Liu Y Q, Tornheim K, Leahy J L
Division of Endocrinology, Diabetes and Metabolism, University of Vermont, Burlington 05405-0068, USA.
Diabetes. 1999 Sep;48(9):1747-53. doi: 10.2337/diabetes.48.9.1747.
The glucose-fatty acid cycle of Randle entails two elements: decreased pyruvate dehydrogenase (PDH) activity, which inhibits glucose oxidation, and inhibition of phosphofructokinase (PFK) by a rise in citrate so that glucose-6-phosphate (G-6-P) levels increase, thereby inhibiting hexokinase activity and hence glucose utilization. Chronic exposure of islets to long-chain fatty acids (FA) is reported to lower PDH activity, but the effect on glucose oxidation and glucose-induced insulin secretion is uncertain. We investigated rat islets that were cultured for 4 days with 0.25 mmol/l oleate/5.5 mmol/l glucose. Glucose oxidation was doubled at 2.8 mmol/l glucose and unchanged at 27.7 mmol/l glucose in the FA-cultured islets despite a 35% decrease in assayed PDH activity. Pyruvate content was increased 60%, which may well compensate for the decreased PDH activity and maintain flux through the citric acid cycle. However, a greater diversion of pyruvate metabolism through the pyruvate-malate shuttle is suggested by unchanged pyruvate carboxylase Vmax and a fourfold higher release of malate from isolated mitochondria. The FA-cultured islets also showed increased basal glucose usage and insulin secretion together with a lowered level of G-6-P and 50% reductions in citrate synthase Vmax and the citrate content. Thus, the effects of chronic FA exposure on islet glucose metabolism differ from the glucose-fatty acid interactions reported in some other tissues.
兰德尔的葡萄糖 - 脂肪酸循环包含两个要素:丙酮酸脱氢酶(PDH)活性降低,这会抑制葡萄糖氧化;柠檬酸水平升高会抑制磷酸果糖激酶(PFK),从而使葡萄糖 - 6 - 磷酸(G - 6 - P)水平升高,进而抑制己糖激酶活性,从而抑制葡萄糖利用。据报道,胰岛长期暴露于长链脂肪酸(FA)会降低PDH活性,但对葡萄糖氧化和葡萄糖诱导的胰岛素分泌的影响尚不确定。我们研究了在含有0.25 mmol/l油酸/5.5 mmol/l葡萄糖的条件下培养4天的大鼠胰岛。在FA培养的胰岛中,葡萄糖氧化在2.8 mmol/l葡萄糖时增加了一倍,而在27.7 mmol/l葡萄糖时没有变化,尽管检测到的PDH活性降低了35%。丙酮酸含量增加了60%,这很可能补偿了PDH活性的降低,并维持了通过柠檬酸循环的通量。然而,丙酮酸羧化酶Vmax不变以及分离的线粒体中苹果酸释放量增加四倍,提示丙酮酸代谢通过丙酮酸 - 苹果酸穿梭有更大的转向。FA培养的胰岛还表现出基础葡萄糖利用和胰岛素分泌增加,同时G - 6 - P水平降低,柠檬酸合酶Vmax和柠檬酸含量降低50%。因此,长期FA暴露对胰岛葡萄糖代谢的影响与其他一些组织中报道的葡萄糖 - 脂肪酸相互作用不同。