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AMP-Activated Protein Kinase 通过影响. 中的 CLOCK 来调节生物钟节律。

AMP-Activated Protein Kinase Regulates Circadian Rhythm by Affecting CLOCK in .

机构信息

Neuroscience Graduate Program, Department of Biomedical Sciences, Ajou University Graduate School of Medicine.

Department of Brain Science, Ajou University School of Medicine, and.

出版信息

J Neurosci. 2019 May 1;39(18):3537-3550. doi: 10.1523/JNEUROSCI.2344-18.2019. Epub 2019 Feb 28.

Abstract

The circadian clock organizes the physiology and behavior of organisms to their daily environmental rhythms. The central circadian timekeeping mechanism in eukaryotic cells is the transcriptional-translational feedback loop (TTFL). In the TTFL, the transcription factors CLOCK (CLK) and CYCLE (CYC) play crucial roles in activating expression of core clock genes and clock-controlled genes. Many signaling pathways converge on the CLK/CYC complex and regulate its activity to fine-tune the cellular oscillator to environmental time cues. We aimed to identify factors that regulate CLK by performing tandem affinity purification combined with mass spectrometry using S2 cells that stably express HA/FLAG-tagged CLK and V5-tagged CYC. We identified SNF4Aγ, a homolog of mammalian AMP-activated protein kinase γ (AMPKγ), as a factor that copurified with HA/FLAG-tagged CLK. The AMPK holoenzyme composed of a catalytic subunit AMPKα and two regulatory subunits, AMPKβ and AMPKγ, directly phosphorylated purified CLK Locomotor behavior analysis in revealed that knockdown of each AMPK subunit in pacemaker neurons induced arrhythmicity and long periods. Knockdown of AMPKβ reduced CLK levels in pacemaker neurons, and thereby reduced pre-mRNA and protein levels of CLK downstream core clock genes, such as and Finally, overexpression of CLK reversed the long-period phenotype that resulted from AMPKβ knockdown. Thus, we conclude that AMPK, a central regulator of cellular energy metabolism, regulates the circadian clock by stabilizing CLK and activating CLK/CYC-dependent transcription. Regulation of the circadian transcription factors CLK and CYC is fundamental to synchronize the core clock with environmental changes. Here, we show that the AMPKγ subunit of AMPK, a central regulator of cellular metabolism, copurifies with the CLK/CYC complex in S2 cells. Furthermore, the AMPK holoenzyme directly phosphorylates CLK This study demonstrates that AMPK activity regulates the core clock in by activating CLK, which enhances circadian transcription. In mammals, AMPK affects the core clock by downregulating circadian repressor proteins. It is intriguing to note that AMPK activity is required for core clock regulation through circadian transcription enhancement, whereas the target of AMPK action is different in and mammals (positive vs negative element, respectively).

摘要

生物钟组织生物体的生理和行为以适应其日常环境节律。真核细胞中的中央生物钟机制是转录-翻译反馈环(TTFL)。在 TTFL 中,转录因子 CLOCK(CLK)和 CYCLE(CYC)在激活核心时钟基因和时钟控制基因的表达方面发挥着关键作用。许多信号通路汇聚到 CLK/CYC 复合物上,并调节其活性,以微调细胞振荡器以适应环境时间线索。我们旨在通过使用稳定表达 HA/FLAG 标记的 CLK 和 V5 标记的 CYC 的 S2 细胞进行串联亲和纯化结合质谱分析来鉴定调节 CLK 的因子。我们鉴定出 SNF4Aγ,一种哺乳动物 AMP 激活蛋白激酶 γ(AMPKγ)的同源物,是与 HA/FLAG 标记的 CLK 共纯化的因子。由催化亚基 AMPKα和两个调节亚基 AMPKβ和 AMPKγ组成的 AMPK 全酶直接磷酸化纯化的 CLK。在揭示了在起搏器神经元中敲低每个 AMPK 亚基都会诱导心律失常和长周期。AMPKβ 的敲低降低了起搏器神经元中的 CLK 水平,从而降低了 CLK 下游核心时钟基因如和的 pre-mRNA 和蛋白水平。最后,AMPKβ 的过表达逆转了由于 AMPKβ 敲低而导致的长周期表型。因此,我们得出结论,AMPK,细胞能量代谢的中央调节剂,通过稳定 CLK 和激活 CLK/CYC 依赖性转录来调节生物钟。调节生物钟转录因子 CLK 和 CYC 对于将核心时钟与环境变化同步至关重要。在这里,我们表明 AMPK 的 AMPKγ 亚基,细胞代谢的中央调节剂,在 S2 细胞中与 CLK/CYC 复合物共纯化。此外,AMPK 全酶直接磷酸化 CLK。这项研究表明,AMPK 活性通过激活 CLK 来调节生物钟,从而增强了 circadian 转录。在哺乳动物中,AMPK 通过下调 circadian 阻遏蛋白来影响核心时钟。有趣的是,AMPK 活性通过增强 circadian 转录来调节核心时钟,而 AMPK 作用的靶点在和哺乳动物中是不同的(分别为正元件和负元件)。

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