Department of Biochemistry, Stanford University School of Medicine, Stanford, California, United States of America.
PLoS One. 2010 Sep 10;5(9):e12671. doi: 10.1371/journal.pone.0012671.
The vast landscape of RNA-protein interactions at the heart of post-transcriptional regulation remains largely unexplored. Indeed it is likely that, even in yeast, a substantial fraction of the regulatory RNA-binding proteins (RBPs) remain to be discovered. Systematic experimental methods can play a key role in discovering these RBPs--most of the known yeast RBPs lack RNA-binding domains that might enable this activity to be predicted. We describe here a proteome-wide approach to identify RNA-protein interactions based on in vitro binding of RNA samples to yeast protein microarrays that represent over 80% of the yeast proteome. We used this procedure to screen for novel RBPs and RNA-protein interactions. A complementary mass spectrometry technique also identified proteins that associate with yeast mRNAs. Both the protein microarray and mass spectrometry methods successfully identify previously annotated RBPs, suggesting that other proteins identified in these assays might be novel RBPs. Of 35 putative novel RBPs identified by either or both of these methods, 12, including 75% of the eight most highly-ranked candidates, reproducibly associated with specific cellular RNAs. Surprisingly, most of the 12 newly discovered RBPs were enzymes. Functional characteristics of the RNA targets of some of the novel RBPs suggest coordinated post-transcriptional regulation of subunits of protein complexes and a possible link between mRNA trafficking and vesicle transport. Our results suggest that many more RBPs still remain to be identified and provide a set of candidates for further investigation.
RNA 与蛋白质相互作用的广阔领域位于转录后调控的核心,但其很大程度上仍未被探索。事实上,即使在酵母中,可能仍有相当一部分的调控 RNA 结合蛋白 (RBP) 有待发现。系统的实验方法可以在发现这些 RBP 方面发挥关键作用——大多数已知的酵母 RBP 缺乏可能使这种活性得以预测的 RNA 结合域。我们在这里描述了一种基于体外 RNA 样本与代表酵母蛋白质组 80%以上的酵母蛋白质微阵列结合的全蛋白质组方法,用于鉴定 RNA-蛋白质相互作用。我们使用此程序筛选新型 RBP 和 RNA-蛋白质相互作用。互补的质谱技术也鉴定了与酵母 mRNA 相关的蛋白质。蛋白质微阵列和质谱方法都成功地鉴定了先前注释的 RBP,表明这些测定中鉴定的其他蛋白质可能是新型 RBP。在这两种方法中的一种或两种方法鉴定的 35 个假定的新型 RBP 中,有 12 个,包括 8 个排名最高的候选者中的 75%,与特定的细胞 RNA 可重复地结合。令人惊讶的是,新发现的 RBP 中大多数是酶。一些新型 RBP 的 RNA 靶标功能特征表明蛋白复合物亚基的协调转录后调控以及 mRNA 易位与囊泡运输之间的可能联系。我们的结果表明,仍有更多的 RBP 有待发现,并为进一步研究提供了一组候选者。