Takahashi Shinya, Araki Yasuhiro, Sakuno Takeshi, Katada Toshiaki
Department of Physiological Chemistry, Graduate School of Pharmaceutical Sciences, University of Tokyo, Tokyo 113-0033, Japan.
EMBO J. 2003 Aug 1;22(15):3951-9. doi: 10.1093/emboj/cdg374.
Aberrant mRNAs containing premature termination codons (PTC-mRNAs) are degraded by a conserved surveillance system, referred to as the nonsense- mediated decay (NMD) pathway. Although NMD is reported to operate on the decapping and 5'-to-3' exonucleolytic decay of PTC-mRNAs without affecting deadenylation, a role for an opposite 3'-to-5' decay pathway remains largely unexplored. In this study, we have characterized the 3'-to-5' directed mRNA degradation in the yeast NMD pathway. PTC-mRNAs are stabilized in yeast cells lacking the components of 3'-to-5' mRNA-decay machinery. The 3'-to-5' directed degradation of PTC-mRNAs proceeds more rapidly than that of the PTC-free transcript, in a manner dependent on the cytoplasmic exosome and Upf proteins. Moreover, Upf1p, but not Upf2p, interacts physically with an N-terminal domain of Ski7p, although the interaction requires Upf2p. The efficiency of 3'-to-5' directed degradation of PTC-mRNAs is impaired by overexpression of Ski7p N-domain fragments that contain a sequence of the Upf1p-interaction region. These data suggest that the activation of 3'-to-5' directed NMD is mediated through the interaction between Upf1p and the Ski7p N domain.
含有提前终止密码子的异常信使核糖核酸(PTC - mRNA)会被一种保守的监控系统降解,该系统被称为无义介导的衰变(NMD)途径。尽管据报道NMD作用于PTC - mRNA的脱帽和5'至3'核酸外切酶衰变,而不影响去腺苷酸化,但相反的3'至5'衰变途径的作用在很大程度上仍未被探索。在这项研究中,我们已经对酵母NMD途径中3'至5'方向的信使核糖核酸降解进行了表征。PTC - mRNA在缺乏3'至5'信使核糖核酸衰变机制成分的酵母细胞中得到稳定。PTC - mRNA的3'至5'方向降解比无PTC的转录本的降解进行得更快,其方式依赖于细胞质外切体和Upf蛋白。此外,Upf1p而非Upf2p与Ski7p的N端结构域发生物理相互作用,尽管这种相互作用需要Upf2p。含有Upf1p相互作用区域序列的Ski7p N结构域片段的过表达会损害PTC - mRNA的3'至5'方向降解效率。这些数据表明,3'至5'方向的NMD激活是通过Upf1p与Ski7p N结构域之间的相互作用介导的。