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拟南芥 XIPOTL1 的翻译调控受磷酸胆碱水平的影响,通过进化上保守的上游开放阅读框 30 进行调节。

Translational regulation of Arabidopsis XIPOTL1 is modulated by phosphocholine levels via the phylogenetically conserved upstream open reading frame 30.

机构信息

Laboratorio Nacional de Genómica para la Biodiversidad, Cinvestav Irapuato, Irapuato, Guanajuato, México.

出版信息

J Exp Bot. 2012 Sep;63(14):5203-21. doi: 10.1093/jxb/ers180. Epub 2012 Jul 12.

Abstract

In Arabidopsis thaliana, XIPOTL1 encodes a phosphoethanolamine N-methyltransferase with a central role in phosphatidylcholine biosynthesis via the methylation pathway. To gain further insights into the mechanisms that regulate XIPOTL1 expression, the effect of upstream open reading frame 30 (uORF30) on the translation of the major ORF (mORF) in the presence or absence of endogenous choline (Cho) or phosphocholine (PCho) was analysed in Arabidopsis seedlings. Dose-response assays with Cho or PCho revealed that both metabolites at physiological concentrations are able to induce the translational repression of a mORF located downstream of the intact uORF30, without significantly altering its mRNA levels. PCho profiles showed a correlation between increased endogenous PCho levels and translation efficiency of a uORF30-containing mORF, while no correlation was detectable with Cho levels. Enhanced expression of a uORF30-containing mORF and decreased PCho levels were observed in the xipotl1 mutant background relative to wild type, suggesting that PCho is the true mediator of uORF30-driven translational repression. In Arabidopsis, endogenous PCho content increases during plant development and affects root meristem size, cell division, and cell elongation. Because XIPOTL1 is preferentially expressed in Arabidopsis root tips, higher PCho levels are found in roots than shoots, and there is a higher sensitivity of this tissue to translational uORF30-mediated control, it is proposed that root tips are the main site for PCho biosynthesis in Arabidopsis.

摘要

在拟南芥中,XIPOTL1 编码一种磷酸乙醇胺 N-甲基转移酶,在通过甲基化途径合成磷脂酰胆碱中起核心作用。为了进一步深入了解调节 XIPOTL1 表达的机制,分析了上游开放阅读框 30(uORF30)在存在或不存在内源性胆碱(Cho)或磷酸胆碱(PCho)的情况下对主要 ORF(mORF)翻译的影响。在拟南芥幼苗中,用 Cho 或 PCho 进行剂量反应试验表明,两种代谢物在生理浓度下都能够诱导完整的 uORF30 下游的 mORF 翻译抑制,而不会显著改变其 mRNA 水平。PCho 谱显示,内源 PCho 水平的增加与包含 uORF30 的 mORF 的翻译效率之间存在相关性,而与 Cho 水平没有相关性。与野生型相比,xipotl1 突变体背景中观察到包含 uORF30 的 mORF 的表达增强和 PCho 水平降低,表明 PCho 是 uORF30 驱动翻译抑制的真正介质。在拟南芥中,内源 PCho 含量在植物发育过程中增加,并影响根分生组织的大小、细胞分裂和细胞伸长。由于 XIPOTL1 在拟南芥根尖中优先表达,因此根中的 PCho 水平高于茎,并且该组织对翻译 uORF30 介导的控制的敏感性更高,因此提出根尖是拟南芥中 PCho 生物合成的主要部位。

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