首页> 外文期刊>Journal of Cell Science >p62/SQSTM1 regulates cellular oxygen sensing by attenuating PHD3 activity through aggregate sequestration and enhanced degradation
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p62/SQSTM1 regulates cellular oxygen sensing by attenuating PHD3 activity through aggregate sequestration and enhanced degradation

机译:p62 / SQSTM1通过聚集螯合和增强降解来减弱PHD3活性,从而调节细胞氧的感应。

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The hypoxia-inducible factor (HIF) prolyl hydroxylase PHD3 regulates cellular responses to hypoxia. In normoxia the expression of PHD3 is low and it occurs in cytosolic aggregates. SQSTM1/p62 (p62) recruits proteins into cytosolic aggregates, regulates metabolism and protein degradation and is downregulated by hypoxia. Here we show that p62 determines the localization, expression and activity of PHD3. In normoxia PHD3 interacted with p62 in cytosolic aggregates, and p62 was required for PHD3 aggregation that was lost upon transfer to hypoxia, allowing PHD3 to be expressed evenly throughout the cell. In line with this, p62 enhanced the normoxic degradation of PHD3. Depletion of p62 in normoxia led to elevated PHD3 levels, whereas forced p62 expression in hypoxia downregulated PHD3. The loss of p62 resulted in enhanced interaction of PHD3 with HIF-α and reduced HIF-α levels. The data demonstrate p62 is a critical regulator of the hypoxia response and PHD3 activity, by inducing PHD3 aggregation and degradation under normoxia.
机译:缺氧诱导因子(HIF)脯氨酰羟化酶PHD3调节细胞对缺氧的反应。在常氧状态下,PHD3的表达较低,并存在于胞质聚集物中。 SQSTM1 / p62(p62)将蛋白质募集到胞质聚集体中,调节新陈代谢和蛋白质降解,并由于缺氧而下调。在这里,我们显示p62决定了PHD3的定位,表达和活性。在正常氧状态下,PHD3与胞质聚集物中的p62相互作用,并且p62是PHD3聚集所必需的,在转移至缺氧状态时会丢失,从而使PHD3在整个细胞中均匀表达。与此相符,p62增强了PHD3的正常氧降解。在常氧状态下p62的消耗导致PHD3水平升高,而在低氧状态下p62的强制表达下调PHD3。 p62的丧失导致PHD3与HIF-α的相互作用增强,HIF-α水平降低。数据表明,p62通过在常氧下诱导PHD3聚集和降解,是缺氧反应和PHD3活性的关键调节剂。

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