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Dive into the research topics where Danúbia Frasson is active.

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Featured researches published by Danúbia Frasson.


Diabetes | 2009

Adipose Overexpression of Desnutrin Promotes Fatty Acid Use and Attenuates Diet-Induced Obesity

Maryam Ahmadian; Robin E. Duncan; Krista A. Varady; Danúbia Frasson; Marc K. Hellerstein; Andreas L. Birkenfeld; Varman T. Samuel; Gerald I. Shulman; Yuhui Wang; Chulho Kang; Hei Sook Sul

OBJECTIVE To investigate the role of desnutrin in adipose tissue triacylglycerol (TAG) and fatty acid metabolism. RESEARCH DESIGN AND METHODS We generated transgenic mice overexpressing desnutrin (also called adipose triglyceride lipase [ATGL]) in adipocytes (aP2-desnutrin) and also performed adenoviral-mediated overexpression of desnutrin in 3T3-L1CARΔ1 adipocytes. RESULTS aP2-desnutrin mice were leaner with decreased adipose tissue TAG content and smaller adipocyte size. Overexpression of desnutrin increased lipolysis but did not result in increased serum nonesterified fatty acid levels or ectopic TAG storage. We found increased cycling between diacylglycerol (DAG) and TAG and increased fatty acid oxidation in adipocytes from these mice, as well as improved insulin sensitivity. CONCLUSIONS We show that by increasing lipolysis, desnutrin overexpression causes reduced adipocyte TAG content and attenuation of diet-induced obesity. Desnutrin-mediated lipolysis promotes fatty acid oxidation and re-esterification within adipocytes.


Biochimie | 2011

Several agents and pathways regulate lipolysis in adipocytes.

Valéria Ernestânia Chaves; Danúbia Frasson; Nair Honda Kawashita

Adipose tissue is the only tissue capable of hydrolyzing its stores of triacylglycerol (TAG) and of mobilizing fatty acids and glycerol in the bloodstream so that they can be used by other tissues. The full hydrolysis of TAG depends on the activity of three enzymes, adipose triglyceride lipase (ATGL), hormone-sensitive lipase (HSL) and monoacylglycerol lipase, each of which possesses a distinct regulatory mechanism. Although more is known about HSL than about the other two enzymes, it has recently been shown that HLS and ATGL can be activated simultaneously, such that the mechanism that enables HSL to access the surface of lipid droplets also permits the stimulation of ATGL. The classical pathway of lipolysis activation in adipocytes is cAMP-dependent. The production of cAMP is modulated by G-protein-coupled receptors of the Gs/Gi family and cAMP degradation is regulated by phosphodiesterase. However, other pathways that activate TAG hydrolysis are currently under investigation. Lipolysis can also be started by G-protein-coupled receptors of the Gq family, through molecular mechanisms that involve phospholipase C, calmodulin and protein kinase C. There is also evidence that increased lipolytic activity in adipocytes occurs after stimulation of the mitogen-activated protein kinase pathway or after cGMP accumulation and activation of protein kinase G. Several agents contribute to the control of lipolysis in adipocytes by modulating the activity of HSL and ATGL. In this review, we have summarized the signalling pathways activated by several agents involved in the regulation of TAG hydrolysis in adipocytes.


Biochimica et Biophysica Acta | 2013

Hydrogen peroxide production regulates the mitochondrial function in insulin resistant muscle cells: Effect of catalase overexpression

Marina R. Barbosa; Igor H. Sampaio; Bruno G. Teodoro; Thais A. Sousa; Claudio C. Zoppi; André L. Queiroz; Madla A. Passos; Luciane C. Alberici; Felipe R. Teixeira; Adriana O. Manfiolli; Thiago M. Batista; Ana Paula Gameiro Cappelli; Rosana I. Reis; Danúbia Frasson; Isis C. Kettelhut; Lucas T. Parreiras-e-Silva; Claudio M. Costa-Neto; Everardo M. Carneiro; Rui Curi; Leonardo R. Silveira

