Biotechnology Center in Southern Taiwan, Academia Sinica, Tainan 711, Taiwan.
Biotechnology Center in Southern Taiwan, Academia Sinica, Tainan 711, Taiwan; Agricultural Biotechnology Research Center, Academia Sinica, Taipei 115, Taiwan.
Plant Sci. 2023 Oct;335:111822. doi: 10.1016/j.plantsci.2023.111822. Epub 2023 Aug 14.
In plants and other eukaryotes, precise selection of translation initiation site (TIS) on mRNAs shapes the proteome in response to cellular events or environmental cues. The canonical translation of mRNAs initiates at a 5' proximal AUG codon in a favorable context. However, the coding and non-coding regions of plant genomes contain numerous unannotated alternative AUG and non-AUG TISs. Determining how and why these unexpected and prevalent TISs are activated in plants has emerged as an exciting research area. In this review, we focus on the selection of plant TISs and highlight studies that revealed previously unannotated TISs used in vivo via comparative genomics and genome-wide profiling of ribosome positioning and protein N-terminal ends. The biological signatures of non-AUG TIS-initiated open reading frames (ORFs) in plants are also discussed. We describe what is understood about cis-regulatory RNA elements and trans-acting eukaryotic initiation factors (eIFs) in the site selection for translation initiation by featuring the findings in plants along with supporting findings in non-plant species. The prevalent, unannotated TISs provide a hidden reservoir of ORFs that likely help reshape plant proteomes in response to developmental or environmental cues. These findings underscore the importance of understanding the mechanistic basis of TIS selection to functionally annotate plant genomes, especially for crops with large genomes.
在植物和其他真核生物中,mRNA 上翻译起始位点(TIS)的精确选择可响应细胞事件或环境线索来塑造蛋白质组。mRNA 的典型翻译起始于有利上下文下的 5'近端 AUG 密码子。然而,植物基因组的编码和非编码区域包含许多未注释的替代 AUG 和非 AUG TIS。确定这些意外且普遍存在的 TIS 在植物中如何以及为何被激活已成为一个令人兴奋的研究领域。在这篇综述中,我们重点关注植物 TIS 的选择,并强调通过比较基因组学和核糖体定位及蛋白质 N 末端的全基因组分析来揭示体内使用的先前未注释 TIS 的研究。还讨论了植物中非 AUG TIS 起始的开放阅读框(ORF)的生物学特征。我们通过突出植物中的发现并辅以非植物物种中的支持性发现,描述了顺式调节 RNA 元件和反式作用真核起始因子(eIF)在翻译起始位点选择中的作用,以了解 TIS 选择的机制基础。普遍存在的、未注释的 TIS 提供了一个隐藏的 ORF 库,这些 ORF 可能有助于响应发育或环境线索重塑植物蛋白质组。这些发现强调了理解 TIS 选择的机制基础以对植物基因组进行功能注释的重要性,特别是对于具有大基因组的作物。