The Minimum Open Reading Frame, AUG-Stop, Induces Boron-Dependent Ribosome Stalling and mRNA Degradation

上游开放阅读框 生物 打开阅读框 五素未翻译区 翻译(生物学) 核糖体 信使核糖核酸 基因 遗传学 核糖核酸 细胞生物学 真核翻译 肽序列
作者
M. Tanaka,Naoyuki Sotta,Yusuke Yamazumi,Yui Yamashita,Kyoko Miwa,Katsunori Murota,Yukako Chiba,Masami Yokota Hirai,Tetsu Akiyama,Hitoshi Onouchi,Satoshi Naito,Toru Fujiwara
出处
期刊:The Plant Cell [Oxford University Press]
卷期号:28 (11): 2830-2849 被引量:121
标识
DOI:10.1105/tpc.16.00481
摘要

Upstream open reading frames (uORFs) are often translated ahead of the main ORF of a gene and regulate gene expression, sometimes in a condition-dependent manner, but such a role for the minimum uORF (hereafter referred to as AUG-stop) in living organisms is currently unclear. Here, we show that AUG-stop plays an important role in the boron (B)-dependent regulation of NIP5;1, encoding a boric acid channel required for normal growth under low B conditions in Arabidopsis thaliana. High B enhanced ribosome stalling at AUG-stop, which was accompanied by the suppression of translation and mRNA degradation. This mRNA degradation was promoted by an upstream conserved sequence present near the 5′-edge of the stalled ribosome. Once ribosomes translate a uORF, reinitiation of translation must take place in order for the downstream ORF to be translated. Our results suggest that reinitiation of translation at the downstream NIP5;1 ORF is enhanced under low B conditions. A genome-wide analysis identified two additional B-responsive genes, SKU5 and the transcription factor gene ABS/NGAL1, which were regulated by B-dependent ribosome stalling through AUG-stop. This regulation was reproduced in both plant and animal transient expression and cell-free translation systems. These findings suggest that B-dependent AUG-stop-mediated regulation is common in eukaryotes.
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