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1.
Diabetes ; 62(7): 2183-94, 2013 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-23423574

RESUMO

We measured the mRNA and protein expression of the key gluconeogenic enzymes in human liver biopsy specimens and found that only hepatic pyruvate carboxylase protein levels related strongly with glycemia. We assessed the role of pyruvate carboxylase in regulating glucose and lipid metabolism in rats through a loss-of-function approach using a specific antisense oligonucleotide (ASO) to decrease expression predominantly in liver and adipose tissue. Pyruvate carboxylase ASO reduced plasma glucose concentrations and the rate of endogenous glucose production in vivo. Interestingly, pyruvate carboxylase ASO also reduced adiposity, plasma lipid concentrations, and hepatic steatosis in high fat-fed rats and improved hepatic insulin sensitivity. Pyruvate carboxylase ASO had similar effects in Zucker Diabetic Fatty rats. Pyruvate carboxylase ASO did not alter de novo fatty acid synthesis, lipolysis, or hepatocyte fatty acid oxidation. In contrast, the lipid phenotype was attributed to a decrease in hepatic and adipose glycerol synthesis, which is important for fatty acid esterification when dietary fat is in excess. Tissue-specific inhibition of pyruvate carboxylase is a potential therapeutic approach for nonalcoholic fatty liver disease, hepatic insulin resistance, and type 2 diabetes.


Assuntos
Adiposidade/fisiologia , Gluconeogênese/fisiologia , Resistência à Insulina/fisiologia , Fígado/enzimologia , Piruvato Carboxilase/metabolismo , Tecido Adiposo/enzimologia , Adulto , Animais , Fígado Gorduroso/enzimologia , Feminino , Glicerol/metabolismo , Humanos , Masculino , Pessoa de Meia-Idade , Ratos , Ratos Sprague-Dawley , Ratos Zucker
2.
Endocrinology ; 154(1): 36-44, 2013 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-23161873

RESUMO

By 2030, nearly half of Americans will have nonalcoholic fatty liver disease. In part, this epidemic is fueled by the increasing consumption of caloric sweeteners coupled with an innate capacity to convert sugar into fat via hepatic de novo lipogenesis. In addition to serving as substrates, monosaccharides also increase the expression of key enzymes involved in de novo lipogenesis via the carbohydrate response element-binding protein (ChREBP). To determine whether ChREBP is a potential therapeutic target, we decreased hepatic expression of ChREBP with a specific antisense oligonucleotide (ASO) in male Sprague-Dawley rats fed either a high-fructose or high-fat diet. ChREBP ASO treatment decreased plasma triglyceride concentrations compared with control ASO treatment in both diet groups. The reduction was more pronounced in the fructose-fed group and attributed to decreased hepatic expression of ACC2, FAS, SCD1, and MTTP and a decrease in the rate of hepatic triglyceride secretion. This was associated with an increase in insulin-stimulated peripheral glucose uptake, as assessed by the hyperinsulinemic-euglycemic clamp. In contrast, ChREBP ASO did not alter hepatic lipid content or hepatic insulin sensitivity. Interestingly, fructose-fed rats treated with ChREBP ASO had increased plasma uric acid, alanine transaminase, and aspartate aminotransferase concentrations. This was associated with decreased expression of fructose aldolase and fructokinase, reminiscent of inherited disorders of fructose metabolism. In summary, these studies suggest that targeting ChREBP may prevent fructose-induced hypertriglyceridemia but without the improvements in hepatic steatosis and hepatic insulin responsiveness.


Assuntos
Fatores de Transcrição de Zíper de Leucina e Hélice-Alça-Hélix Básicos/metabolismo , Frutose/farmacologia , Acetil-CoA Carboxilase/genética , Acetil-CoA Carboxilase/metabolismo , Animais , Fatores de Transcrição de Zíper de Leucina e Hélice-Alça-Hélix Básicos/genética , Proteínas de Transporte/genética , Proteínas de Transporte/metabolismo , Fígado/efeitos dos fármacos , Fígado/metabolismo , Masculino , Oligonucleotídeos Antissenso/genética , Ratos , Ratos Sprague-Dawley , Estearoil-CoA Dessaturase/genética , Estearoil-CoA Dessaturase/metabolismo , Triglicerídeos/metabolismo , Receptor fas/genética , Receptor fas/metabolismo
3.
Hepatology ; 57(5): 1763-72, 2013 May.
Artigo em Inglês | MEDLINE | ID: mdl-23175050