The mitochondrial redox state plays a central role in the link between mitochondrial overloading and insulin resistance. However, the mechanism by which the ROS induce insulin resistance in skeletal muscle cells is not completely understood. We examined the association between mitochondrial function and H2O2 production in insulin resistant cells. Our hypothesis is that the low mitochondrial oxygen consumption leads to elevated ROS production by a mechanism associated with reduced PGC1α transcription and low content of phosphorylated CREB. The cells were transfected with either the encoded sequence for catalase overexpression or the specific siRNA for catalase inhibition. After transfection, myotubes were incubated with palmitic acid (500μM) and the insulin response, as well as mitochondrial function and fatty acid metabolism, was determined. The low mitochondrial oxygen consumption led to elevated ROS production by a mechanism associated with β-oxidation of fatty acids. Rotenone was observed to reduce the ratio of ROS production. The elevated H2O2 production markedly decreased the PGC1α transcription, an effect that was accompanied by a reduced phosphorylation of Akt and CREB. The catalase transfection prevented the reduction in the phosphorylated level of Akt and upregulated the levels of phosphorylated CREB. The mitochondrial function was elevated and H2O2 production reduced, thus increasing the insulin sensitivity. The catalase overexpression improved mitochondrial respiration protecting the cells from fatty acid-induced, insulin resistance. This effect indicates that control of hydrogen peroxide production regulates the mitochondrial respiration preventing the insulin resistance in skeletal muscle cells by a mechanism associated with CREB phosphorylation and β-oxidation of fatty acids.


Metabolism-clinical and Experimental | 2012

The sympathetic nervous system regulates the three glycerol-3P generation pathways in white adipose tissue of fasted, diabetic and high-protein diet-fed rats

Danúbia Frasson; Renata Polessi Boschini; Valéria Ernestânia Chaves; Maria Emilia Soares Martins Santos; Sílvia de Paula Gomes; Rafael Valentim; Maria Antonieta Rissato Garófalo; Luiz C. C. Navegantes; Renato H. Migliorini; Isis C. Kettelhut

The aim of the present study was to investigate the participation of the sympathetic nervous system (SNS) in the control of glycerol-3-P (G3P) generating pathways in white adipose tissue (WAT) of rats in three situations in which the plasma insulin levels are low. WAT from 48 h fasted animals, 3 day-streptozotocin diabetic animals and high-protein, carbohydrate-free (HP) diet-fed rats was surgical denervated and the G3P generation pathways were evaluated. Food deprivation, diabetes and the HP diet provoke a marked decrease in the rate of glucose uptake and glycerokinase (GyK) activity, but a significant increase in the glyceroneogenesis, estimated by the phosphoenolpyruvate carboxykinase (PEPCK) activity and the incorporation of 1-[(14)C]-pyruvate into glycerol-TAG. The denervation provokes a reduction (~70%) in the NE content of WAT in fasted, diabetic and HP diet-fed rats. The denervation induced an increase in WAT glucose uptake of fed, fasted, diabetic and HP diet-fed rats (40%, 60%, 3.2 fold and 35%, respectively). TAG-glycerol synthesis from pyruvate was reduced by denervation in adipocytes of fed (58%) and fasted (36%), saline-treated (58%) and diabetic (23%), and HP diet-fed rats (11%). In these same groups the denervation reduced the PEPCK mRNA expression (75%-95%) and the PEPCK activity (35%-60%). The denervation caused a ~35% decrease in GyK activity of control rats and a further ~35% reduction in the already low enzyme activity of fasted, diabetic and HP diet-fed rats. These data suggest that the SNS plays an important role in modulating G3P generating pathways in WAT, in situations where insulin levels are low.


Endocrine | 2017

Differential regulation of glyceroneogenesis by glucocorticoids in epididymal and retroperitoneal white adipose tissue from rats

Rafael Rossi-Valentim; Samyra Lopes Buzelle; Silvia Paula-Gomes; Neusa Maria Zanon; Maria Antonieta Rissato Garófalo; Danúbia Frasson; Luiz C. C. Navegantes; Valéria Ernestânia Chaves; Isis C. Kettelhut

