中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
cMyc-mediated activation of serine biosynthesis pathway is critical for cancer progression under nutrient deprivation conditions

文献类型:期刊论文

作者Sun Linchong1; Song Libing2; Wan Qianfen3; Wu Gongwei1; Li Xinghua2; Wang Yinghui1; Wang Jin3; Liu Zhaoji1; Zhong Xiuying1; He Xiaoping1
刊名Cell Research
出版日期2015
卷号25期号:4页码:429
ISSN号1001-0602
英文摘要Cancer cells are known to undergo metabolic reprogramming to sustain survival and rapid proliferation, however, it remains to be fully elucidated how oncogenic lesions coordinate the metabolic switch under various stressed conditions. Here we show that deprivation of glucose or glutamine, two major nutrition sources for cancer cells, dramatically activated serine biosynthesis pathway (SSP) that was accompanied by elevated cMyc expression. We further identified that cMyc stimulated SSP activation by transcriptionally upregulating expression of multiple SSP enzymes. Moreover, we demonstrated that SSP activation facilitated by cMyc led to elevated glutathione (GSH) production, cell cycle progression and nucleic acid synthesis, which are essential for cell survival and proliferation especially under nutrient-deprived conditions. We further uncovered that phosphoserine phosphatase (PSPH), the final rate-limiting enzyme of the SSP pathway, is critical for cMyc-driven cancer progression both in vitro and in vivo , and importantly, aberrant expression of PSPH is highly correlated with mortality in hepatocellular carcinoma (HCC) patients, suggesting a potential causal relation between this cMyc-regulated enzyme, or SSP activation in general, and cancer development. Taken together, our results reveal that aberrant expression of cMyc leads to the enhanced SSP activation, an essential part of metabolic switch, to facilitate cancer progression under nutrient-deprived conditions.
语种英语
源URL[http://ir.wipm.ac.cn/handle/112942/18546]  
专题中国科学院武汉物理与数学研究所
作者单位1.中国科学技术大学
2.中山大学
3.中国科学院武汉物理与数学研究所
4.China National Center of Biomedical Analysis
推荐引用方式
GB/T 7714
Sun Linchong,Song Libing,Wan Qianfen,et al. cMyc-mediated activation of serine biosynthesis pathway is critical for cancer progression under nutrient deprivation conditions[J]. Cell Research,2015,25(4):429.
APA Sun Linchong.,Song Libing.,Wan Qianfen.,Wu Gongwei.,Li Xinghua.,...&Zhang Huafeng.(2015).cMyc-mediated activation of serine biosynthesis pathway is critical for cancer progression under nutrient deprivation conditions.Cell Research,25(4),429.
MLA Sun Linchong,et al."cMyc-mediated activation of serine biosynthesis pathway is critical for cancer progression under nutrient deprivation conditions".Cell Research 25.4(2015):429.

入库方式: OAI收割

来源:武汉物理与数学研究所

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