Archer Stuart K, Luu Van-Duc, de Queiroz Rafael A, Brems Stefanie, Clayton Christine
Zentrum für Molekulare Biologie Heidelberg, DKFZ-ZMBH Allianz, Heidelberg, Germany.
PLoS Pathog. 2009 Aug;5(8):e1000565. doi: 10.1371/journal.ppat.1000565. Epub 2009 Aug 28.
Many genes that are required at specific points in the cell cycle exhibit cell cycle-dependent expression. In the early-diverging model eukaryote and important human pathogen Trypanosoma brucei, regulation of gene expression in the cell cycle and other processes is almost entirely post-transcriptional. Here, we show that the T. brucei RNA-binding protein PUF9 stabilizes certain transcripts during S-phase. Target transcripts of PUF9--LIGKA, PNT1 and PNT2--were identified by affinity purification with TAP-tagged PUF9. RNAi against PUF9 caused an accumulation of cells in G2/M phase and unexpectedly destabilized the PUF9 target mRNAs, despite the fact that most known Puf-domain proteins promote degradation of their target mRNAs. The levels of the PUF9-regulated transcripts were cell cycle dependent, peaking in mid- to late- S-phase, and this effect was abolished when PUF9 was targeted by RNAi. The sequence UUGUACC was over-represented in the 3' UTRs of PUF9 targets; a point mutation in this motif abolished PUF9-dependent stabilization of a reporter transcript carrying the PNT1 3' UTR. LIGKA is involved in replication of the kinetoplast, and here we show that PNT1 is also kinetoplast-associated and its over-expression causes kinetoplast-related defects, while PNT2 is localized to the nucleus in G1 phase and redistributes to the mitotic spindle during mitosis. PUF9 targets may constitute a post-transcriptional regulon, encoding proteins involved in temporally coordinated replicative processes in early G2 phase.
许多在细胞周期特定阶段发挥作用的基因呈现出细胞周期依赖性表达。在早期分化的模式真核生物及重要的人类病原体布氏锥虫中,细胞周期及其他过程中的基因表达调控几乎完全是转录后调控。在此,我们表明布氏锥虫RNA结合蛋白PUF9在S期稳定某些转录本。通过用TAP标签标记的PUF9进行亲和纯化,鉴定出PUF9的靶转录本——LIGKA、PNT1和PNT2。尽管大多数已知的Puf结构域蛋白会促进其靶mRNA的降解,但针对PUF9的RNA干扰导致细胞在G2/M期积累,并且意外地使PUF9靶mRNA不稳定。PUF9调控的转录本水平具有细胞周期依赖性,在S期中期到后期达到峰值,当通过RNA干扰靶向PUF9时,这种效应消失。序列UUGUACC在PUF9靶标的3' UTR中过度富集;该基序中的一个点突变消除了携带PNT1 3' UTR的报告转录本的PUF9依赖性稳定性。LIGKA参与动基体的复制,在此我们表明PNT1也与动基体相关,其过表达会导致动基体相关缺陷,而PNT2在G1期定位于细胞核,并在有丝分裂期间重新分布到有丝分裂纺锤体。PUF9靶标可能构成一个转录后调控子,编码参与G2期早期时间协调复制过程的蛋白质。