Maquat L E, Li X
Department of Biochemistry and Biophysics, School of Medicine and Dentistry, University of Rochester, New York 14642, USA.
RNA. 2001 Mar;7(3):445-56. doi: 10.1017/s1355838201002229.
Nonsense-mediated decay (NMD), also called mRNA surveillance, is an evolutionarily conserved pathway that degrades mRNAs that prematurely terminate translation. To date, the pathway in mammalian cells has been shown to depend on the presence of a cis-acting destabilizing element that usually consists of an exon-exon junction generated by the process of pre-mRNA splicing. Whether or not mRNAs that derive from naturally intronless genes, that is, mRNAs not formed by the process of splicing, are also subject to NMD has yet to be investigated. The possibility of NMD is certainly reasonable considering that mRNAs of Saccharomyces cerevisiae are subject to NMD even though most derive from naturally intronless genes. In fact, mRNAs of S. cerevisiae generally harbor a loosely defined splicing-independent destabilizing element that has been proposed to function in NMD analogously to the spliced exon-exon junction of mammalian mRNAs. Here, we demonstrate that nonsense codons introduced into naturally intronless genes encoding mouse heat shock protein 70 or human histone H4 fail to elicit NMD. Failure is most likely because each mRNA lacks a cis-acting destabilizing element, because insertion of a spliceable intron a sufficient distance downstream of a nonsense codon within either gene is sufficient to elicit NMD.
无义介导的衰变(NMD),也称为mRNA监测,是一种进化上保守的途径,可降解过早终止翻译的mRNA。迄今为止,已证明哺乳动物细胞中的该途径依赖于顺式作用不稳定元件的存在,该元件通常由前体mRNA剪接过程产生的外显子-外显子连接组成。源自天然无内含子基因的mRNA,即不是通过剪接过程形成的mRNA,是否也会受到NMD的影响,还有待研究。考虑到酿酒酵母的mRNA即使大多数源自天然无内含子基因也会受到NMD的影响,NMD的可能性当然是合理的。事实上,酿酒酵母的mRNA通常含有一个定义松散的不依赖剪接的不稳定元件,有人提出该元件在NMD中的作用类似于哺乳动物mRNA的剪接外显子-外显子连接。在这里,我们证明引入编码小鼠热休克蛋白70或人类组蛋白H4的天然无内含子基因中的无义密码子不会引发NMD。失败很可能是因为每个mRNA都缺乏顺式作用不稳定元件,因为在任何一个基因的无义密码子下游足够远的位置插入一个可剪接的内含子就足以引发NMD。