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首页> 外文期刊>Nucleic acids research >The cellular abundance of the essential transcription termination factor TTF-I regulates ribosome biogenesis and is determined by MDM2 ubiquitinylation
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The cellular abundance of the essential transcription termination factor TTF-I regulates ribosome biogenesis and is determined by MDM2 ubiquitinylation

机译:基本转录终止因子TTF-1的细胞丰度调节核糖体的生物发生,并由MDM2泛素化确定

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The ARF tumour suppressor stabilizes p53 by negatively regulating the E3 ubiquitin ligase MDM2 to promote cell cycle arrest and cell death. However, ARF is also able to arrest cell proliferation by inhibiting ribosome biogenesis. In greater part this is achieved by targeting the transcription termination factor I (TTF-I) for nucleolar export, leading to an inhibition of both ribosomal RNA synthesis and processing. We now show that in the absence of ARF, TTF-I is ubiquitinylated by MDM2. MDM2 interacts directly with TTF-I and regulates its cellular abundance by targeting it for degradation by the proteasome. Enhanced TTF-I levels inhibit ribosome biogenesis by suppressing ribosomal RNA synthesis and processing, strongly suggesting that exact TTF-I levels are critical for efficient ribosome biogenesis. We further show that concomitant with its ability to displace TTF-I from the nucleolus, ARF inhibits MDM2 ubiquitinylation of TTF-I by competitively binding to a site overlapping the MDM2 interaction site. Thus, both the sub-nuclear localization and the abundance of TTF-I are key regulators of ribosome biogenesis.
机译:ARF肿瘤抑制因子通过负调控E3泛素连接酶MDM2来促进细胞周期停滞和细胞死亡,从而稳定p53。但是,ARF也可以通过抑制核糖体的生物发生来阻止细胞增殖。这在很大程度上是通过将转录终止因子I(TTF-1)靶向核仁输出而实现的,从而导致对核糖体RNA合成和加工的抑制。现在我们显示在不存在ARF的情况下,TTF-1被MDM2泛素化。 MDM2直接与TTF-1相互作用,并通过将其靶向蛋白酶体降解来调节其细胞丰度。增强的TTF-1水平通过抑制核糖体RNA的合成和加工来抑制核糖体的生物发生,强烈表明确切的TTF-1水平对于有效的核糖体生物发生至关重要。我们进一步表明,与其从核仁中置换TTF-1的能力相伴,ARF通过竞争性结合到与MDM2相互作用位点重叠的位点来抑制TTF-1的MDM2泛素化。因此,亚核定位和TTF-1的丰度都是核糖体生物发生的关键调节因子。

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