Group Intracellular Transport and RNA Biology, Institute of Structural Biology, Helmholtz Zentrum München- German Research Center for Environmental Health, 85764 Neuherberg, Germany.
Proc Natl Acad Sci U S A. 2013 Dec 24;110(52):E5049-58. doi: 10.1073/pnas.1315289111. Epub 2013 Dec 9.
Directional transport of mRNA is a universal feature in eukaryotes, requiring the assembly of motor-dependent RNA-transport particles. The cytoplasmic transport of mRNAs is preceded by the nuclear assembly of pre-messenger ribonucleoprotein particles (mRNPs). In budding yeast, the asymmetric synthesis of HO 1 (ASH1) pre-mRNP originates already cotranscriptionally and passes through the nucleolus before its nuclear export. The nucleolar localization of ASH1 mRNA protein 1 (Loc1p) is required for efficient ASH1 mRNA localization. Immunoprecipitation experiments have revealed that Loc1p forms cocomplexes with other components of the ASH1 transport complex. However, it remains unclear how Loc1p is recruited into this mRNP and why Loc1p is important for ASH1 mRNA localization. Here we demonstrate that Loc1p undergoes a direct and specific interaction with the ASH1 mRNA-binding Swi5p-dependent HO expression protein 2 (She2p). This cocomplex shows higher affinity and specificity for RNA bearing localization elements than the individual proteins. It also stabilizes the otherwise transient binding of She2p to ASH1 mRNA, suggesting that cooperative mRNA binding of Loc1p with She2p is the required nuclear function of Loc1p for ASH1 mRNA localization. After nuclear export, myosin-bound She3p joins the ASH1 mRNP to form a highly specific cocomplex with She2p and ASH1 mRNA. Because Loc1p is found only in the nucleus, it must be removed from the complex directly before or after export. In vitro and in vivo experiments indicate that the synergistic interaction of She2p and She3p displaces Loc1p from the ASH1 complex, allowing free Loc1p to rapidly reenter the nucle(ol)us. Together these findings suggest an ordered process of nuclear assembly and reorganization for the maturation of localizing ASH1 mRNPs.
mRNA 的定向运输是真核生物的普遍特征,需要组装依赖于马达的 RNA 运输颗粒。mRNAs 的细胞质运输之前是前信使核糖核蛋白颗粒 (mRNP) 的核组装。在芽殖酵母中,HO1(ASH1)前 mRNP 的不对称合成已经在共转录时发生,并在核输出之前穿过核仁。ASH1 mRNA 蛋白 1 (Loc1p) 的核仁定位对于有效的 ASH1 mRNA 定位是必需的。免疫沉淀实验表明,Loc1p 与 ASH1 运输复合物的其他成分形成共复合物。然而,尚不清楚 Loc1p 如何被招募到这个 mRNP 中,以及为什么 Loc1p 对 ASH1 mRNA 定位很重要。在这里,我们证明 Loc1p 与 ASH1 mRNA 结合的 Swi5p 依赖性 HO 表达蛋白 2 (She2p) 发生直接和特异性相互作用。这个共复合物对携带定位元件的 RNA 具有更高的亲和力和特异性,而不是单个蛋白。它还稳定了 She2p 与 ASH1 mRNA 之间原本短暂的结合,这表明 Loc1p 与 She2p 合作对 RNA 的共同结合是 Loc1p 对 ASH1 mRNA 定位的核功能所必需的。核输出后,肌球蛋白结合的 She3p 加入 ASH1 mRNP 形成与 She2p 和 ASH1 mRNA 高度特异性的共复合物。由于 Loc1p 仅在核内发现,因此它必须在出口前或出口后直接从复合物中去除。体外和体内实验表明,She2p 和 She3p 的协同相互作用将 Loc1p 从 ASH1 复合物中置换出来,使游离的 Loc1p 能够迅速重新进入核(仁)。这些发现共同表明,对于定位 ASH1 mRNP 的成熟,存在一个有序的核组装和重组过程。