Artículos de revistas
Taurine Supplementation Restores Glucose And Carbachol-induced Insulin Secretion In Islets From Low-protein Diet Rats: Involvement Of Ach-m3r, Synt 1 And Snap-25 Proteins
Registro en:
Journal Of Nutritional Biochemistry. , v. 23, n. 3, p. 306 - 312, 2012.
9552863
10.1016/j.jnutbio.2010.12.012
2-s2.0-84856733539
Autor
Batista T.M.
Ribeiro R.A.
Amaral A.G.
de Oliveira C.A.M.
Boschero A.C.
Carneiro E.M.
Institución
Resumen
Isolated islets from low-protein (LP) diet rats showed decreased insulin secretion in response to glucose and carbachol (Cch). Taurine (TAU) increases insulin secretion in rodent islets with a positive effect upon the cholinergic pathway. Here, we investigated the effect of TAU administration upon glucose tolerance and insulin release in rats fed on a normal protein diet (17%) without (NP) or with 2.5% of TAU in their drinking water (NPT), and LP diet fed rats (6%) without (LP) or with TAU (LPT). Glucose tolerance was found to be higher in LP, compared to NP rats. However, plasma glucose levels, during ipGTT, in LPT rats were similar to those of controls. Isolated islets from LP rats secreted less insulin in response to increasing glucose concentrations (2.8-22.2 mmol/L) and to 100 μmol/L Cch. This lower secretion was accompanied by a reduction in Cch-induced internal Ca 2+ mobilization. TAU supplementation prevents these alterations, as judged by the higher secretion induced by glucose or Cch in LPT islets. In addition, Ach-M3R, syntaxin 1 and synaptosomal associated protein of 25 kDa protein expressions in LP were lower than in NP islets. The expressions of these proteins in LPT were normalized. Finally, the sarcoendoplasmatic reticulum Ca 2+-ATPase 3 protein expression was higher in LPT and NPT, compared with controls. In conclusion, TAU supplementation to LP rats prevented alterations in glucose tolerance as well as in insulin secretion from isolated islets. The latter effect involves the normalization of the cholinergic pathway, associated with the preservation of exocytotic proteins. © 2012 Elsevier Inc. 23 3 306 312 Gilon, P., Henquin, J.C., Mechanisms and physiological significance of the cholinergic control of pancreatic beta-cell function (2001) Endocr Rev, 22, pp. 565-604 Tengholm, A., Gylfe, E., Oscillatory control of insulin secretion (2009) Mol Cell Endocrinol, 297, pp. 58-72 Coupland, R.E., The innervation of pancreas of the rat, cat and rabbit as revealed by the cholinesterase technique (1958) J Anat, 92, pp. 143-149 Van der Zee, E.A., Buwalda, B., Strubbe, J.H., Strosberg, A.D., Luiten, P.G., Immunocytochemical localization of muscarinic acetylcholine receptors in the rat endocrine pancreas (1992) Cell Tissue Res, 269, pp. 99-106 Thore, S., Dyachok, O., Gylfe, E., Tengholm, A., Feedback activation of phospholipase C via intracellular mobilization and store-operated influx of Ca2+ in insulin-secreting beta-cells (2005) J Cell Sci, 118, pp. 4463-4471 Thore, S., Wuttke, A., Tengholm, A., Rapid turnover of phosphatidylinositol-4,5-bisphosphate in insulin-secreting cells mediated by Ca2+ and the ATP-to-ADP ratio (2007) Diabetes, 56, pp. 818-826 Rafacho, A., Giozzet, V.A., Boschero, A.C., Abrantes, J.L., Reduced pancreatic beta-cell mass is associated with decreased FoxO1 and Erk1/2 protein phosphorylation in low-protein malnourished rats (2009) Braz J Med Biol Res, 42, pp. 935-941 Delghingaro-Augusto, V., Ferreira, F., Bordin, S., do Amaral, M.E., A low protein diet alters gene expression in rat pancreatic islets (2004) J Nutr, 134, pp. 321-327 Filiputti, E., Rafacho, A., Araujo, E.P., Silveira, L.R., Augmentation of insulin secretion by leucine supplementation in malnourished rats: possible involvement of the phosphatidylinositol 3-phosphate kinase/mammalian target protein of rapamycin pathway (2010) Metabolism, 59, pp. 635-644 Rasschaert, J., Reusens, B., Dahri, S., Sener, A., Impaired activity of rat pancreatic islet mitochondrial glycerophosphate dehydrogenase in protein malnutrition (1995) Endocrinology, 136, pp. 2631-2634 da Silva, P.M., Zoppi, C.C., Filiputti, E., Silveira, L.R., Preliminary report: leucine supplementation enhances glutamate dehydrogenase expression and restores glucose-induced insulin secretion in protein-malnourished rats (2010) Metabolism, 59, pp. 911-913 Latorraca, M.Q., Carneiro, E.M., Mello, M.A., Boschero, A.C., Reduced insulin secretion in response to nutrients in islets from malnourished young rats is associated with a diminished calcium uptake (1999) J Nutr Biochem, 10, pp. 37-43 Ferreira, F., Filiputti, E., Arantes, V.C., Stoppiglia, L.F., Decreased cholinergic stimulation of insulin secretion by islets from rats fed a low protein diet is associated with reduced protein kinase calpha expression (2003) J Nutr, 133, pp. 695-699 Ferreira, F., Barbosa, H.C., Stoppiglia, L.F., Delghingaro-Augusto, V., Decreased insulin secretion in islets from rats fed a low protein diet is associated with a reduced PKAalpha expression (2004) J Nutr, 134, pp. 63-67 Bustamante, J., Lobo, M.V., Alonso, F.J., Mukala, N.T., An osmotic-sensitive taurine pool is localized in rat pancreatic islet cells containing glucagon and somatostatin (2001) Am J Physiol Endocrinol Metab, 281, pp. E1275-E1285 Ribeiro, R.A., Vanzela, E.C., Oliveira, C.A.M., Bonfleur, M.L., Taurine supplementation: involvement of cholinergic/phospholipase C and PKA pathways in potentiation of insulin secretion and Ca2+ handling in mouse pancreatic islets (2010) Br J Nutr, 104, pp. 1148-1155 Cherif, H., Reusens, B., Dahri, S., Remacle, C., Hoet, J.J., Stimulatory effects of taurine on insulin secretion by fetal rat islets cultured in vitro (1996) J Endocrinol, 151, pp. 501-506 Cherif, H., Reusens, B., Ahn, M.T., Hoet, J.J., Remacle, C., Effects of taurine on the insulin secretion of rat fetal islets from dams fed a low-protein diet (1998) J Endocrinol, 159, pp. 341-348 Carneiro, E.M., Latorraca, M.Q., Araujo, E., Beltra, M., Taurine supplementation modulates glucose homeostasis and islet function (2009) J Nutr Biochem, 20, pp. 503-511 Ribeiro, R.A., Bonfleur, M.L., Amaral, A.G., Vanzela, E.C., Taurine supplementation enhances nutrient-induced insulin secretion in pancreatic mice islets (2009) Diabetes Metab Res Rev, 25, pp. 370-379 Nakaya, Y., Minami, A., Harada, N., Sakamoto, S., Taurine improves insulin sensitivity in the Otsuka Long-Evans Tokushima Fatty rat, a model of spontaneous Type 2 diabetes (2000) Am J Clin Nutr, 71, pp. 54-58 Nandhini, A.T., Thirunavukkarasu, V., Ravichandran, M.K., Anuradha, C.V., Effect of taurine on biomarkers of oxidative stress in tissues of fructose-fed insulin-resistant rats (2005) Singapore Med J, 46, pp. 82-87 Tsuboyama-Kasaoka, N., Shozawa, C., Sano, K., Kamei, Y., Taurine (2-aminoethanesulfonic acid) deficiency creates a vicious circle promoting obesity (2006) Endocrinology, 147, pp. 3276-3284 Xiao, C., Giacca, A., Lewis, G.F., Oral taurine but not N-acetylcysteine ameliorates NEFA-induced impairment in insulin sensitivity and beta cell function in obese and overweight, non-diabetic men (2008) Diabetologia, 51, pp. 139-146 Filiputti, E., Ferreira, F., Souza, K.L., Stoppiglia, L.F., Impaired insulin secretion and decreased expression of the nutritionally responsive ribosomal kinase protein S6K-1 in pancreatic islets from malnourished rats (2008) Life Sci, 82, pp. 542-548 Bradford, M.M., A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding (1976) Anal Biochem, 72, pp. 248-254 Reis, M.A., Carneiro, E.M., Mello, M.A., Boschero, A.C., Glucose-induced insulin secretion is impaired and insulin-induced phosphorylation of the insulin receptor and insulin receptor substrate-1 are increased in protein-deficient rats (1997) J Nutr, 127, pp. 403-410 Loizzo, A., Carta, S., Bennardini, F., Coinu, R., Neonatal taurine administration modifies metabolic programming in male mice (2007) Early Hum Dev, 83, pp. 693-696 Anuradha, C.V., Balakrishnan, S.D., Taurine attenuates hypertension and improves insulin sensitivity in the fructose-fed