首页> 美国卫生研究院文献>Nucleic Acids Research >An in vivo genetic screen for genes involved in spliced leader trans-splicing indicates a crucial role for continuous de novo spliced leader RNP assembly
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An in vivo genetic screen for genes involved in spliced leader trans-splicing indicates a crucial role for continuous de novo spliced leader RNP assembly

机译:体内对参与剪接的前导者反式剪接的基因的遗传筛选表明连续的从头剪接的前导者RNP装配起着至关重要的作用

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摘要

Spliced leader (SL) trans-splicing is a critical element of gene expression in a number of eukaryotic groups. This process is arguably best understood in nematodes, where biochemical and molecular studies in Caenorhabditis elegans and Ascaris suum have identified key steps and factors involved. Despite this, the precise details of SL trans-splicing have yet to be elucidated. In part, this is because the systematic identification of the molecules involved has not previously been possible due to the lack of a specific phenotype associated with defects in this process. We present here a novel GFP-based reporter assay that can monitor SL1 trans-splicing in living C. elegans. Using this assay, we have identified mutants in sna-1 that are defective in SL trans-splicing, and demonstrate that reducing function of SNA-1, SNA-2 and SUT-1, proteins that associate with SL1 RNA and related SmY RNAs, impairs SL trans-splicing. We further demonstrate that the Sm proteins and pICln, SMN and Gemin5, which are involved in small nuclear ribonucleoprotein assembly, have an important role in SL trans-splicing. Taken together these results provide the first in vivo evidence for proteins involved in SL trans-splicing, and indicate that continuous replacement of SL ribonucleoproteins consumed during trans-splicing reactions is essential for effective trans-splicing.
机译:剪接的前导(SL)转拼是许多真核生物组中基因表达的关键要素。这个过程在线虫中可以说是最好的理解,在秀丽隐杆线虫和猪A虫的生化和分子研究中,已经确定了涉及的关键步骤和因素。尽管如此,SL转拼的确切细节尚未阐明。部分原因是由于缺少与该过程中的缺陷相关的特定表型,因此以前不可能对涉及的分子进行系统的鉴定。我们在这里提出了一种新颖的基于GFP的报告基因检测,可以监测活的秀丽隐杆线虫中的SL1反式剪接。使用这种测定方法,我们已经确定了sna-1中的SL反式剪接有缺陷的突变体,并证明了SNA-1,SNA-2和SUT-1(与SL1 RNA和相关SmY RNA相关的蛋白)的功能降低,损害SL转拼。我们进一步证明,参与小核核糖核蛋白装配的Sm蛋白和pICln,SMN和Gemin5在SL反式剪接中具有重要作用。综上所述,这些结果为涉及SL反式剪接的蛋白质提供了第一个体内证据,并表明连续置换在反式剪接反应过程中消耗的SL核糖核蛋白对于有效的反式剪接至关重要。

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