Edwalds-Gilbert Gretchen, Kim Dong-Ho, Silverman Edward, Lin Ren-Jang
Division of Molecular Biology, Beckman Research Institute of the City of Hope, Duarte, California 91010, USA.
RNA. 2004 Feb;10(2):210-20. doi: 10.1261/rna.5151404.
The Saccharomyces cerevisiae splicing factor Prp2 is an RNA-dependent ATPase required before the first transesterification reaction in pre-mRNA splicing. Prp2 binds to the spliceosome in the absence of ATP and is released following ATP hydrolysis. It contains three domains: a unique N-terminal domain, a helicase domain that is highly conserved in the DExD/H protein family, and a C-terminal domain that is conserved in spliceosomal DEAH proteins Prp2, Prp16, Prp22, and Prp43. We examined the role of each domain of Prp2 by deletion mutagenesis. Whereas deletions of either the helicase or C-terminal domain are lethal, deletions in the N-terminal domain have no detectable effect on Prp2 activity. Overexpression of the C-terminal domain of Prp2 exacerbates the temperature-sensitive phenotype of a prp2(Ts) strain, suggesting that the C-domain interferes with the activity of the Prp2(Ts) protein. A genetic approach was then taken to study interactions between Prp2 and the spliceosome. Previously, we isolated dominant negative mutants in the helicase domain of Prp2 that inhibit the activity of wild-type Prp2 when the mutant protein is overexpressed. We mutagenized one prp2 release mutant gene and screened for loss of dominant negative function. Several weak binding mutants were isolated and mapped to the C terminus of Prp2, further indicating the importance of the C terminus in spliceosome binding. This study is the first to indicate that amino acid substitutions outside the helicase domain can abolish spliceosome contact and splicing activity of a spliceosomal DEAH protein.
酿酒酵母剪接因子Prp2是一种RNA依赖性ATP酶,在mRNA前体剪接的第一次转酯反应之前发挥作用。Prp2在没有ATP的情况下与剪接体结合,并在ATP水解后释放。它包含三个结构域:一个独特的N端结构域、一个在DExD/H蛋白家族中高度保守的解旋酶结构域,以及一个在剪接体DEAH蛋白Prp2、Prp16、Prp22和Prp43中保守的C端结构域。我们通过缺失诱变研究了Prp2每个结构域的作用。虽然解旋酶结构域或C端结构域的缺失是致死性的,但N端结构域的缺失对Prp2活性没有可检测到的影响。Prp2 C端结构域的过表达加剧了prp2(Ts)菌株的温度敏感表型,这表明C结构域干扰了Prp2(Ts)蛋白的活性。然后采用遗传学方法研究Prp2与剪接体之间的相互作用。此前,我们在Prp2的解旋酶结构域中分离出显性负突变体,当突变蛋白过表达时,这些突变体抑制野生型Prp2的活性。我们对一个prp2释放突变基因进行诱变,并筛选显性负功能的丧失。分离出几个弱结合突变体,并将其定位到Prp2的C末端,进一步表明C末端在剪接体结合中的重要性。这项研究首次表明,解旋酶结构域之外的氨基酸取代可以消除剪接体DEAH蛋白与剪接体的接触和剪接活性。