RESUMO

UNLABELLED: Genome-wide array studies have associated the patatin-like phospholipase domain-containing 3 (PNPLA3) gene polymorphisms with hepatic steatosis. However, it is unclear whether PNPLA3 functions as a lipase or a lipogenic enzyme and whether PNPLA3 is involved in the pathogenesis of hepatic insulin resistance. To address these questions we treated high-fat-fed rats with specific antisense oligonucleotides to decrease hepatic and adipose pnpla3 expression. Reducing pnpla3 expression prevented hepatic steatosis, which could be attributed to decreased fatty acid esterification measured by the incorporation of [U-(13) C]-palmitate into hepatic triglyceride. While the precursors for phosphatidic acid (PA) (long-chain fatty acyl-CoAs and lysophosphatidic acid [LPA]) were not decreased, we did observe an ∼20% reduction in the hepatic PA content, ∼35% reduction in the PA/LPA ratio, and ∼60%-70% reduction in transacylation activity at the level of acyl-CoA:1-acylglycerol-sn-3-phosphate acyltransferase. These changes were associated with an ∼50% reduction in hepatic diacylglycerol (DAG) content, an ∼80% reduction in hepatic protein kinase Cε activation, and increased hepatic insulin sensitivity, as reflected by a 2-fold greater suppression of endogenous glucose production during the hyperinsulinemic-euglycemic clamp. Finally, in humans, hepatic PNPLA3 messenger RNA (mRNA) expression was strongly correlated with hepatic triglyceride and DAG content, supporting a potential lipogenic role of PNPLA3 in humans. CONCLUSION: PNPLA3 may function primarily in a lipogenic capacity and inhibition of PNPLA3 may be a novel therapeutic approach for treatment of nonalcoholic fatty liver disease-associated hepatic insulin resistance.


Assuntos
Dieta Hiperlipídica/efeitos adversos , Fígado Gorduroso/induzido quimicamente , Fígado Gorduroso/fisiopatologia , Resistência à Insulina/fisiologia , Lipídeos/efeitos adversos , Proteínas de Membrana/fisiologia , Fosfolipases A2/fisiologia , Animais , Biópsia , Diglicerídeos/metabolismo , Modelos Animais de Doenças , Ácidos Graxos/metabolismo , Humanos , Fígado/efeitos dos fármacos , Fígado/metabolismo , Masculino , Proteínas de Membrana/efeitos dos fármacos , Proteínas de Membrana/genética , Oligonucleotídeos Antissenso/farmacologia , Fosfolipases A2/efeitos dos fármacos , Fosfolipases A2/genética , RNA Mensageiro/metabolismo , Ratos , Ratos Sprague-Dawley , Triglicerídeos/metabolismo
4.
J Biol Chem ; 282(19): 14291-9, 2007 May 11.
Artigo em Inglês | MEDLINE | ID: mdl-17353188

RESUMO

To investigate the role of low molecular weight protein-tyrosine phosphatase (LMW-PTP) in glucose metabolism and insulin action, a specific antisense oligonucleotide (ASO) was used to reduce its expression both in vitro and in vivo. Reduction of LMW-PTP expression with the ASO in cultured mouse hepatocytes and in liver and fat tissues of diet-induced obese (DIO) mice and ob/ob mice led to increased phosphorylation and activity of key insulin signaling intermediates, including insulin receptor-beta subunit, phosphatidylinositol 3-kinase, and Akt in response to insulin stimulation. The ASO-treated DIO and ob/ob animals showed improved insulin sensitivity, which was reflected by a lowering of both plasma insulin and glucose levels and improved glucose and insulin tolerance in DIO mice. The treatment did not decrease body weight or increase metabolic rate. These data demonstrate that LMW-PTP is a key negative regulator of insulin action and a potential novel target for the treatment of insulin resistance and type 2 diabetes.


