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首页> 外文期刊>Cell death & disease. >Nitric oxide stress and activation of AMP-activated protein kinase impair β-cell sarcoendoplasmic reticulum calcium ATPase 2b activity and protein stability
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Nitric oxide stress and activation of AMP-activated protein kinase impair β-cell sarcoendoplasmic reticulum calcium ATPase 2b activity and protein stability

机译:一氧化氮胁迫和AMP激活的蛋白激酶的激活损害β-细胞的肌质网钙ATPase 2b的活性和蛋白稳定性

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摘要

The sarcoendoplasmic reticulum Ca2+ ATPase 2b (SERCA2b) pump maintains a steep Ca2+ concentration gradient between the cytosol and ER lumen in the pancreatic β- cell, and the integrity of this gradient has a central role in regulated insulin production and secretion, maintenance of ER function and β -cell survival. We have previously demonstrated loss of β- cell SERCA2b expression under diabetic conditions. To define the mechanisms underlying this, INS-1 cells and rat islets were treated with the proinflammatory cytokine interleukin-1 β (IL-1 β ) combined with or without cycloheximide or actinomycin D. IL-1 β treatment led to increased inducible nitric oxide synthase ( iNOS ) gene and protein expression, which occurred concurrently with the activation of AMP-activated protein kinase (AMPK). IL-1 β led to decreased SERCA2b mRNA and protein expression, whereas time-course experiments revealed a reduction in protein half-life with no change in mRNA stability. Moreover, SERCA2b protein but not mRNA levels were rescued by treatment with the NOS inhibitor l -NMMA ( NG -monomethyl l -arginine), whereas the NO donor SNAP ( S -nitroso- N -acetyl- d , l -penicillamine) and the AMPK activator AICAR (5-aminoimidazole-4-carboxamide ribonucleotide) recapitulated the effects of IL-1 β on SERCA2b protein stability. Similarly, IL-1 β -induced reductions in SERCA2b expression were rescued by pharmacological inhibition of AMPK with compound C or by transduction of a dominant-negative form of AMPK, whereas β- cell death was prevented in parallel. Finally, to determine a functional relationship between NO and AMPK signaling and SERCA2b activity, fura-2/AM (fura-2-acetoxymethylester) Ca2+ imaging experiments were performed in INS-1 cells. Consistent with observed changes in SERCA2b expression, IL-1 β , SNAP and AICAR increased cytosolic Ca2+ and decreased ER Ca2+ levels, suggesting congruent modulation of SERCA activity under these conditions. In aggregate, these results show that SERCA2b protein stability is decreased under inflammatory conditions through NO- and AMPK-dependent pathways and provide novel insight into pathways leading to altered β- cell calcium homeostasis and reduced β- cell survival in diabetes.
机译:肌内质网Ca 2 + ATPase 2b(SERCA2b)泵在胰腺β-细胞的细胞质和内质网腔之间维持陡峭的Ca 2 + 浓度梯度该梯度在调节胰岛素产生和分泌,维持ER功能和β细胞存活中起着中心作用。我们先前已经证明了在糖尿病条件下β细胞SERCA2b表达的丧失。为了确定其基础机制,将INS-1细胞和大鼠胰岛用促炎细胞因子白介素1β(IL-1β)联合或不联合环己酰亚胺或放线菌素D处理。IL-1β治疗导致诱导型一氧化氮增加合成酶(iNOS)基因和蛋白质表达,与AMP激活的蛋白激酶(AMPK)激活同时发生。 IL-1β导致SERCA2b mRNA和蛋白表达降低,而时程实验显示蛋白半衰期降低,而mRNA稳定性不变。此外,通过使用NOS抑制剂1-NMMA(NG-单甲基-1-精氨酸)处理,可以恢复SERCA2b蛋白,但不能恢复mRNA水平,而使用NO供体SNAP(S-亚硝基-N-乙酰基-d,1-青霉胺)和AMPK激活剂AICAR(5-氨基咪唑-4-羧酰胺核糖核苷酸)概括了IL-1β对SERCA2b蛋白质稳定性的影响。类似地,通过用化合物C对AMPK进行药理学抑制或通过转导AMPK的显性阴性形式来挽救IL-1β诱导的SERCA2b表达减少,而同时防止了β细胞死亡。最后,为了确定NO和AMPK信号与SERCA2b活性之间的功能关系,在INS-1细胞中进行了fura-2 / AM(fura-2-乙酰氧基甲基酯)Ca 2 + 成像实验。与观察到的SERCA2b表达变化一致,IL-1β,SNAP和AICAR增加了胞浆Ca 2 + 并降低了ER Ca 2 + 的水平,表明在此条件下SERCA活性的一致调节这些条件。总体而言,这些结果表明,在炎症条件下,SERCA2b蛋白的稳定性会通过NO和AMPK依赖性途径降低,并为导致糖尿病患者β细胞钙稳态改变和β细胞存活率降低的途径提供了新颖的见解。

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