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哺乳动物冬眠期间eIF4E和4E-BP1的季节性及状态依赖性变化:对蛰伏期翻译调控的影响

Seasonal and state-dependent changes of eIF4E and 4E-BP1 during mammalian hibernation: implications for the control of translation during torpor.

作者信息

van Breukelen Frank, Sonenberg Nahum, Martin Sandra L

机构信息

Department of Biological Sciences, University of Nevada, Las Vegas, Nevada 89154-4004, USA.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2004 Aug;287(2):R349-53. doi: 10.1152/ajpregu.00728.2003. Epub 2004 Apr 1.

Abstract

Mammalian hibernation involves cessation of energetically costly processes typical of homeostatic regulation including protein synthesis. To further elucidate the mechanisms employed in depressing translation, we surveyed key eukaryotic initiation factors [eIF2, eIF4B, eIF4E, eIF4GI and -II, and 4E-binding protein-1 (4E-BP1), -2, and -3] for their availability and phosphorylation status in the livers of golden-mantled ground squirrels (Spermophilus lateralis) across the hibernation cycle. Western blot analyses indicated only one significant locus for regulation of translational initiation in ground squirrel liver: control of eIF4E. We found seasonal variation in a potent regulator of eIF4E activity, 4E-BP1. Summer squirrels lack 4E-BP1 and apparently control eIF4E activity through direct phosphorylation. In winter, eIF4E is regulated through binding with 4E-BP1. During the euthermic periods that separate bouts of torpor (interbout arousal), 4E-BP1 is hyperphosphorylated to promote initiation. However, during torpor, 4E-BP1 is hypophosphorylated and cap-dependent initiation of translation is restricted. The regulation of cap-dependent initiation of translation may allow for the differential expression of proteins directed toward enhancing survivorship.

摘要

哺乳动物的冬眠涉及到停止能量消耗高昂的稳态调节过程,包括蛋白质合成。为了进一步阐明抑制翻译所采用的机制,我们调查了关键的真核生物起始因子[eIF2、eIF4B、eIF4E、eIF4GI和-II,以及4E结合蛋白-1(4E-BP1)、-2和-3]在金黄地松鼠(Spermophilus lateralis)肝脏整个冬眠周期中的可用性和磷酸化状态。蛋白质印迹分析表明,地松鼠肝脏中翻译起始调控只有一个重要位点:eIF4E的控制。我们发现eIF4E活性的有效调节因子4E-BP1存在季节性变化。夏季松鼠缺乏4E-BP1,显然是通过直接磷酸化来控制eIF4E活性。在冬季,eIF4E通过与4E-BP1结合来调节。在分隔多次蛰伏期的常温期(间发性觉醒),4E-BP1被过度磷酸化以促进起始。然而,在蛰伏期间,4E-BP1磷酸化不足,帽依赖性翻译起始受到限制。帽依赖性翻译起始的调节可能允许针对增强生存能力的蛋白质进行差异表达。

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