Assuntos
Hiperglicemia/metabolismo , Resistência à Insulina , Insulina/metabolismo , Isoenzimas/metabolismo , Obesidade/metabolismo , Oligonucleotídeos Antissenso/farmacologia , Proteínas Tirosina Fosfatases/metabolismo , Proteínas Proto-Oncogênicas/metabolismo , Animais , Glicemia/metabolismo , Western Blotting , Peso Corporal , Teste de Tolerância a Glucose , Hepatócitos/metabolismo , Imunoprecipitação , Proteínas Substratos do Receptor de Insulina , Isoenzimas/antagonistas & inibidores , Isoenzimas/genética , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Obesos , Fosfatidilinositol 3-Quinases/metabolismo , Fosfoproteínas/metabolismo , Fosforilação , Proteínas Tirosina Fosfatases/antagonistas & inibidores , Proteínas Tirosina Fosfatases/genética , Proteínas Proto-Oncogênicas/antagonistas & inibidores , Proteínas Proto-Oncogênicas/genética , Proteínas Proto-Oncogênicas c-akt/metabolismo , Receptor de Insulina/metabolismo , Transdução de Sinais
5.
Diabetes ; 54(6): 1846-53, 2005 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-15919808

RESUMO

Glucocorticoids (GCs) increase hepatic gluconeogenesis and play an important role in the regulation of hepatic glucose output. Whereas systemic GC inhibition can alleviate hyperglycemia in rodents and humans, it results in adrenal insufficiency and stimulation of the hypothalamic-pituitary-adrenal axis. In the present study, we used optimized antisense oligonucleotides (ASOs) to cause selective reduction of the glucocorticoid receptor (GCCR) in liver and white adipose tissue (WAT) and evaluated the resultant changes in glucose and lipid metabolism in several rodent models of diabetes. Treatment of ob/ob mice with GCCR ASOs for 4 weeks resulted in approximately 75 and approximately 40% reduction in GCCR mRNA expression in liver and WAT, respectively. This was accompanied by approximately 65% decrease in fed and approximately 30% decrease in fasted glucose levels, a 60% decrease in plasma insulin concentration, and approximately 20 and 35% decrease in plasma resistin and tumor necrosis factor-alpha levels, respectively. Furthermore, GCCR ASO reduced hepatic glucose production and inhibited hepatic gluconeogenesis in liver slices from basal and dexamethasone-treated animals. In db/db mice, a similar reduction in GCCR expression caused approximately 40% decrease in fed and fasted glucose levels and approximately 50% reduction in plasma triglycerides. In ZDF and high-fat diet-fed streptozotocin-treated (HFD-STZ) rats, GCCR ASO treatment caused approximately 60% reduction in GCCR expression in the liver and WAT, which was accompanied by a 40-70% decrease in fasted glucose levels and a robust reduction in plasma triglyceride, cholesterol, and free fatty acids. No change in circulating corticosterone levels was seen in any model after GCCR ASO treatment. To further demonstrate that GCCR ASO does not cause systemic GC antagonism, normal Sprague-Dawley rats were challenged with dexamethasone after treating with GCCR ASO. Dexamethasone increased the expression of GC-responsive genes such as PEPCK in the liver and decreased circulating lymphocytes. GCCR ASO treatment completely inhibited the increase in dexamethasone-induced PEPCK expression in the liver without causing any change in the dexamethasone-induced lymphopenia. These studies demonstrate that tissue-selective GCCR antagonism with ASOs may be a viable therapeutic strategy for the treatment of the metabolic syndrome.


Assuntos
Tecido Adiposo/metabolismo , Diabetes Mellitus Experimental/tratamento farmacológico , Fígado/metabolismo , Oligorribonucleotídeos Antissenso/farmacologia , Receptores de Glucocorticoides/metabolismo , Animais , Dexametasona/farmacologia , Diabetes Mellitus Experimental/sangue , Diabetes Mellitus Experimental/metabolismo , Expressão Gênica/efeitos dos fármacos , Glucocorticoides/metabolismo , Hiperglicemia/tratamento farmacológico , Hiperlipidemias/tratamento farmacológico , Linfopenia/induzido quimicamente , Linfopenia/fisiopatologia , Camundongos , Camundongos Obesos , Hipófise/efeitos dos fármacos , Hipófise/metabolismo , Pró-Opiomelanocortina/metabolismo , RNA Mensageiro/metabolismo , Ratos
6.
J Cell Biochem ; 92(6): 1234-45, 2004 Aug 15.
Artigo em Inglês | MEDLINE | ID: mdl-15258906

