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多胺调节子编码的特定蛋白的翻译抑制导致多胺过量的细胞毒性作用机制。

Cytotoxic Mechanism of Excess Polyamines Functions through Translational Repression of Specific Proteins Encoded by Polyamine Modulon.

机构信息

Faculty of Pharmacy, Chiba Institute of Science, Choshi, Chiba 288-0025, Japan.

Faculty of Advanced Engineering, Chiba Institute of Technology, Chiba 275-0016, Japan.

出版信息

Int J Mol Sci. 2020 Mar 31;21(7):2406. doi: 10.3390/ijms21072406.

Abstract

Excessive accumulation of polyamines causes cytotoxicity, including inhibition of cell growth and a decrease in viability. We investigated the mechanism of cytotoxicity caused by spermidine accumulation under various conditions using an strain deficient in spermidine acetyltransferase (SAT), a key catabolic enzyme in controlling polyamine levels. Due to the excessive accumulation of polyamines by the addition of exogenous spermidine to the growth medium, cell growth and viability were markedly decreased through translational repression of specific proteins [RMF (ribosome modulation factor) and Fis (rRNA transcription factor) etc.] encoded by members of polyamine modulon, which are essential for cell growth and viability. In particular, synthesis of proteins that have unusual locations of the Shine-Dalgarno (SD) sequence in their mRNAs was inhibited. In order to elucidate the molecular mechanism of cytotoxicity by the excessive accumulation of spermidine, the spermidine-dependent structural change of the bulged-out region in the mRNA at the initiation site of the mRNA was examined using NMR analysis. It was suggested that the structure of the mRNA bulged-out region is affected by excess spermidine, so the SD sequence of the mRNA cannot approach initiation codon AUG.

摘要

多胺的过度积累会导致细胞毒性,包括抑制细胞生长和降低存活率。我们使用一种精脒乙酰转移酶(SAT)缺陷的菌株研究了在各种条件下由精脒积累引起的细胞毒性的机制,SAT 是控制多胺水平的关键代谢酶。由于在生长培养基中外源添加精脒会导致多胺的过度积累,通过对多胺调节子成员编码的特定蛋白质(如 RMF(核糖体调节因子)和 Fis(rRNA 转录因子)等)的翻译抑制,细胞生长和活力明显下降,这些蛋白质对细胞生长和活力是必需的。特别是,编码具有其 mRNA 中 SD 序列异常位置的蛋白质的合成被抑制。为了阐明精脒过度积累引起的细胞毒性的分子机制,我们使用 NMR 分析研究了在 mRNA 起始位点 mRNA 膨出区域中精脒依赖性的结构变化。结果表明,mRNA 膨出区域的结构受过多精脒的影响,因此 mRNA 的 SD 序列不能接近起始密码子 AUG。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7c9/7177335/d58b22c4f989/ijms-21-02406-g001.jpg

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