Department of Biology, Laboratory for Functional Biology, Katholieke Universiteit Leuven, Heverlee, Belgium.
FEBS J. 2011 Nov;278(21):3978-90. doi: 10.1111/j.1742-4658.2011.08315.x. Epub 2011 Sep 26.
All life forms on earth require a continuous input and monitoring of carbon and energy supplies. The AMP-activated kinase (AMPK)/sucrose non-fermenting1 (SNF1)/Snf1-related kinase1 (SnRK1) protein kinases are evolutionarily conserved metabolic sensors found in all eukaryotic organisms from simple unicellular fungi (yeast SNF1) to animals (AMPK) and plants (SnRK1). Activated by starvation and energy-depleting stress conditions, they enable energy homeostasis and survival by up-regulating energy-conserving and energy-producing catabolic processes, and by limiting energy-consuming anabolic metabolism. In addition, they control normal growth and development as well as metabolic homeostasis at the organismal level. As such, the AMPK/SNF1/SnRK1 kinases act in concert with other central signaling components to control carbohydrate uptake and metabolism, fatty acid and lipid biosynthesis and the storage of carbon energy reserves. Moreover, they have a tremendous impact on developmental processes that are triggered by environmental changes such as nutrient depletion or stress. Although intensive research by many groups has partly unveiled the factors that regulate AMPK/SNF1/SnRK1 kinase activity as well as the pathways and substrates they control, several fundamental issues still await to be clarified. In this review, we will highlight these issues and focus on the structure, function and regulation of the AMPK/SNF1/SnRK1 kinases.
地球上的所有生命形式都需要不断输入和监测碳和能源供应。AMP 激活的蛋白激酶 (AMPK)/蔗糖非发酵 1 (SNF1)/Snf1 相关激酶 1 (SnRK1) 蛋白激酶是进化上保守的代谢传感器,存在于从简单的单细胞真菌(酵母 SNF1)到动物(AMPK)和植物(SnRK1)的所有真核生物中。它们被饥饿和能量耗竭应激条件激活,通过上调能量守恒和能量产生的分解代谢过程,以及限制耗能的合成代谢,来实现能量稳态和生存。此外,它们还控制着生物体水平的正常生长发育和代谢稳态。因此,AMPK/SNF1/SnRK1 激酶与其他核心信号成分协同作用,控制碳水化合物的摄取和代谢、脂肪酸和脂质的生物合成以及碳能量储备的储存。此外,它们对环境变化(如营养物质耗尽或应激)引发的发育过程有巨大影响。尽管许多研究小组进行了深入研究,部分揭示了调节 AMPK/SNF1/SnRK1 激酶活性的因素以及它们控制的途径和底物,但仍有几个基本问题有待澄清。在这篇综述中,我们将强调这些问题,并重点介绍 AMPK/SNF1/SnRK1 激酶的结构、功能和调节。