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FIH permits NAA10 to catalyze the oxygen-dependent lysyl-acetylation of HIF-1α

机译:FIH允许NAA10催化HIF-1α的氧依赖性赖氨酰乙酰化

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摘要

The N-terminal acetyltransferase A (NatA) complex, which is composed of NAA10 and NAA15, catalyzes N-terminal acetylation of many proteins in a co-translational manner. Structurally, the catalytic subunit NAA10 was believed to have no activity toward an internal lysine residue because the gate of its catalytic pocket is too narrow. However, several studies have demonstrated that the monomeric NAA10 can acetylate the internal lysine residues of several substrates including hypoxia-inducible factor 1α (HIF-1α). How NAA10 acetylates lysine residues has been an unsolved question. We here found that human FIH (factor inhibiting HIF) hydroxylates human NAA10 at W38 oxygen-dependently and this permits NAA10 to express the lysyl-acetyltransferase activity. The hydroxylated W38 forms a new hydrogen-bond with A67 and widens the gate at the catalytic pocket, which allows the entrance of a lysine residue to the site. Since the FIH-dependent hydroxylation of NAA10 occurs oxygen-dependently, NAA10 acetylates HIF-1α under normoxia but does not under hypoxia. Consequently, the acetylation promotes the pVHL binding to HIF-1α, and in turn HIF-1α is destructed via the ubiquitin-proteasome system. This study provides a novel oxygen-sensing process that determines the substrate specificity of NAA10 depending on an ambient oxygen tension.
机译:由NAA10和NAA15组成的N末端乙酰基转移酶A(NatA)复合物以共翻译的方式催化许多蛋白质的N末端乙酰化。在结构上,催化亚基NAA10被认为对内部赖氨酸残基没有活性,因为其催化口袋的门太窄。但是,一些研究表明,单体NAA10可以乙酰化包括低氧诱导因子1α(HIF-1α)在内的几种底物的内部赖氨酸残基。 NAA10如何使赖氨酸残基乙酰化尚未解决。我们在这里发现人FIH(抑制HIF的因子)在W38处氧依赖性地使人NAA10羟基化,这使NAA10表达赖氨酰乙酰转移酶活性。羟基化的W38与A67形成新的氢键,并加宽了催化口袋处的门,使赖氨酸残基进入该位点。由于NAA10的FIH依赖性羟基化依赖于氧气,因此在常氧下NAA10会乙酰化HIF-1α,而在缺氧下则不会。因此,乙酰化促进了pVHL与HIF-1α的结合,进而HIF-1α通过泛素-蛋白酶体系统被破坏。这项研究提供了一种新颖的氧气传感方法,该方法可根据环境氧气张力确定NAA10的底物特异性。

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