Graduate School of Agricultural and Life Science, University of Tokyo, Tokyo, 113-8657, Japan.
School of Biosciences, Cardiff University, Cardiff, CF10 3AX, UK.
Plant J. 2021 Jun;106(5):1455-1467. doi: 10.1111/tpj.15248. Epub 2021 Apr 26.
We previously reported that ribosome stalling at AUG-stop sequences in the 5'-untranslated region plays a critical role in regulating the expression of Arabidopsis thaliana NIP5;1, which encodes a boron uptake transporter, in response to boron conditions in media. This ribosome stalling is triggered specifically by boric acid, but the mechanisms are unknown. Although upstream open reading frames (uORFs) are known in many cases to regulate translation through peptides encoded by the uORF, AUG-stop stalling does not involve any peptide synthesis. The unique feature of AUG-stops - that termination follows immediately after initiation - suggests a possible effect of boron on the translational process itself. However, the generality of AUG-stop-mediated translational regulation and the effect of boron on translation at the genome scale are not clear. Here, we conducted a ribosome profiling analysis to reveal the genome-wide regulation of translation in response to boron conditions in A. thaliana shoots. We identified hundreds of translationally regulated genes that function in various biological processes. Under high-boron conditions, transcripts with reduced translation efficiency were rich in uORFs, highlighting the importance of uORF-mediated translational regulation. We found 673 uORFs that had more frequent ribosome association. Moreover, transcripts that were translationally downregulated under high-boron conditions were rich in minimum uORFs (AUG-stops), suggesting that AUG-stops play a global role in the boron response. Metagene analysis revealed that boron increased the ribosome occupancy of stop codons, indicating that this element is involved in global translational termination processes.
我们之前报道过,核糖体在 5'非翻译区的 AUG-终止序列处的停滞在调节拟南芥 NIP5;1 的表达中起着关键作用,NIP5;1 编码一种硼吸收转运蛋白,以响应培养基中的硼条件。这种核糖体停滞是由硼酸特异性触发的,但机制尚不清楚。虽然在上游开放阅读框 (uORF) 的许多情况下,通过 uORF 编码的肽来调节翻译,但 AUG-终止并不涉及任何肽合成。AUG-终止的独特特征 - 终止紧随起始之后 - 表明硼可能对翻译过程本身有影响。然而,AUG-停止介导的翻译调节的普遍性以及硼对基因组规模翻译的影响尚不清楚。在这里,我们进行了核糖体分析,以揭示拟南芥芽对硼条件的翻译的全基因组调节。我们鉴定了数百个在各种生物过程中起作用的翻译调控基因。在高硼条件下,翻译效率降低的转录本富含 uORF,突出了 uORF 介导的翻译调节的重要性。我们发现 673 个 uORF 与核糖体的结合更频繁。此外,在高硼条件下翻译下调的转录本富含最小 uORF(AUG-终止),这表明 AUG-终止在硼响应中起全局作用。基因图谱分析表明,硼增加了终止密码子的核糖体占有率,表明该元件参与全局翻译终止过程。