de cultivo).