Lu Shihua, Cullen Bryan R
Department of Molecular Genetics and Microbiology, Duke University Medical Center, Durham, North Carolina 27710, USA.
RNA Biol. 2004 May;1(1):42-7. Epub 2004 May 8.
The subcellular localization of the nonsense mediated decay (NMD) of mRNA transcripts bearing premature termination codons has been controversial. Recently, it has been demonstrated that RNA tethering of key mediators of NMD, including human UPF3B, accurately recreates NMD. Here, we have used tethered UPF3B, combined with regulation of nuclear mRNA export using the retroviral Rev/RRE system, to examine where UPF3B-mediated mRNA degradation occurs. Our data clearly demonstrate that nuclear mRNA export is required for UPF3B-mediated degradation and moreover show that this degradation is exclusively cytoplasmic, despite the fact that the UPF3B fusion protein used is a nucleocytoplasmic shuttle protein localized predominantly to the nucleus. Moreover, exclusively cytoplasmic NMD occurred whether the target mRNA was exported via the retroviral Rev/RRE pathway or via the Tap: Nxt pathway used by most cellular mRNAs. These data may suggest that truly nuclear NMD, if it occurs, is at least in part mechanistically distinct from cytoplasmic NMD.
携带提前终止密码子的mRNA转录本的无义介导衰变(NMD)的亚细胞定位一直存在争议。最近,有研究表明,包括人UPF3B在内的NMD关键介质的RNA拴系能够准确重现NMD。在这里,我们使用拴系的UPF3B,并结合使用逆转录病毒Rev/RRE系统对核mRNA输出的调控,来研究UPF3B介导的mRNA降解发生的位置。我们的数据清楚地表明,核mRNA输出是UPF3B介导的降解所必需的,而且还表明这种降解完全发生在细胞质中,尽管所使用的UPF3B融合蛋白是一种主要定位于细胞核的核质穿梭蛋白。此外,无论靶mRNA是通过逆转录病毒Rev/RRE途径输出,还是通过大多数细胞mRNA所使用的Tap:Nxt途径输出,NMD都仅在细胞质中发生。这些数据可能表明,真正的核NMD(如果存在的话)至少在部分机制上与细胞质NMD不同。