rat, an animal model of insulin resistance (1999) Can J Physiol Pharmacol, 77, pp. 749-754 Nandhini, A.T., Anuradha, C.V., Taurine modulates kallikrein activity and glucose metabolism in insulin resistant rats (2002) Amino Acids, 22, pp. 27-38 Maturo, J., Kulakowski, E.C., Taurine binding to the purified insulin receptor (1988) Biochem Pharmacol, 37, pp. 3755-3760 Amaral, A.G., Rafacho, A., Oliveira, C.A.M., Batista, T.M., Leucine supplementation augments insulin secretion in pancreatic islets of malnourished mice (2010) Pancreas, 39, pp. 847-855 Kalbe, L., Leunda, A., Sparre, T., Meulemans, C., Nutritional regulation of proteases involved in fetal rat insulin secretion and islet cell proliferation (2005) Br J Nutr, 93, pp. 309-316 Caulfield, M.P., Muscarinic receptors - characterization, coupling and function (1993) Pharmacol Ther, 58, pp. 319-379 Duttaroy, A., Zimliki, C.L., Gautam, D., Cui, Y., Muscarinic stimulation of pancreatic insulin and glucagon release is abolished in m3 muscarinic acetylcholine receptor-deficient mice (2004) Diabetes, 53, pp. 1714-1720 Gautam, D., Han, S.J., Hamdan, F.F., Jeon, J., A critical role for beta cell M3 muscarinic acetylcholine receptors in regulating insulin release and blood glucose homeostasis in vivo (2006) Cell Metab, 3, pp. 449-461 Gautam, D., Jeon, J., Li, J.H., Han, S.J., Metabolic roles of the M3 muscarinic acetylcholine receptor studied with M3 receptor mutant mice: a review (2008) J Recept Signal Transduct Res, 28, pp. 93-108 Latorraca, M.Q., Reis, M.A., Carneiro, E.M., Mello, M.A., Protein deficiency and nutritional recovery modulate insulin secretion and the early steps of insulin action in rats (1998) J Nutr, 128, pp. 1643-1649 Bedi, M., Babbar, R., Chakrabarty, A.S., Sachdev, H.P., Comparative study of autonomic nervous system activity in malnourished and normal children in India (1999) Ann Trop Paediatr, 19, pp. 185-189 Arredouani, A., Guiot, Y., Jonas, J.C., Liu, L.H., SERCA3 ablation does not impair insulin secretion but suggests distinct roles of different sarcoendoplasmic reticulum Ca(2+) pumps for Ca(2+) homeostasis in pancreatic beta-cells (2002) Diabetes, 51, pp. 3245-3253 Varadi, A., Molnar, E., Ostenson, C.G., Ashcroft, S.J., Isoforms of endoplasmic reticulum Ca(2+)-ATPase are differentially expressed in normal and diabetic islets of Langerhans (1996) Biochem J, 319 (PART 2), pp. 521-527 Satoh, H., Cardiac actions of taurine as a modulator of the ion channels (1998) Adv Exp Med Biol, 442, pp. 121-128 Palmi, M., Youmbi, G.T., Fusi, F., Sgaragli, G.P., Potentiation of mitochondrial Ca2+ sequestration by taurine (1999) Biochem Pharmacol, 58, pp. 1123-1131 Daniel, S., Noda, M., Straub, S.G., Sharp, G.W., Identification of the docked granule pool responsible for the first phase of glucose-stimulated insulin secretion (1999) Diabetes, 48, pp. 1686-1690 Nagamatsu, S., Nakamichi, Y., Yamamura, C., Matsushima, S., Decreased expression of t-SNARE, syntaxin 1, and SNAP-25 in pancreatic beta-cells is involved in impaired insulin secretion from diabetic GK rat islets: restoration of decreased t-SNARE proteins improves impaired insulin secretion (1999) Diabetes, 48, pp. 2367-2373 Vikman, J., Ma, X., Hockerman, G.H., Rorsman, P., Eliasson, L., Antibody inhibition of synaptosomal protein of 25 kDa (SNAP-25) and syntaxin 1 reduces rapid exocytosis in insulin-secreting cells (2006) J Mol Endocrinol, 36, pp. 503-515 Shu, Y., Liu, X., Yang, Y., Takahashi, M., Gillis, K.D., Phosphorylation of SNAP-25 at Ser187 mediates enhancement of exocytosis by a phorbol ester in INS-1 cells (2008) J Neurosci, 28, pp. 21-30 Wu, X.S., Wu, L.G., Protein kinase C increases the apparent affinity of the release machinery to Ca2+ by enhancing the release machinery downstream of the Ca2+ sensor (2001) J Neurosci, 21, pp. 7928-7936 Yang, Y., Craig, T.J., Chen, X., Ciufo, L.F., Phosphomimetic mutation of Ser-187 of SNAP-25 increases both syntaxin binding and highly Ca2+-sensitive exocytosis (2007) J Gen Physiol, 129, pp. 233-244