Center for Plant Molecular Biology, University of Tübingen Tübingen, Germany.
Front Plant Sci. 2012 May 1;3:81. doi: 10.3389/fpls.2012.00081. eCollection 2012.
Alternative precursor mRNA splicing is a widespread phenomenon in multicellular eukaryotes and represents a major means for functional expansion of the transcriptome. While several recent studies have revealed an important link between splicing regulation and fundamental biological processes in plants, many important aspects, such as the underlying splicing regulatory mechanisms, are so far not well understood. Splicing decisions are in general based on a splicing code that is determined by the dynamic interplay of splicing-controlling factors and cis-regulatory elements. Several members of the group of heterogeneous nuclear ribonucleoprotein (hnRNP) proteins are well known regulators of splicing in animals and the comparatively few reports on some of their plant homologs revealed similar functions. This also applies to polypyrimidine tract-binding proteins, a thoroughly investigated class of hnRNP proteins with splicing regulatory functions in both animals and plants. Further examples from plants are auto- and cross-regulatory splicing circuits of glycine-rich RNA binding proteins and splicing enhancement by oligouridylate binding proteins. Besides their role in defining splice site choice, hnRNP proteins are also involved in multiple other steps of nucleic acid metabolism, highlighting the functional versatility of this group of proteins in higher eukaryotes.
可变剪接是真核生物中广泛存在的一种现象,是转录组功能扩展的主要方式。尽管最近的几项研究揭示了剪接调控与植物基本生物学过程之间的重要联系,但许多重要方面,如潜在的剪接调控机制,目前还了解甚少。剪接决策通常基于剪接编码,该编码由剪接调控因子和顺式调控元件的动态相互作用决定。异质核核糖核蛋白 (hnRNP) 蛋白组的几个成员是动物中剪接的已知调节剂,而关于其一些植物同源物的为数不多的报道揭示了类似的功能。这同样适用于多嘧啶 tract 结合蛋白,这是一类经过深入研究的 hnRNP 蛋白,在动物和植物中都具有剪接调控功能。植物中的其他例子是甘氨酸丰富的 RNA 结合蛋白的自动和交叉调控剪接回路,以及寡聚尿苷酸结合蛋白的剪接增强。hnRNP 蛋白除了在确定剪接位点选择方面发挥作用外,还参与核酸代谢的多个其他步骤,突出了该组蛋白质在高等真核生物中的功能多样性。