首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >A Genetic Screen Identifies PRP18a a Putative Second Step Splicing Factor Important for Alternative Splicing and a Normal Phenotype in Arabidopsis thaliana
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A Genetic Screen Identifies PRP18a a Putative Second Step Splicing Factor Important for Alternative Splicing and a Normal Phenotype in Arabidopsis thaliana

机译:遗传筛选确定PRP18a拟南芥拟南芥的一个重要的替代拼接和正常表型的重要的第二步剪接因子。

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摘要

Splicing of pre-mRNA involves two consecutive trans-esterification steps that take place in the spliceosome, a large dynamic ribonucleoprotein complex situated in the nucleus. In addition to core spliceosomal proteins, each catalytic step requires step-specific factors. Although the Arabidopsis thaliana genome encodes around 430 predicted splicing factors, functional information about these proteins is limited. In a forward genetic screen based on an alternatively-spliced GFP reporter gene in Arabidopsis thaliana, we identified a mutant impaired in putative step II factor PRP18a, which has not yet been investigated for its role in pre-mRNA splicing in plants. Step II entails cleavage at the 3′ splice site accompanied by ligation of the 5′ and 3′ exons and intron removal. In the prp18 mutant, splicing of a U2-type intron with non-canonical AT-AC splice sites in GFP pre-mRNA is reduced while splicing of a canonical GT-AG intron is enhanced, resulting in decreased levels of translatable GFP mRNA and GFP protein. These findings suggest that wild-type PRP18a may in some cases promote splicing at weak, non-canonical splice sites. Analysis of genome-wide changes in alternative splicing in the prp18a mutant identified numerous cases of intron retention and a preponderance of altered 3′ splice sites, suggesting an influence of PRP18a on 3′ splice site selection. The prp18a mutant featured short roots on synthetic medium and small siliques, illustrating that wild-type PRP18a function is needed for a normal phenotype. Our study expands knowledge of plant splicing factors and provides foundational information and resources for further functional studies of PRP18 proteins in plants.
机译:前mRNA的剪接涉及两个连续的酯交换步骤,这些步骤发生在剪接体中,剪接体是位于细胞核中的大型动态核糖核蛋白复合物。除了核心剪接体蛋白外,每个催化步骤都需要特定于步骤的因素。尽管拟南芥基因组编码约430个预测的剪接因子,但有关这些蛋白质的功能信息仍然有限。在基于拟南芥中一个可变剪接的GFP报告基因的正向遗传筛选中,我们鉴定了一个在假定的第II步因子PRP18a中受损的突变体,目前尚未对其在植物中mRNA剪接中的作用进行过研究。第二步需要在3'剪接位点切割,并连接5'和3'外显子并去除内含子。在prp18突变体中,减少了GFP pre-mRNA中具有非规范AT-AC剪接位点的U2型内含子的剪接,而增强了规范GT-AG内含子的剪接,导致可翻译的GFP mRNA和GFP的水平降低蛋白。这些发现表明,在某些情况下,野生型PRP18a可能会促进弱的非规范剪接位点的剪接。分析prp18a突变体中选择性剪接的全基因组变化确定了许多内含子保留和3'剪接位点改变的优势,表明PRP18a对3'剪接位点选择有影响。 prp18a突变体的特征是在合成的中型和小型角果树上有短的根,这说明正常表型需要野生型PRP18a功能。我们的研究扩展了植物剪接因子的知识,并为进一步研究植物中PRP18蛋白的功能提供了基础信息和资源。

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