Effects of tacrolimus on the expression of protein phosphatase 2A and P-AKT in rat hepatocytes
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    Abstract:

    Objective To observe the effects of tacrolimus on blood glucose, insulin, expressions of protein phosphatase 2A and P-AKT in rats in order to explore the mechanism of hyperglycemic action of tacrolimus. Methods Sixty male SD rats (body weight 89.83±4.44 g) were randomly divided into tacrolimus group (n=40) and control group (n=20). The rats in the tacrolimus group were administrated with tacrolimus 4 mg/kg daily. The rats in the control group were given the same amount of normal drinking water daily. The rat body weight, fasting blood glucose concentration and blood concentration of tacrolimus were measured monthly. All rats were killed at 5 months after the tacrolimus administration. The serum insulin levels were detected by radioimmunoassay method. The expressions of PP2A and P-AKT in liver tissues were assessed by immunohistochemistry. Results After two months of administration, the blood glucose levels in the tacrolimus group were significantly higher than those in the control group. The HOMA-IR in tacrolimus group was significantly higher than that in the control group P < 0.05). ISI was significantly lower than that in the control group (P < 0.05). Immunohistochemical examination showed that the expression of PP2A in hepatocytes in the tacrolimus group was increased compared with the control group, while expression of P-AKT in hepatocytes of the tacrolimus group was decreased than that in the control group. Conclusions Tacrolimus can induce necrosis of islet cells, decrease of the amount of islet cells and insulin secretion, decease of sensitivity to insulin, and increase the resistance to insulin, therefore, leading to increase the blood glucose level in rats. The expression of PP2A in hepatocytes in the tacrolimus group is increased, while the expression of P-AKT is decreased. Interfering of insulin signal transduction pathways may be involved in the hyperglycemic effects of tacrolimus.

    Reference
    [1] Mazali FC, Lalli CA, Alves Filho G, et al. Posttransplant diabetes mellitus:incidence and risk factors[J]. Transplant Proc, 2008, 40(3):764-766.
    [2] Shah T, Kasravi A, Huang E, et al. Risk factors for development of new-onset diabetes mellitus after kidney transplantation[J]. Transplantation, 2006, 82(12):1673-1676.
    [3] Meier M, Nitschke M, Weidtmann B, et al. Slowing the progression of chronic allograft nephropathy by conversion from cyclosporine to tacrolimus:a randomized controlled trial[J]. Transplantation, 2006, 81(7):1035-1040.
    [4] Soleimanpour S, Crutchlow MF, Ferrari AM, et al. Calcineurin signaling regulates human islet β-cell survival[J]. J Biol Chem, 2010, 285(51):40050-40059.
    [5] Mistafa O, Aram G, Sandeep K, et al. Purinergic receptor-mediated rapid depletion of nuclear phosphorylated Akt depends on pleckstrin homology domain leucine-rich repeat phosphatase, calcineurin, protein phosphatase 2A, and PTEN phosphatases J]. Biol Chem,2010,285:27900-7910.
    [6] 滕雅芹, 牛玉坚, 徐春, 等. 他克莫司对大鼠血糖的影响及其机制的探讨[J]. 中国实验动物学报, 2012, 20(2):74-77.
    [7] Niu YJ, Shen ZY, Xu C, et al. Establishment of tacrolimus-induced diabetes in rat model and assessment of clinical treatments for post-transplant diabetes mellitus[J]. Clin Lab, 2013,59:869-873.
    [8] Hye-seung J, Hwang K. High-fat diet alters PP2A, TC10, and CIP4 expression in visceral adipose tissue of rats[J]. Obesity, 2008, 16(6):1226-1231.
    [9] Cohen PT, Philp A, Vázquez-Martin C. Protein phosphatase 4-from obscurity to vital functions[J]. FEBS Lett, 2005, 579(15):3278-3286.
    [10] Yan L, Guo S, Brault M, et al. The B55α-containing PP2A holoenzyme dephosphorylates FOXO1 in islet β-cells under oxidative stress[J]. J Biochem, 2012, 444(2):239-247.
    [11] Galbo T, Olsen GS, Quistorff B, et al. Free fatty acid-induced PP2A hyperactivity selectively impairs hepatic insulin action on glucose metabolism[J]. PLoS One, 2011, 6(11):e27424.
    [12] Ziegler E, Filer LJ (Editors). Present Knowledge in Nutrition 7th Edition[M]. International Life Science Institute Foundation, 1996, 11(2):282-282.
    [13] Cantley LC. The phosphoinositide 3-kinase pathway[J]. Science, 2002, 296(5573):1655-1657.
    [14] Lingohr MK, Buettner R, Rhodes CJ. Pancreatic beta-cell growth and survival-a role in obesity-linked type 2 diabetes[J]. Trends Mol Med, 2002, 8(8):375-384.
    [15] Dudek H, Datta SR, Franke TF, et al. Regulation of neuronal survival by the serine-threonine protein kinase AKT J]. Science, 1997, 275(5300):661-665.
    [16] Cusi K, Maezono K, Oaman A, et al. Insulin resistance differentially affects the PI3-kinase-and MAP kinase-mediated signaling in human muscle[J]. J Clin Invest, 2000,105(3):311-320.
    [17] Cho H, Mu J, Kim JK, et al. Insulin resistance and a diabetes mellitus like syndrome in mice lacking the protein kinase AKT2(PKB beta)[J]. Science, 2001, 292(5522):1728-1731.
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  • Received:January 06,2016
  • Online: July 01,2016
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