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在小鼠胚胎成纤维细胞中,AMPKα2的缺失通过诱导p16加速细胞衰老。

Absence of AMPKα2 accelerates cellular senescence via p16 induction in mouse embryonic fibroblasts.

作者信息

Ding Ye, Chen Jie, Okon Imoh Sunday, Zou Ming-Hui, Song Ping

机构信息

Center for Molecular and Translational Medicine, Georgia State University, Atlanta, GA 30303, USA.

Center for Molecular and Translational Medicine, Georgia State University, Atlanta, GA 30303, USA.

出版信息

Int J Biochem Cell Biol. 2016 Feb;71:72-80. doi: 10.1016/j.biocel.2015.12.010. Epub 2015 Dec 21.

Abstract

Emerging evidence suggests that activation of adenosine monophosphate-activated protein kinase (AMPK), an energy gauge and redox sensor, delays aging process. However, the molecular mechanisms by which AMPKα isoform regulates cellular senescence remain largely unknown. The aim of this study was to determine if AMPKα deletion contributes to the accelerated cell senescence by inducing p16(INK4A) (p16) expression thereby arresting cell cycle. The markers of cellular senescence, cell cycle proteins, and reactive oxygen species (ROS) were monitored in cultured mouse embryonic fibroblasts (MEFs) isolated from wild type (WT, C57BL/6J), AMPKα1, or AMPKα2 homozygous deficient (AMPKα1(-/-), AMPKα2(-/-)) mice by Western blot and cellular immunofluorescence staining, as well as immunohistochemistry (IHC) in skin tissue of young and aged mice. Deletion of AMPKα2, the minor isoform of AMPKα, but not AMPKα1 in high-passaged MEFs led to spontaneous cell senescence demonstrated by accumulation of senescence-associated-β-galactosidase (SA-β-gal) staining and foci formation of heterochromatin protein 1 homolog gamma (HP1γ). It was shown here that AMPKα2 deletion upregulates cyclin-dependent kinase (CDK) inhibitor, p16, which arrests cell cycle. Furthermore, AMPKα2 null cells exhibited elevated ROS production. Interestingly, knockdown of HMG box-containing protein 1 (HBP1) partially blocked the cellular senescence of AMPKα2-deleted MEFs via the reduction of p16. Finally, dermal cells senescence, including fibroblasts senescence evidenced by the staining of p16, HBP1, and Ki-67, in the skin of aged AMPKα2(-/-) mice was enhanced when compared with that in wild type mice. Taken together, our results suggest that AMPKα2 isoform plays a fundamental role in anti-oxidant stress and anti-senescence.

摘要

新出现的证据表明,作为能量监测器和氧化还原传感器的单磷酸腺苷激活蛋白激酶(AMPK)的激活可延缓衰老过程。然而,AMPKα亚型调节细胞衰老的分子机制仍 largely 未知。本研究的目的是确定 AMPKα缺失是否通过诱导 p16(INK4A)(p16)表达从而使细胞周期停滞来导致细胞衰老加速。通过蛋白质免疫印迹法、细胞免疫荧光染色以及对年轻和老年小鼠皮肤组织进行免疫组织化学(IHC)检测,监测从野生型(WT,C57BL/6J)、AMPKα1或 AMPKα2纯合缺陷(AMPKα1(-/-),AMPKα2(-/-))小鼠分离的培养小鼠胚胎成纤维细胞(MEF)中的细胞衰老标志物、细胞周期蛋白和活性氧(ROS)。在高传代 MEF 中,AMPKα的次要亚型 AMPKα2而非 AMPKα1的缺失导致衰老相关β-半乳糖苷酶(SA-β-gal)染色积累和异染色质蛋白 1 同源物γ(HP1γ)的灶状形成,表明细胞自发衰老。本研究表明,AMPKα2缺失会上调细胞周期蛋白依赖性激酶(CDK)抑制剂 p16,从而使细胞周期停滞。此外,AMPKα2缺失的细胞表现出 ROS 产生增加。有趣的是,含 HMG 盒蛋白 1(HBP1)的敲低通过降低 p16 部分阻断了 AMPKα2缺失的 MEF 的细胞衰老。最后,与野生型小鼠相比,老年 AMPKα2(-/-)小鼠皮肤中的真皮细胞衰老,包括通过 p16、HBP1和 Ki-67染色证明的成纤维细胞衰老增强。综上所述,我们的结果表明 AMPKα2亚型在抗氧化应激和抗衰老中起重要作用。

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