Chan Wai-Kin, Huang Lulu, Gudikote Jayanthi P, Chang Yao-Fu, Imam J Saadi, MacLean James A, Wilkinson Miles F
Department of Biochemistry and Molecular Biology, The University of Texas M.D. Anderson Cancer Center, 1515 Holcombe Boulevard, Houston, TX 77030, USA.
EMBO J. 2007 Apr 4;26(7):1820-30. doi: 10.1038/sj.emboj.7601628. Epub 2007 Mar 15.
The T-cell receptor (TCR) locus undergoes programmed rearrangements that frequently generate premature termination codons (PTCs). The PTC-bearing transcripts derived from such nonproductively rearranged genes are dramatically downregulated by the nonsense-mediated decay (NMD) pathway. Here, we show that depletion of the NMD factor UPF3b does not impair TCRbeta NMD, thereby distinguishing it from classical NMD. Depletion of the related factor UPF3a, by itself or in combination with UPF3b, also has no effect on TCRbeta NMD. Mapping experiments revealed the identity of TCRbeta sequences that elicit a switch to UPF3b dependence. This regulation is not a peculiarity of TCRbeta, as we identified many wild-type genes, including one essential for NMD, that transcribe NMD-targeted mRNAs whose downregulation is little or not affected by UPF3a and UPF3b depletion. We propose that we have uncovered an alternative branch of the NMD pathway that not only degrades aberrant mRNAs but also regulates normal mRNAs, including one that participates in a negative feedback loop controlling the magnitude of NMD.
T细胞受体(TCR)基因座会经历程序性重排,这种重排经常产生提前终止密码子(PTC)。源自此类无效重排基因的携带PTC的转录本会通过无义介导的衰变(NMD)途径大幅下调。在此,我们表明NMD因子UPF3b的缺失不会损害TCRβ的NMD,从而将其与经典NMD区分开来。相关因子UPF3a单独缺失或与UPF3b联合缺失对TCRβ的NMD也没有影响。定位实验揭示了引发向UPF3b依赖性转变的TCRβ序列的特征。这种调控并非TCRβ所特有,因为我们鉴定出许多野生型基因,包括一个对NMD至关重要的基因,它们转录出的NMD靶向mRNA的下调很少或不受UPF3a和UPF3b缺失的影响。我们提出,我们发现了NMD途径的一个替代分支,它不仅降解异常mRNA,还调控正常mRNA,包括一个参与控制NMD幅度的负反馈环的mRNA。