Department of Molecular Medicine and Surgery and Physiology and Pharmacology, Karolinska Institutet, S-171 77 Stockholm, Sweden.
J Biol Chem. 2011 Oct 7;286(40):34567-74. doi: 10.1074/jbc.M111.268292. Epub 2011 Aug 26.
The 5'-nucleotidase (NT5) family of enzyme dephosphorylates non-cyclic nucleoside monophosphates to produce nucleosides and inorganic phosphates. We hypothesized that gene silencing of NT5 enzymes to increase the intracellular availability of AMP would increase AMP-activated protein kinase (AMPK) activity and metabolism. We determined the role of cytosolic NT5 in metabolic responses linked to the development of insulin resistance in obesity and type 2 diabetes. Using siRNA to silence NT5C2 expression in cultured human myotubes, we observed a 2-fold increase in the AMP/ATP ratio, a 2.4-fold increase in AMPK phosphorylation (Thr(172)), and a 2.8-fold increase in acetyl-CoA carboxylase phosphorylation (Ser(79)) (p < 0.05). siRNA silencing of NT5C2 expression increased palmitate oxidation by 2-fold in the absence and by 8-fold in the presence of 5-aminoimidazole-4-carboxamide 1-β-d-ribofuranoside. This was paralleled by an increase in glucose transport and a decrease in glucose oxidation, incorporation into glycogen, and lactate release from NT5C2-depleted myotubes. Gene silencing of NT5C1A by shRNA injection and electroporation in mouse tibialis anterior muscle reduced protein content (60%; p < 0.05) and increased phosphorylation of AMPK (60%; p < 0.05) and acetyl-CoA carboxylase (50%; p < 0.05) and glucose uptake (20%; p < 0.05). Endogenous expression of NT5C enzymes inhibited basal lipid oxidation and glucose transport in skeletal muscle. Reduction of 5'-nucleotidase expression or activity may promote metabolic flexibility in type 2 diabetes.
5'-核苷酸酶(NT5)家族的酶将非循环核苷单磷酸去磷酸化生成核苷和无机磷酸。我们假设,通过沉默 NT5 酶基因以增加 AMP 的细胞内可用性,会增加 AMP 激活的蛋白激酶(AMPK)活性和代谢。我们确定了胞质 NT5 在肥胖和 2 型糖尿病中与胰岛素抵抗发展相关的代谢反应中的作用。我们使用 siRNA 沉默培养的人肌管中的 NT5C2 表达,观察到 AMP/ATP 比值增加了 2 倍,AMPK 磷酸化(Thr(172))增加了 2.4 倍,乙酰辅酶 A 羧化酶磷酸化(Ser(79))增加了 2.8 倍(p < 0.05)。NT5C2 表达的 siRNA 沉默使棕榈酸氧化在无 5-氨基咪唑-4-甲酰胺 1-β-d-核糖呋喃糖苷存在的情况下增加了 2 倍,在存在 5-氨基咪唑-4-甲酰胺 1-β-d-核糖呋喃糖苷的情况下增加了 8 倍。这与 NT5C2 耗尽的肌管中葡萄糖转运的增加和葡萄糖氧化、糖原合成以及乳酸释放的减少相平行。通过 shRNA 注射和电穿孔在小鼠胫骨前肌中沉默 NT5C1A 基因,减少了蛋白质含量(60%;p < 0.05),并增加了 AMPK(60%;p < 0.05)和乙酰辅酶 A 羧化酶(50%;p < 0.05)的磷酸化以及葡萄糖摄取(20%;p < 0.05)。NT5C 酶的内源性表达抑制了骨骼肌中的基础脂质氧化和葡萄糖转运。降低 5'-核苷酸酶的表达或活性可能会促进 2 型糖尿病的代谢灵活性。