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C/EBPγ通过与ATF4异源二聚化成为细胞应激反应网络的关键调节因子。

C/EBPγ Is a Critical Regulator of Cellular Stress Response Networks through Heterodimerization with ATF4.

作者信息

Huggins Christopher J, Mayekar Manasi K, Martin Nancy, Saylor Karen L, Gonit Mesfin, Jailwala Parthav, Kasoji Manjula, Haines Diana C, Quiñones Octavio A, Johnson Peter F

机构信息

Mouse Cancer Genetics Program, Center for Cancer Research, National Cancer Institute, Frederick, Maryland, USA.

Laboratory Animal Sciences Program, Leidos Biomedical Research, Inc., Frederick National Laboratory for Cancer Research, Frederick, Maryland, USA.

出版信息

Mol Cell Biol. 2015 Dec 14;36(5):693-713. doi: 10.1128/MCB.00911-15.

Abstract

The integrated stress response (ISR) controls cellular adaptations to nutrient deprivation, redox imbalances, and endoplasmic reticulum (ER) stress. ISR genes are upregulated in stressed cells, primarily by the bZIP transcription factor ATF4 through its recruitment to cis-regulatory C/EBP:ATF response elements (CAREs) together with a dimeric partner of uncertain identity. Here, we show that C/EBPγ:ATF4 heterodimers, but not C/EBPβ:ATF4 dimers, are the predominant CARE-binding species in stressed cells. C/EBPγ and ATF4 associate with genomic CAREs in a mutually dependent manner and coregulate many ISR genes. In contrast, the C/EBP family members C/EBPβ and C/EBP homologous protein (CHOP) were largely dispensable for induction of stress genes. Cebpg(-/-) mouse embryonic fibroblasts (MEFs) proliferate poorly and exhibit oxidative stress due to reduced glutathione levels and impaired expression of several glutathione biosynthesis pathway genes. Cebpg(-/-) mice (C57BL/6 background) display reduced body size and microphthalmia, similar to ATF4-null animals. In addition, C/EBPγ-deficient newborns die from atelectasis and respiratory failure, which can be mitigated by in utero exposure to the antioxidant, N-acetyl-cysteine. Cebpg(-/-) mice on a mixed strain background showed improved viability but, upon aging, developed significantly fewer malignant solid tumors than WT animals. Our findings identify C/EBPγ as a novel antioxidant regulator and an obligatory ATF4 partner that controls redox homeostasis in normal and cancerous cells.

摘要

整合应激反应(ISR)控制细胞对营养剥夺、氧化还原失衡和内质网(ER)应激的适应性。ISR基因在应激细胞中上调,主要是通过碱性亮氨酸拉链转录因子ATF4,它通过与身份不明的二聚体伙伴一起募集到顺式调节C/EBP:ATF反应元件(CAREs)上。在这里,我们表明C/EBPγ:ATF4异二聚体而非C/EBPβ:ATF4二聚体是应激细胞中主要的CARE结合物种。C/EBPγ和ATF4以相互依赖的方式与基因组CAREs结合,并共同调节许多ISR基因。相比之下,C/EBP家族成员C/EBPβ和C/EBP同源蛋白(CHOP)在应激基因的诱导中基本 dispensable。Cebpg(-/-)小鼠胚胎成纤维细胞(MEFs)增殖不良,并由于谷胱甘肽水平降低和几种谷胱甘肽生物合成途径基因的表达受损而表现出氧化应激。Cebpg(-/-)小鼠(C57BL/6背景)体型减小且有小眼症,类似于ATF4基因敲除动物。此外,C/EBPγ缺陷的新生小鼠死于肺不张和呼吸衰竭,在子宫内暴露于抗氧化剂N-乙酰半胱氨酸可减轻这种情况。混合品系背景的Cebpg(-/-)小鼠生存能力有所改善,但随着年龄增长,发生的恶性实体瘤比野生型动物少得多。我们的研究结果确定C/EBPγ是一种新型抗氧化调节剂,是控制正常和癌细胞氧化还原稳态的必需ATF4伙伴。 (注:原文中“largely dispensable”这里的“dispensable”不太确定准确意思,暂保留英文未翻译,可根据实际情况进一步明确后修改)

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