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Fed-1(CAUU)4元件是一种5'非翻译区黑暗响应性mRNA不稳定元件,其功能独立于黑暗诱导的多核糖体解离。

The Fed-1 (CAUU)4 element is a 5' UTR dark-responsive mRNA instability element that functions independently of dark-induced polyribosome dissociation.

作者信息

Bhat Sumana, Tang Li, Krueger Angela D, Smith Christopher L, Ford Sharon R, Dickey Lynn F, Petracek Marie E

机构信息

Department of Biochemistry and Molecular Biology, Oklahoma State University, 246 Noble Research Center, Stillwater, OK 74078, USA.

出版信息

Plant Mol Biol. 2004 Nov;56(5):761-73. doi: 10.1007/s11103-004-5109-8. Epub 2005 Mar 24.

Abstract

Darkness rapidly induces a decline in the stability and translation of the pea Ferredoxin-1 (Fed-1) mRNA in transgenic tobacco. Direct half-life measurement showed that mutation of the (CAUU)4 stabilizes Fed-1 mRNA in the dark. (CAUU)1, a feature more common in plant 5' UTRs than (CAUU)4, confers slight light-responsive mRNA accumulation. At least three but less than 11 CAUU repeats near the 5' end of the 5' UTR are required for full light-responsive accumulation. Furthermore, 26 nt of the 5' UTR, including the (CAUU)4 repeat, is sufficient to confer a significant approximately 2.5-fold increase in light-regulated mRNA accumulation when fused to the 5' end of a heterologous plant mRNA. A mutation of the (CAUU)4 repeat that compromises light-regulated mRNA stability changes in vitro the accessibility of the region to ribonuclease V1 and ribonuclease A suggesting the geometry formed by the repeat may be important for instability. Finally, dark-induced Fed-1 mRNA instability occurs even when most of the mRNA is retained on polyribosomes, and thus is likely an independent event regulated by darkness.

摘要

黑暗会迅速导致转基因烟草中豌豆铁氧还蛋白-1(Fed-1)mRNA的稳定性和翻译能力下降。直接半衰期测量表明,(CAUU)4的突变可在黑暗中稳定Fed-1 mRNA。(CAUU)1在植物5'非翻译区(UTR)中比(CAUU)4更为常见,它赋予了轻微的光响应性mRNA积累。5'UTR 5'端附近至少需要三个但少于11个CAUU重复序列才能实现完全的光响应性积累。此外,5'UTR的26个核苷酸,包括(CAUU)4重复序列,当与异源植物mRNA的5'端融合时,足以使光调节的mRNA积累显著增加约2.5倍。(CAUU)4重复序列的突变损害了光调节的mRNA稳定性,在体外改变了该区域对核糖核酸酶V1和核糖核酸酶A的可及性,这表明该重复序列形成的几何结构可能对不稳定性很重要。最后,即使大多数mRNA保留在多核糖体上,黑暗诱导的Fed-1 mRNA不稳定性仍会发生,因此这可能是一个由黑暗调节的独立事件。

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