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Effects of glucagon-like peptide-1 and exendins on kinase activity, glucose transport and lipid metabolism in adipocytes from normal and type-2 diabetic rats

机译:胰高血糖素样肽1和exendins对正常和2型糖尿病大鼠脂肪细胞激酶活性,葡萄糖转运和脂质代谢的影响

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摘要

Several kinases have been implicated in the metabolic response of human and rat myocytes to glucagon-like peptide-1 (GLP-1), exendin-4 (Ex-4) and exendin-9 (Ex-9). We have investigated, in isolated rat adipocytes, the changes caused by GLP-1, Ex-4 and Ex-9 compared with those provoked by insulin or glucagon, upon the activity of phosphatidylinositol-3-kinase (PI3K), protein kinase B (PKB), p42/44 MAP kinases (MAPKs) and p70s6 kinase (p70s6k), and the participation of these kinases and protein kinase C (PKC) in their action upon 2-deoxy-D-glucose uptake, lipolysis and lipogenesis. The study was conducted in normal rats, and extended to a streptozotocin-induced type-2 diabetic model (STZ-rats). The participation of distinct kinases was estimated by using potential kinase inhibitors, including wortmannin, PD98059, rapamycin, H-7 and RO31-8220. In normal rat adipocytes, GLP-1 and both exendins share with insulin an increasing action upon the activity of all kinases studied (except PKB), PI3K, p44 and p42 MAPKs and possibly PKC, all being required for their stimulating effect upon glucose uptake. Ex-4 and Ex-9, like GLP-1 and insulin, have lipogenic action, while only Ex-4 shares with GLP-1 its lipolytic effect which is antagonized by Ex-9. MAP kinases and PKC seem to have an essential role in the GLP-1 and Ex-4 lipolytic action, as does PI3K in that of Ex-4. An increase in PI3K and MAPKs activity for the lipogenic effect of Ex-4, Ex-9 and GLP-1 are required, and in the case of Ex-4 and Ex-9, a stimulation of p70s6k activity is also needed. In cells from STZ-rats the magnitude of the above parameters was, in general, comparable to that in normal animals, with some exceptions: basal PI3K activity and lipogenesis were higher, GLP-1, Ex-4 and Ex-9 failed to modify basal lipogenesis but increased PKB activity, insulin failed to affect the activity of MAPKs and the insulin-induced glucose uptake was impaired. The impaired insulin effects upon some of the variables in the STZ-rat, distinct from those of GLP-1 and exendins, adds knowledge to the mechanism of the beneficial action of GLP-1 and Ex-4 in diabetic states. © 2005 Society for Endocrinology.
机译:几种激酶与人和大鼠肌细胞对胰高血糖素样肽1(GLP-1),exendin-4(Ex-4)和exendin-9(Ex-9)的代谢反应有关。我们已经研究了在分离的大鼠脂肪细胞中,与由胰岛素或胰高血糖素引起的变化相比,GLP-1,Ex-4和Ex-9在磷脂酰肌醇3-激酶(PI3K),蛋白激酶B( PKB),p42 / 44 MAP激酶(MAPKs)和p70s6激酶(p70s6k),以及这些激酶和蛋白激酶C(PKC)参与其对2-脱氧-D-葡萄糖摄取,脂解和脂肪形成的作用。该研究在正常大鼠中进行,并扩展到链脲佐菌素诱导的2型糖尿病模型(STZ-大鼠)。通过使用潜在的激酶抑制剂(包括渥曼青霉素,PD98059,雷帕霉素,H-7和RO31-8220)评估了不同激酶的参与。在正常的大鼠脂肪细胞中,GLP-1和两种exendins与胰岛素共享对所有研究的激酶(PKB除外),PI3K,p44和p42 MAPKs以及可能的PKC的活性都有增加的作用,所有这些都是它们对葡萄糖摄取的刺激作用所必需的。 Ex-4和Ex-9与GLP-1和胰岛素一样,具有脂肪生成作用,而只有Ex-4与GLP-1共享其脂解作用,而Ex-9则与之抗衡。 MAP激酶和PKC似乎在GLP-1和Ex-4的脂解作用中起着必不可少的作用,PI3K在Ex-4中也是如此。对于Ex-4,Ex-9和GLP-1的脂肪生成作用,需要增加PI3K和MAPKs的活性,在Ex-4和Ex-9的情况下,还需要刺激p70s6k的活性。在来自STZ大鼠的细胞中,上述参数的大小通常与正常动物相当,但有一些例外:基础PI3K活性和脂肪生成较高,GLP-1,Ex-4和Ex-9不能修饰基底脂肪形成,但PKB活性增加,胰岛素未能影响MAPKs的活性,胰岛素诱导的葡萄糖摄取受到损害。胰岛素受损对STZ-rat中某些变量的影响不同于GLP-1和exendins,这为糖尿病状态下GLP-1和Ex-4的有益作用机理增添了知识。 ©2005内分泌学会。

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