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一种基于双上游开放阅读框的自动调节电路,控制多胺响应性翻译。

A dual upstream open reading frame-based autoregulatory circuit controlling polyamine-responsive translation.

作者信息

Hanfrey Colin, Elliott Katherine A, Franceschetti Marina, Mayer Melinda J, Illingworth Crista, Michael Anthony J

机构信息

Institute of Food Research, Norwich Research Park, Colney, Norwich NR4 7UA, United Kingdom.

出版信息

J Biol Chem. 2005 Nov 25;280(47):39229-37. doi: 10.1074/jbc.M509340200. Epub 2005 Sep 21.

Abstract

A novel form of translational regulation is described for the key polyamine biosynthetic enzyme S-adenosylmethionine decarboxylase (AdoMetDC). Plant AdoMetDC mRNA 5' leaders contain two highly conserved overlapping upstream open reading frames (uORFs): the 5' tiny and 3' small uORFs. We demonstrate that the small uORF-encoded peptide is responsible for constitutively repressing downstream translation of the AdoMetDC proenzyme ORF in the absence of increased polyamine levels. This first example of a sequence-dependent uORF to be described in plants is also functional in Saccharomyces cerevisiae. The tiny uORF is required for normal polyamine-responsive AdoMetDC mRNA translation, and we propose that this is achieved by control of ribosomal recognition of the occluded small uORF, either by ribosomal leaky scanning or by programmed -1 frameshifting. In vitro expression demonstrated that both the tiny and the small uORFs are translated. This tiny/small uORF configuration is highly conserved from moss to Arabidopsis thaliana, and a more diverged tiny/small uORF arrangement is found in the AdoMetDC mRNA 5' leader of the single-celled green alga Chlamydomonas reinhardtii, indicating an ancient origin for the uORFs.

摘要

一种针对关键多胺生物合成酶S-腺苷甲硫氨酸脱羧酶(AdoMetDC)的新型翻译调控形式被描述。植物AdoMetDC mRNA的5'前导序列包含两个高度保守的重叠上游开放阅读框(uORF):5'微小uORF和3'小uORF。我们证明,在多胺水平没有升高的情况下,小uORF编码的肽负责组成性地抑制AdoMetDC酶原ORF的下游翻译。这个在植物中被描述的序列依赖性uORF的第一个例子在酿酒酵母中也有功能。微小uORF是正常的多胺反应性AdoMetDC mRNA翻译所必需的,我们提出这是通过核糖体对被遮挡的小uORF的识别控制来实现的,要么通过核糖体漏扫描,要么通过程序性-1移码。体外表达表明微小uORF和小uORF都被翻译。这种微小/小uORF结构从苔藓到拟南芥都高度保守,并且在单细胞绿藻莱茵衣藻的AdoMetDC mRNA 5'前导序列中发现了一种更为分化的微小/小uORF排列,这表明uORF起源古老。

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