血管生成
生物
血管内皮生长因子A
磷酸化
细胞生物学
癌症研究
转录因子
缺氧(环境)
血管内皮生长因子
分子生物学
生物化学
化学
基因
血管内皮生长因子受体
有机化学
氧气
作者
Yi Shi,Ze Liu,Qian Zhang,Ingrid Vallee,Zhongying Mo,Shuji Kishi,Xiang‐Lei Yang
出处
期刊:PLOS Biology
[Public Library of Science]
日期:2020-12-22
卷期号:18 (12): e3000991-e3000991
被引量:30
标识
DOI:10.1371/journal.pbio.3000991
摘要
Hypoxia-induced angiogenesis maintains tissue oxygen supply and protects against ischemia but also enhances tumor progression and malignancy. This is mediated through activation of transcription factors like hypoxia-inducible factor 1 (HIF-1) and c-Myc, yet the impact of hypoxia on negative regulators of angiogenesis is unknown. During vascular development, seryl-tRNA synthetase (SerRS) regulates angiogenesis through a novel mechanism by counteracting c-Myc and transcriptionally repressing vascular endothelial growth factor A (VEGFA) expression. Here, we reveal that the transcriptional repressor role of SerRS is inactivated under hypoxia through phosphorylation by ataxia telangiectasia mutated (ATM) and ataxia telangiectasia mutated and RAD3-related (ATR) at Ser101 and Ser241 to attenuate its DNA binding capacity. In zebrafish, SerRSS101D/S241D, a phosphorylation-mimicry mutant, cannot suppress VEGFA expression to support normal vascular development. Moreover, expression of SerRSS101A/S241A, a phosphorylation-deficient and constitutively active mutant, prevents hypoxia-induced binding of c-Myc and HIF-1 to the VEGFA promoter, and activation of VEGFA expression. Consistently, SerRSS101A/S241A strongly inhibits normal and tumor-derived angiogenesis in mice. Therefore, we reveal a key step regulating hypoxic angiogenesis and highlight the importance of nuclear SerRS in post-developmental angiogenesis regulation in addition to vascular development. The role of nuclear SerRS in inhibiting both c-Myc and HIF-1 may provide therapeutic opportunities to correct dysregulation of angiogenesis in pathological settings.
科研通智能强力驱动
Strongly Powered by AbleSci AI