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PMID: 25347121 已发表 · epublish 英语

The role of IMP dehydrogenase 2 in Inauhzin-induced ribosomal stress.

eLife ·第 3 卷 ·2015-06-23

Zhang Qi, Zhou Xiang, Wu RuiZhi, Mosley Amber, Zeng Shelya X, Xing Zhen, Lu Hua

摘要

The 'ribosomal stress (RS)-p53 pathway' is triggered by any stressor or genetic alteration that disrupts ribosomal biogenesis, and mediated by several ribosomal proteins (RPs), such as RPL11 and RPL5, which inhibit MDM2 and activate p53. Inosine monophosphate (IMP) dehydrogenase 2 (IMPDH2) is a rate-limiting enzyme in de novo guanine nucleotide biosynthesis and crucial for maintaining cellular guanine deoxy- and ribonucleotide pools needed for DNA and RNA synthesis. It is highly expressed in many malignancies. We previously showed that inhibition of IMPDH2 leads to p53 activation by causing RS. Surprisingly, our current study reveals that Inauzhin (INZ), a novel non-genotoxic p53 activator by inhibiting SIRT1, can also inhibit cellular IMPDH2 activity, and reduce the levels of cellular GTP and GTP-binding nucleostemin that is essential for rRNA processing. Consequently, INZ induces RS and the RPL11/RPL5-MDM2 interaction, activating p53. These results support the new notion that INZ suppresses cancer cell growth by dually targeting SIRT1 and IMPDH2.

关键词
IMPDH2 Inauhzin MDM2 cell biology human nucleostemin p53 ribosomal stress
文献信息
期刊
eLife
期刊简称
Elife
发表日期
2015-06-23
收录日期
2014-10-28
更新日期
2016-11-25
语言
英语
国家/地区
England
NLM ID
101579614
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