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亚精胺类似物GC7(N1-胍基-1,7-二氨基庚烷)通过一种不涉及真核翻译起始因子5A(eIF5A)羟腐赖氨酸化的机制诱导自噬。

The spermidine analogue GC7 (N1-guanyl-1,7-diamineoheptane) induces autophagy through a mechanism not involving the hypusination of eIF5A.

作者信息

Oliverio Serafina, Corazzari Marco, Sestito Claudia, Piredda Lucia, Ippolito Giuseppe, Piacentini Mauro

机构信息

Department of Biology, University of Rome 'Tor Vergata', Via Della Ricerca Scientifica, 00133, Rome, Italy.

出版信息

Amino Acids. 2014 Dec;46(12):2767-76. doi: 10.1007/s00726-014-1821-0. Epub 2014 Sep 14.

Abstract

The exogenous administration of spermidine promotes longevity in many model organisms. It has been proposed that this anti-age activity of spermidine is related to this polyamine's ability to promote autophagy. Since spermidine is the substrate for the eIF5A post-translational modification by hypusination, we asked ourselves whether mature eIF5A may represent the link between spermidine and autophagy induction. To test this hypothesis, we inhibited the conversion of native eIF5A by a pharmacological approach, using the N1-guanyl-1,7-diamineoheptane (GC7), a spermidine analogue which competitively and reversibly inhibits deoxyhypusine synthase (DHS). In addition, we also employed genetic approaches by ablating both the eIF5A protein itself and DHS, the rate limiting enzyme catalyzing the conversion of lysine to hypusine. Collectively the data presented in this study demonstrate that the mature eIF5A (hypusinated form) is not involved in the autophagic pathway and that the inhibitor of DHS, GC7, produces off-target effect(s) resulting in marked induction of basal autophagy. These data are relevant in light of the fact that GC7 is considered a potent and selective inhibitor of DHS and is a potential candidate drug for cancer, diabetes and HIV therapy.

摘要

外源施用亚精胺可延长多种模式生物的寿命。有人提出,亚精胺的这种抗衰老活性与其促进自噬的能力有关。由于亚精胺是eIF5A经hypusination进行翻译后修饰的底物,我们不禁要问,成熟的eIF5A是否可能是亚精胺与自噬诱导之间的联系。为了验证这一假设,我们采用药理学方法,使用N1-鸟苷基-1,7-二氨基庚烷(GC7)抑制天然eIF5A的转化,GC7是一种亚精胺类似物,可竞争性且可逆地抑制脱氧hypusine合酶(DHS)。此外,我们还通过去除eIF5A蛋白本身和DHS(催化赖氨酸转化为hypusine的限速酶)采用了遗传学方法。本研究中呈现的数据共同表明,成熟的eIF5A(hypusinated形式)不参与自噬途径,并且DHS抑制剂GC7会产生脱靶效应,导致基础自噬显著诱导。鉴于GC7被认为是DHS的一种有效且选择性的抑制剂,并且是癌症、糖尿病和HIV治疗的潜在候选药物,这些数据具有重要意义。

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