Department of Medical Genome Sciences, Graduate School of Frontier Sciences, the University of Tokyo, 5-1-5 Kashiwanoha, Kashiwa, Chiba 277-8562, Japan.
Nucleic Acids Res. 2011 Mar;39(6):1967-79. doi: 10.1093/nar/gkq949. Epub 2010 Nov 9.
Ultraconservation, defined as perfect human-to-rodent sequence identity at least 200-bp long, is a strong indicator of evolutionary and functional importance and has been explored extensively at the genome level. However, it has not been investigated at the transcript level, where such extreme conservation might highlight loci with important post-transcriptional regulatory roles. We present 96 ultraconserved cDNA segments (UCSs), stretches of human mature mRNAs that match identically with orthologous regions in the mouse and rat genomes. UCSs can span multiple exons, a feature we leverage here to elucidate the role of ultraconservation in post-transcriptional regulation. UCS sites are implicated in functions at essentially every post-transcriptional stage: pre-mRNA splicing and degradation through alternative splicing and nonsense-mediated decay (AS-NMD), mature mRNA silencing by miRNA, fast mRNA decay rate and translational repression by upstream AUGs. We also found UCSs to exhibit resistance to formation of RNA secondary structure. These multiple layers of regulation underscore the importance of the UCS-containing genes as key global RNA processing regulators, including members of the serine/arginine-rich protein and heterogeneous nuclear ribonucleoprotein (hnRNP) families of essential splicing regulators. The discovery of UCSs shed new light on the multifaceted, fine-tuned and tight post-transcriptional regulation of gene families as conserved through the majority of the mammalian lineage.
超保守性定义为至少 200 个碱基对长的人类与啮齿动物序列完全一致,是进化和功能重要性的强有力指标,在基因组水平上得到了广泛的探索。然而,在转录水平上还没有进行研究,在转录水平上,这种极端的保守性可能突出了具有重要转录后调控作用的基因座。我们提出了 96 个超保守 cDNA 片段(UCS),这些片段是人成熟 mRNA 的延伸,与小鼠和大鼠基因组中的同源区域完全匹配。UCS 可以跨越多个外显子,我们在这里利用这一特性来阐明超保守性在转录后调控中的作用。UCS 位点涉及到几乎所有转录后阶段的功能:通过选择性剪接和无意义介导的降解(AS-NMD)进行前体 mRNA 剪接和降解、miRNA 对成熟 mRNA 的沉默、上游 AUG 对 mRNA 快速降解率和翻译抑制的作用。我们还发现 UCS 表现出抵抗 RNA 二级结构形成的能力。这些多层次的调控突显了 UCS 包含的基因作为关键的全局 RNA 加工调节剂的重要性,包括丝氨酸/精氨酸丰富蛋白和异质核核糖核蛋白(hnRNP)家族的剪接调节剂。UCS 的发现为通过大多数哺乳动物谱系保守的基因家族的多方面、精细和紧密的转录后调控提供了新的视角。