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Deciphering the emerging role of SUMO conjugation in the hypoxia-signaling cascade

机译:解读SUMO偶联在缺氧信号级联反应中的新兴作用

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By driving the primary transcriptional response, the hypoxia inducible factor (HIF) is a master player of the hypoxia-signaling cascade, activation of which is essential to maintain oxygen homeostasis. HIF is formed by the interaction of a constitutive HIF-1beta sub-unit with a HIF-alpha subunit tightly regulated through the concerted action of the prolyl hydroxylase domain containing proteins (PHDs) and factor inhibiting HIF. In well-oxygenated cells, HIF-a prolyl-hydroxylation by PHDs is the recognition signal for the binding of the ubiquitin E3 ligase pVHL, allowing protein poly-ubiquitination and degradation by the proteasome. Factor inhibiting HIF-mediated asparaginyl hydroxylation prevents interaction with the CBP/p300 coactivator and hence reduces HIF-dependent transcriptional activity. Upon low oxygen availability, HIF-a hydroxylation is blocked, resulting in protein stabilization and HIF complex activation. Post-translational modifications other than hydroxylation appear to be important in the cellular response to hypoxia. Small ubiquitin-like modifier (SUMO) is a 10 kDa protein readily conjugated to the lysine (K) residues of numerous cellular substrates in a sequential process termed SUMOylation. Recent data support the idea that a fine balance in SUMOylation/deSUMOylation is required for the adequate activation of the hypoxia-signaling cascade. In the present review, we will concentrate on the mechanisms of SUMOylation and its consequences in the cellular response to hypoxia.
机译:通过驱动主要的转录反应,低氧诱导因子(HIF)是低氧信号级联反应的主要参与者,其激活对于维持氧稳态是必不可少的。 HIF由组成型HIF-1β亚基与通过含脯氨酰羟化酶结构域蛋白(PHD)和抑制因子的HIF共同作用而紧密调节的HIF-α亚基的相互作用形成。在充氧良好的细胞中,PHD产生的HIF-a脯氨酰羟化是结合泛素E3连接酶pVHL的识别信号,从而使蛋白质多泛素化并被蛋白酶体降解。抑制HIF介导的天冬酰胺基羟基化的因子阻止了与CBP / p300共激活剂的相互作用,因此降低了HIF依赖性转录活性。在低氧可用性下,HIF-α羟基化被阻断,从而导致蛋白质稳定化和HIF复合物活化。除羟化作用外,翻译后修饰在细胞对缺氧的反应中似乎很重要。小型泛素样修饰剂(SUMO)是一种10 kDa的蛋白质,易于在称为SUMOylation的顺序过程中与许多细胞底物的赖氨酸(K)残基偶联。最近的数据支持以下想法:SUMOylation / deSUMOylation的良好平衡是充分激活缺氧信号级联反应所必需的。在当前的审查中,我们将专注于SUMOylation的机制及其在细胞对缺氧反应中的后果。

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