Crozet Pierre, Margalha Leonor, Confraria Ana, Rodrigues Américo, Martinho Cláudia, Adamo Mattia, Elias Carlos A, Baena-González Elena
Instituto Gulbenkian de Ciência Oeiras, Portugal.
Instituto Gulbenkian de Ciência Oeiras, Portugal ; Escola Superior de Turismo e Tecnologia do Mar de Peniche, Instituto Politécnico de Leiria Peniche, Portugal.
Front Plant Sci. 2014 May 20;5:190. doi: 10.3389/fpls.2014.00190. eCollection 2014.
The SNF1 (sucrose non-fermenting 1)-related protein kinases 1 (SnRKs1) are the plant orthologs of the budding yeast SNF1 and mammalian AMPK (AMP-activated protein kinase). These evolutionarily conserved kinases are metabolic sensors that undergo activation in response to declining energy levels. Upon activation, SNF1/AMPK/SnRK1 kinases trigger a vast transcriptional and metabolic reprograming that restores energy homeostasis and promotes tolerance to adverse conditions, partly through an induction of catabolic processes and a general repression of anabolism. These kinases typically function as a heterotrimeric complex composed of two regulatory subunits, β and γ, and an α-catalytic subunit, which requires phosphorylation of a conserved activation loop residue for activity. Additionally, SNF1/AMPK/SnRK1 kinases are controlled by multiple mechanisms that have an impact on kinase activity, stability, and/or subcellular localization. Here we will review current knowledge on the regulation of SNF1/AMPK/SnRK1 by upstream components, post-translational modifications, various metabolites, hormones, and others, in an attempt to highlight both the commonalities of these essential eukaryotic kinases and the divergences that have evolved to cope with the particularities of each one of these systems.
蔗糖非发酵1(SNF1)相关蛋白激酶1(SnRKs1)是出芽酵母SNF1和哺乳动物AMPK(AMP激活的蛋白激酶)在植物中的直系同源物。这些在进化上保守的激酶是代谢传感器,可响应能量水平下降而被激活。激活后,SNF1/AMPK/SnRK1激酶会引发广泛的转录和代谢重编程,从而恢复能量稳态并促进对不利条件的耐受性,部分是通过诱导分解代谢过程和普遍抑制合成代谢来实现的。这些激酶通常作为异源三聚体复合物发挥作用,该复合物由两个调节亚基β和γ以及一个α催化亚基组成,其活性需要保守的激活环残基磷酸化。此外,SNF1/AMPK/SnRK1激酶受多种机制控制,这些机制会影响激酶活性、稳定性和/或亚细胞定位。在这里,我们将综述关于上游成分、翻译后修饰及各种代谢物、激素等对SNF1/AMPK/SnRK1的调控的现有知识,试图突出这些重要的真核生物激酶的共性以及为应对这些系统各自的特殊性而进化出的差异。