Grainger Richard J, Beggs Jean D
Wellcome Trust Centre for Cell Biology, University of Edinburgh, King's Buildings, Mayfield Road, Edinburgh EH9 3JR, United Kingdom.
RNA. 2005 May;11(5):533-57. doi: 10.1261/rna.2220705.
Pre-messenger RNA (pre-mRNA) splicing is a central step in gene expression. Lying between transcription and protein synthesis, pre-mRNA splicing removes sequences (introns) that would otherwise disrupt the coding potential of intron-containing transcripts. This process takes place in the nucleus, catalyzed by a large RNA-protein complex called the spliceosome. Prp8p, one of the largest and most highly conserved of nuclear proteins, occupies a central position in the catalytic core of the spliceosome, and has been implicated in several crucial molecular rearrangements that occur there. Recently, Prp8p has also come under the spotlight for its role in the inherited human disease, Retinitis Pigmentosa.Prp8 is unique, having no obvious homology to other proteins; however, using bioinformatical analysis we reveal the presence of a conserved RNA recognition motif (RRM), an MPN/JAB domain and a putative nuclear localization signal (NLS). Here, we review biochemical and genetical data, mostly related to the human and yeast proteins, that describe Prp8's central role within the spliceosome and its molecular interactions during spliceosome formation, as splicing proceeds, and in post-splicing complexes.
信使前体RNA(pre-mRNA)剪接是基因表达的核心步骤。pre-mRNA剪接介于转录和蛋白质合成之间,它去除那些否则会破坏含内含子转录本编码潜能的序列(内含子)。这个过程发生在细胞核中,由一种称为剪接体的大型RNA-蛋白质复合物催化。Prp8p是最大且最保守的核蛋白之一,在剪接体的催化核心中占据中心位置,并与发生在那里的几种关键分子重排有关。最近,Prp8p因其在遗传性人类疾病视网膜色素变性中的作用也受到了关注。Prp8是独特的,与其他蛋白质没有明显的同源性;然而,通过生物信息学分析,我们揭示了其存在一个保守的RNA识别基序(RRM)、一个MPN/JAB结构域和一个假定的核定位信号(NLS)。在这里,我们综述主要与人类和酵母蛋白相关的生化和遗传学数据,这些数据描述了Prp8在剪接体中的核心作用及其在剪接体形成过程中、剪接进行时以及剪接后复合物中的分子相互作用。