RESUMO

Protease inhibitor (PI) therapy for the treatment of patients infected with human immunodeficiency virus is frequently associated with insulin resistance and diabetic complications. These adverse effects of PI treatment result to a large extent from their inhibition of insulin-stimulated glucose transport. Insulin receptor (IR) activators that enhance the insulin signaling pathway could be effective in treating this resistance. However, there are no agents reported that reverse inhibition of insulin action by PIs. Herein, we describe the effects of TLK19781. This compound is a non-peptide, small molecule, activator of the IR. We now report in cultured cells, made insulin resistant HIV by PI treatment, that TLK19781 both increased the content of insulin-stimulated GLUT4 at the plasma membrane, and enhanced insulin-stimulated glucose transport. In addition, oral administration of TLK19781 with the PI, indinavir improved glucose tolerance in rats made insulin resistant. These results suggest, therefore, that IR activators such as TLK19781 may be useful in treating the insulin resistance associated with PIs.


Assuntos
Inibidores da Protease de HIV/farmacologia , Indinavir/farmacologia , Resistência à Insulina , Naftalenos/farmacologia , Receptor de Insulina/agonistas , Ácidos Sulfanílicos/farmacologia , Células 3T3-L1 , Adipócitos/metabolismo , Administração Oral , Animais , Transporte Biológico , Receptores ErbB/metabolismo , Glucose/metabolismo , Teste de Tolerância a Glucose , Transportador de Glucose Tipo 4 , Inibidores da Protease de HIV/administração & dosagem , Inibidores da Protease de HIV/efeitos adversos , Técnicas In Vitro , Indinavir/administração & dosagem , Indinavir/efeitos adversos , Camundongos , Proteínas de Transporte de Monossacarídeos/metabolismo , Proteínas Musculares/metabolismo , Naftalenos/administração & dosagem , Fosforilação , Ratos , Receptor de Insulina/metabolismo , Ácidos Sulfanílicos/administração & dosagem
7.
J Biol Chem ; 277(46): 43565-71, 2002 Nov 15.
Artigo em Inglês | MEDLINE | ID: mdl-12213804

RESUMO

In type 2 diabetes mellitus, impaired insulin signaling leads to hyperglycemia and other metabolic abnormalities. TLK19780, a non-peptide small molecule, is a new member of a novel class of anti-diabetic agents that function as activators of the insulin receptor (IR) beta-subunit tyrosine kinase. In HTC-IR cells, 20 microm TLK19780 enhanced maximal insulin-stimulated IR autophosphorylation 2-fold and increased insulin sensitivity 2-3-fold. In contrast, TLK19780 did not potentiate the action of insulin-like growth factor-1, indicating the selectivity of TLK19780 toward the IR. The predominant effect of TLK19780 was to increase the number of IR that underwent autophosphorylation. Kinetic studies indicated that TLK19780 acted very rapidly, with a maximal effect observed 2 min after addition to insulin-stimulated cells. In 3T3-L1 adipocytes, 5 microm TLK19780 enhanced insulin-stimulated glucose transport, increasing both the sensitivity and maximal responsiveness to insulin. These studies indicate that at low micromolar levels small IR activator molecules can enhance insulin action in various cultured cells and suggest that this effect is mediated by increasing the number of IR that are tyrosine-phosphorylated in response to insulin. These studies suggest that these types of molecules could be developed to treat type 2 diabetes and other clinical conditions associated with insulin resistance.


Assuntos
Receptor de Insulina/metabolismo , Receptor de Insulina/fisiologia , Células 3T3 , Adipócitos/metabolismo , Animais , Transporte Biológico , Western Blotting , Células CHO , Carcinoma Hepatocelular/metabolismo , Células Cultivadas , Cricetinae , Relação Dose-Resposta a Droga , Relação Dose-Resposta à Radiação , Ensaio de Imunoadsorção Enzimática , Glucose/metabolismo , Cinética , Camundongos , Modelos Químicos , Fosforilação , Ratos , Ácidos Sulfanílicos/farmacologia , Fatores de Tempo , Tirosina/metabolismo , Ureia/análogos & derivados , Ureia/farmacologia
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