Department of Tumor Microenvironment & Metastasis, Moffitt Cancer Center, 12902 Magnolia Drive, Tampa, FL 33612, USA.
Int J Mol Sci. 2024 Jul 26;25(15):8171. doi: 10.3390/ijms25158171.
The unique amino acid hypusine [N-(4-amino-2-hydroxybutyl)lysine] is exclusively formed on the translational regulator eukaryotic initiation factor 5A (eIF5A) via a process coined hypusination. Hypusination is mediated by two enzymes, deoxyhypusine synthase (DHPS) and deoxyhypusine hydroxylase (DOHH), and hypusinated eIF5A (eIF5A) promotes translation elongation by alleviating ribosome pauses at amino acid motifs that cause structural constraints, and it also facilitates translation initiation and termination. Accordingly, eIF5A has diverse biological functions that rely on translational control of its targets. Homozygous deletion of , , or in mice leads to embryonic lethality, and heterozygous germline variants in and biallelic variants in and are associated with rare inherited neurodevelopmental disorders, underscoring the importance of the hypusine circuit for embryonic and neuronal development. Given the pleiotropic effects of eIF5A, a detailed understanding of the cell context-specific intrinsic roles of eIF5A and of the chronic versus acute effects of eIF5A inhibition is necessary to develop future strategies for eIF5A-targeted therapy to treat various human health problems. Here, we review the most recent studies documenting the intrinsic roles of eIF5A in different tissues/cell types under normal or pathophysiological conditions and discuss these unique aspects of eIF5A-dependent translational control.
[N-(4-氨基-2-羟基丁基)赖氨酸]是一种独特的氨基酸,通过一种称为“hypusination”的过程专门在翻译调节因子真核起始因子 5A (eIF5A) 上形成。Hypusination 由两种酶,脱氧hypusine 合酶 (DHPS) 和脱氧hypusine 羟化酶 (DOHH) 介导,hypusinated eIF5A (eIF5A) 通过缓解在引起结构约束的氨基酸基序处引起核糖体停顿,促进翻译延伸,并且还促进翻译起始和终止。因此,eIF5A 具有多种依赖于其靶标翻译控制的生物学功能。在小鼠中, 、 或 基因的纯合缺失导致胚胎致死,而 基因中的杂合生殖系变体和 基因和 基因中的双等位基因变体与罕见的遗传性神经发育障碍有关,这突显了 hypusine 回路对胚胎和神经元发育的重要性。鉴于 eIF5A 的多效性效应,需要深入了解 eIF5A 在不同组织/细胞类型中的细胞上下文特异性内在作用,以及 eIF5A 抑制的慢性与急性作用,以制定未来针对 eIF5A 靶向治疗的策略来治疗各种人类健康问题。在这里,我们回顾了最近的研究,这些研究记录了 eIF5A 在正常或病理生理条件下不同组织/细胞类型中的内在作用,并讨论了 eIF5A 依赖性翻译控制的这些独特方面。