LaCava John, Houseley Jonathan, Saveanu Cosmin, Petfalski Elisabeth, Thompson Elizabeth, Jacquier Alain, Tollervey David
Wellcome Trust Centre for Cell Biology, University of Edinburgh, Edinburgh EH9 3JR, UK.
Cell. 2005 Jun 3;121(5):713-24. doi: 10.1016/j.cell.2005.04.029.
The exosome complex of 3'-5' exonucleases participates in RNA maturation and quality control and can rapidly degrade RNA-protein complexes in vivo. However, the purified exosome showed weak in vitro activity, indicating that rapid RNA degradation requires activating cofactors. This work identifies a nuclear polyadenylation complex containing a known exosome cofactor, the RNA helicase Mtr4p; a poly(A) polymerase, Trf4p; and a zinc knuckle protein, Air2p. In vitro, the Trf4p/Air2p/Mtr4p polyadenylation complex (TRAMP) showed distributive RNA polyadenylation activity. The presence of the exosome suppressed poly(A) tail addition, while TRAMP stimulated exosome degradation through structured RNA substrates. In vivo analyses showed that TRAMP is required for polyadenylation and degradation of rRNA and snoRNA precursors that are characterized exosome substrates. Poly(A) tails stimulate RNA degradation in bacteria, suggesting that this is their ancestral function. We speculate that this function was maintained in eukaryotic nuclei, while cytoplasmic mRNA poly(A) tails acquired different roles in translation.
3'-5'核酸外切酶的外泌体复合物参与RNA成熟和质量控制,并且能够在体内快速降解RNA-蛋白质复合物。然而,纯化的外泌体在体外活性较弱,这表明快速的RNA降解需要激活辅因子。这项研究鉴定出一种核聚腺苷酸化复合物,它包含一种已知的外泌体辅因子——RNA解旋酶Mtr4p、一种聚腺苷酸聚合酶Trf4p和一种锌指蛋白Air2p。在体外,Trf4p/Air2p/Mtr4p聚腺苷酸化复合物(TRAMP)表现出分布性的RNA聚腺苷酸化活性。外泌体的存在抑制了聚腺苷酸尾的添加,而TRAMP通过结构化RNA底物刺激外泌体降解。体内分析表明,TRAMP是rRNA和snoRNA前体(典型的外泌体底物)聚腺苷酸化和降解所必需的。聚腺苷酸尾在细菌中刺激RNA降解,这表明这是它们的原始功能。我们推测这种功能在真核细胞核中得以保留,而细胞质mRNA的聚腺苷酸尾在翻译中获得了不同的作用。