Oral and Pharyngeal Cancer Branch, National Institute of Dental and Craniofacial Research, National Institutes of Health, Bethesda, MD 20892, USA.
Biochem J. 2011 Jan 1;433(1):205-13. doi: 10.1042/BJ20101322.
eIF5A (eukaryotic translation initiation factor 5A) is the only cellular protein containing hypusine [Nϵ-(4-amino-2-hydroxybutyl)lysine]. eIF5A is activated by the post-translational synthesis of hypusine and the hypusine modification is essential for cell proliferation. In the present study, we report selective acetylation of the hypusine and/or deoxyhypusine residue of eIF5A by a key polyamine catabolic enzyme SSAT1 (spermidine/spermine-N1-acetyltransferase 1). This enzyme normally catalyses the N1-acetylation of spermine and spermidine to form acetyl-derivatives, which in turn are degraded to lower polyamines. Although SSAT1 has been reported to exert other effects in cells by its interaction with other cellular proteins, eIF5A is the first target protein specifically acetylated by SSAT1. Hypusine or deoxyhypusine, as the free amino acid, does not act as a substrate for SSAT1, suggesting a macromolecular interaction between eIF5A and SSAT1. Indeed, the binding of eIF5A and SSAT1 was confirmed by pull-down assays. The effect of the acetylation of hypusine on eIF5A activity was assessed by comparison of acetylated with non-acetylated bovine testis eIF5A in the methionyl-puromycin synthesis assay. The loss of eIF5A activity by this SSAT1-mediated acetylation confirms the strict structural requirement for the hypusine side chain and suggests a possible regulation of eIF5A by hypusine acetylation/deacetylation.
真核翻译起始因子 5A(eIF5A)是唯一含有亚精胺[Nϵ-(4-氨基-2-羟基丁基)赖氨酸]的细胞蛋白。eIF5A 通过亚精胺的翻译后合成被激活,并且亚精胺修饰对于细胞增殖是必需的。在本研究中,我们报道了关键的多胺分解代谢酶 SSAT1(精脒/精胺-N1-乙酰转移酶 1)对 eIF5A 的亚精氨酸和/或去亚精氨酸残基的选择性乙酰化。该酶通常催化精胺和精脒的 N1-乙酰化形成乙酰衍生物,然后将其降解为低聚多胺。尽管 SSAT1 已通过与其他细胞蛋白相互作用在细胞中发挥其他作用,但 eIF5A 是 SSAT1 特异性乙酰化的第一个靶蛋白。亚精氨酸或去亚精氨酸作为游离氨基酸,不能作为 SSAT1 的底物,这表明 eIF5A 和 SSAT1 之间存在大分子相互作用。事实上,通过下拉测定证实了 eIF5A 和 SSAT1 的结合。通过比较甲硫氨酸-嘌呤霉素合成测定中乙酰化和非乙酰化牛睾丸 eIF5A 的活性,评估了亚精氨酸乙酰化对 eIF5A 活性的影响。这种由 SSAT1 介导的乙酰化导致 eIF5A 活性丧失,证实了亚精氨酸侧链的严格结构要求,并提示 eIF5A 可能通过亚精氨酸乙酰化/去乙酰化进行调节。