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乳酸诱导应激下培养星形胶质细胞中控制蛋白质合成的起始因子的调控

Regulation of initiation factors controlling protein synthesis on cultured astrocytes in lactic acid-induced stress.

作者信息

Vantelon Nadine, Rioux-Bilan Agnès, Ingrand Sabrina, Pain Stéphanie, Page Guylène, Guillard Olivier, Barrier Laurence, Piriou Alain, Fauconneau Bernard

机构信息

Research Group on Brain Aging, University of Poitiers, Pôle de Biologie Santé, EA 3808, 40 avenue du Recteur Pineau, and Department of Clinical Pharmacology, University Hospital, Poitiers, France.

出版信息

Eur J Neurosci. 2007 Aug;26(3):689-700. doi: 10.1111/j.1460-9568.2007.05698.x.

Abstract

The goals of this work were first to assess whether the lactic acidosis observed in vivo in ischemia may by itself explain the inhibition of protein synthesis described in the literature and second to study the factors controlling the initiation of protein synthesis under lactic acid stress. Primary rat astrocyte cultures exposed to pH 5.25 underwent cell death and a strong inhibition of protein synthesis assessed by [3H]methionine incorporation, which was solely due to acidity of the extracellular medium and was not related to lactate concentrations. This result was associated with a weak phosphorylation of eukaryotic initiation factor (eIF)4E and a rapid phosphorylation of eIF2alpha via the kinases PKR and PKR-like endoplasmic reticulum kinase. The inhibition of PKR by PRI led first to a significant but not complete dephosphorylation of eIF2alpha that probably contributed to maintain the inhibition of the protein synthesis and second to surprising phosphorylations of extracellular signal-regulated protein kinase, p70S6K and eIF4E, suggesting a possible cross-link between the two pathways. Conversely, cell death was weak at pH 5.5. Protein synthesis was decreased to a lesser extent, the phosphorylation of eIF2alpha was limited, extracellular signal-regulated protein kinase 1/2 was activated and its downstream targets, p70S6K and eIF4E, were phosphorylated. However, the strong phosphorylation of eIF4E was not associated with an activation of the eIF4F complex. This last result may explain why protein synthesis was not stimulated at pH 5.5. However, when astrocytes were exposed at pH 6.2, corresponding to the lower pH observed in hyperglycemic ischemia, no modification in protein synthesis was observed. Consequently, lactic acidosis cannot, by itself, provide an explanation for the decrease in protein synthesis previously reported in vivo in ischemia.

摘要

这项工作的目标首先是评估在缺血体内观察到的乳酸性酸中毒本身是否可以解释文献中描述的蛋白质合成抑制,其次是研究在乳酸应激下控制蛋白质合成起始的因素。暴露于pH 5.25的原代大鼠星形胶质细胞培养物经历细胞死亡,并且通过[3H]甲硫氨酸掺入评估的蛋白质合成受到强烈抑制,这完全是由于细胞外培养基的酸性,与乳酸浓度无关。该结果与真核起始因子(eIF)4E的弱磷酸化以及通过激酶PKR和PKR样内质网激酶导致的eIF2α的快速磷酸化有关。PRI对PKR的抑制首先导致eIF2α的显著但不完全去磷酸化,这可能有助于维持蛋白质合成的抑制,其次导致细胞外信号调节蛋白激酶、p70S6K和eIF4E的惊人磷酸化,表明两条途径之间可能存在交联。相反,在pH 5.5时细胞死亡较弱。蛋白质合成下降程度较小,eIF2α的磷酸化受到限制,细胞外信号调节蛋白激酶1/2被激活,其下游靶点p70S6K和eIF4E被磷酸化。然而,eIF4E的强烈磷酸化与eIF4F复合物的激活无关。这一最终结果可能解释了为什么在pH 5.5时蛋白质合成没有受到刺激。然而,当星形胶质细胞暴露于pH 6.2时,对应于高血糖缺血中观察到的较低pH,未观察到蛋白质合成的改变。因此,乳酸性酸中毒本身不能解释先前在缺血体内报道的蛋白质合成减少。

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