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hUPF2基因沉默可识别哺乳动物无义介导的mRNA降解的生理底物。

hUPF2 silencing identifies physiologic substrates of mammalian nonsense-mediated mRNA decay.

作者信息

Wittmann Jürgen, Hol Elly M, Jäck Hans-Martin

机构信息

Division of Molecular Immunology, Department of Internal Medicine III, Nikolaus Fiebiger Center, University of Erlangen-Nürnberg, Glückstrasse 6, D-91054 Erlangen, Germany.

出版信息

Mol Cell Biol. 2006 Feb;26(4):1272-87. doi: 10.1128/MCB.26.4.1272-1287.2006.

DOI:10.1128/MCB.26.4.1272-1287.2006
PMID:16449641
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1367210/
Abstract

Nonsense-mediated mRNA decay (NMD) is a conserved eukaryotic surveillance pathway that selectively degrades aberrant mRNAs with premature termination codons (PTCs). Although a small number of cases exist in mammals, where NMD controls levels of physiologic PTC transcripts, it is still unclear whether the engagement of NMD in posttranscriptional control of gene expression is a more prevalent phenomenon. To identify physiologic NMD substrates and to study how NMD silencing affects the overall dynamics of a cell, we stably down-regulated hUPF2, the human homolog of the yeast NMD factor UPF2, by RNA interference. As expected, hUPF2-silenced HeLa cells were impaired in their ability to recognize ectopically expressed aberrant PTC transcripts. Surprisingly, hUPF2 silencing did not affect cell growth and viability but clearly diminished phosphorylation of hUPF1, suggesting a role of hUPF2 in modulating NMD activity through phosphorylation of hUPF1. Genome-wide DNA microarray expression profiling identified 37 novel up-regulated and 57 down-regulated transcripts in hUPF2-silenced cells. About 60% of the up-regulated mRNAs carry typical NMD motifs. Hence, NMD is important not only for maintaining the transcriptome integrity by removing nonfunctional and aberrant PTC-bearing transcripts but also for posttranscriptional control of selected physiologic transcripts with NMD features.

摘要

无义介导的mRNA降解(NMD)是一种保守的真核生物监测途径,可选择性降解带有提前终止密码子(PTC)的异常mRNA。尽管在哺乳动物中有少数情况,即NMD控制生理性PTC转录本的水平,但NMD参与基因表达的转录后调控是否是一种更普遍的现象仍不清楚。为了鉴定生理性NMD底物并研究NMD沉默如何影响细胞的整体动态,我们通过RNA干扰稳定下调了酵母NMD因子UPF2的人类同源物hUPF2。正如预期的那样,hUPF2沉默的HeLa细胞识别异位表达的异常PTC转录本的能力受损。令人惊讶的是,hUPF2沉默并不影响细胞生长和活力,但明显降低了hUPF1的磷酸化,这表明hUPF2在通过hUPF1的磷酸化调节NMD活性中发挥作用。全基因组DNA微阵列表达谱分析确定了hUPF2沉默细胞中有37个新的上调转录本和57个下调转录本。约60%的上调mRNA带有典型的NMD基序。因此,NMD不仅对于通过去除无功能和异常的含PTC转录本来维持转录组完整性很重要,而且对于对具有NMD特征的选定生理性转录本进行转录后调控也很重要。

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