PurposeInvestigate the glycerol-3-phosphate generation pathways in epididymal (EPI) and retroperitoneal (RETRO) adipose tissues from dexamethasone-treated rats.MethodsRats were treated with dexamethasone for 7 days. Glycerol-3-phosphate generation pathways via glycolysis, glyceroneogenesis and direct phosphorylation of glycerol were evaluated, respectively, by 2-deoxyglucose uptake, phosphoenolpyruvate carboxykinase (PEPCK-C) activity and pyruvate incorporation into triacylglycerol (TAG)-glycerol, and glycerokinase activity and glycerol incorporation into TAG-glycerol.ResultsDexamethasone treatment markedly decreased the body weight, but increased the weight and lipid content of EPI and RETRO and plasma insulin, glucose, non-esterified fatty acid and TAG levels. EPI and RETRO from dexamethasone-treated rats showed increased rates of de novo fatty acid synthesis (80 and 100%) and basal lipolysis (20%). In EPI, dexamethasone decreased the 2-deoxyglucose uptake (50%), as well as glyceroneogenesis, evidenced by a decrease of PEPCK-C activity (39%) and TAG-glycerol synthesis from pyruvate (66%), but increased the glycerokinase activity (50%) and TAG-glycerol synthesis from glycerol (72%) in this tissue. In spite of a similar reduction in 2-deoxyglucose uptake in RETRO, dexamethasone treatment increased glyceroneogenesis, evidenced by PEPCK activity (96%), and TAG-glycerol synthesis from pyruvate (110%), accompanied by a decrease in glycerokinase activity (50%) and TAG-glycerol synthesis from glycerol (50%). Dexamethasone effects on RETRO were accompanied by a decrease in p-Akt content and by lower insulin effects on the rates of glycerol release in the presence of isoproterenol and on the rates of glucose uptake in isolated adipocytes.ConclusionOur data demonstrated differential regulation of glyceroneogenesis and direct phosphorylation of glycerol by glucocorticoids in EPI and RETRO from rats.


Journal of Nutrition | 2006

Glyceroneogenesis Is Reduced and Glucose Uptake Is Increased in Adipose Tissue from Cafeteria Diet–Fed Rats Independently of Tissue Sympathetic Innervation

Valéria Ernestânia Chaves; Danúbia Frasson; Maria Emília Soares Martins-Santos; Renata Polessi Boschini; Maria Antonieta Rissato Garófalo; William T. L. Festuccia; Isis C. Kettelhut; Renato H. Migliorini


Lipids | 2012

A low-protein, high-carbohydrate diet increases fatty acid uptake and reduces norepinephrine-induced lipolysis in rat retroperitoneal white adipose tissue.

Maísa Pavani dos Santos; Suélem Aparecida de França; José Tiago F. dos Santos; Samyra L. Buzelle; Gisele L. Bertolini; Maria Antonieta Rissato Garófalo; Isis do Kettelhut; Danúbia Frasson; Valéria Ernestânia Chaves; Nair Honda Kawashita


American Journal of Physiology-endocrinology and Metabolism | 2007

Glyceroneogenesis and the supply of glycerol-3-phosphate for glyceride-glycerol synthesis in liver slices of fasted and diabetic rats

Maria Emília Soares Martins-Santos; Valéria Ernestânia Chaves; Danúbia Frasson; Renata Polessi Boschini; Maria Antonieta Rissato Garófalo; Isis C. Kettelhut; Renato H. Migliorini


Canadian Journal of Physiology and Pharmacology | 2008

Fatty acid synthesis and generation of glycerol-3- phosphate in brown adipose tissue from rats fed a cafeteria diet

Valéria Ernestânia Chaves; Danúbia Frasson; Maria Emília Soares Martins-Santos; Luiz C. C. Navegantes; Victor Diaz Galban; Maria Antonieta Rissato Garófalo; I. C. Kettelhut; Renato H. Migliorini


Lipids | 2012

Increased Glyceride–Glycerol Synthesis in Liver and Brown Adipose Tissue of Rat: In-Vivo Contribution of Glycolysis and Glyceroneogenesis

Valéria Ernestânia Chaves; Danúbia Frasson; Maria Antonieta Rissato Garófalo; Luiz C. C. Navegantes; Renato H. Migliorini; Isis C. Kettelhut

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Nair Honda Kawashita

Universidade Federal de Mato Grosso

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Maísa Pavani dos Santos

Universidade Federal de Mato Grosso

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