Li Xinjian, Yu Willie, Qian Xu, Xia Yan, Zheng Yanhua, Lee Jong-Ho, Li Wei, Lyu Jianxin, Rao Ganesh, Zhang Xiaochun, Qian Chao-Nan, Rozen Steven G, Jiang Tao, Lu Zhimin
Brain Tumor Center, Department of Neuro-Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.
Program in Cancer and Stem Cell Biology, Centre for Computational Biology, Duke-NUS Medical School, 8 College Road, Singapore 169857, Singapore.
Mol Cell. 2017 Jun 1;66(5):684-697.e9. doi: 10.1016/j.molcel.2017.04.026. Epub 2017 May 25.
Overcoming metabolic stress is a critical step in tumor growth. Acetyl coenzyme A (acetyl-CoA) generated from glucose and acetate uptake is important for histone acetylation and gene expression. However, how acetyl-CoA is produced under nutritional stress is unclear. We demonstrate here that glucose deprivation results in AMP-activated protein kinase (AMPK)-mediated acetyl-CoA synthetase 2 (ACSS2) phosphorylation at S659, which exposed the nuclear localization signal of ACSS2 for importin α5 binding and nuclear translocation. In the nucleus, ACSS2 binds to transcription factor EB and translocates to lysosomal and autophagy gene promoter regions, where ACSS2 incorporates acetate generated from histone acetylation turnover to locally produce acetyl-CoA for histone H3 acetylation in these regions and promote lysosomal biogenesis, autophagy, cell survival, and brain tumorigenesis. In addition, ACSS2 S659 phosphorylation positively correlates with AMPK activity in glioma specimens and grades of glioma malignancy. These results underscore the significance of nuclear ACSS2-mediated histone acetylation in maintaining cell homeostasis and tumor development.
克服代谢应激是肿瘤生长的关键步骤。由葡萄糖摄取和乙酸摄取产生的乙酰辅酶A(acetyl-CoA)对于组蛋白乙酰化和基因表达很重要。然而,在营养应激下乙酰辅酶A是如何产生的尚不清楚。我们在此证明,葡萄糖剥夺导致AMP激活的蛋白激酶(AMPK)介导的乙酰辅酶A合成酶2(ACSS2)在S659位点磷酸化,这暴露了ACSS2的核定位信号以便与输入蛋白α5结合并进行核转位。在细胞核中,ACSS2与转录因子EB结合并转位至溶酶体和自噬基因启动子区域,在那里ACSS2将组蛋白乙酰化周转产生的乙酸整合,以在这些区域局部产生乙酰辅酶A用于组蛋白H3乙酰化,并促进溶酶体生物发生、自噬、细胞存活和脑肿瘤发生。此外,ACSS2 S659磷酸化与胶质瘤标本中的AMPK活性以及胶质瘤恶性程度呈正相关。这些结果强调了核ACSS2介导的组蛋白乙酰化在维持细胞稳态和肿瘤发展中的重要性。