Rain J C, Tartakoff A M, Krämer A, Legrain P
Laboratoire du Métabolisme des ARN, URA CNRS 1149, Paris, France.
RNA. 1996 Jun;2(6):535-50.
The yeast Prp9p, Prp11p, Prp21p proteins form a multimolecular complex identified as the SF3a splicing factor in higher eukaryotes. This factor is required for the assembly of the prespliceosome. Prp21p interacts with both Prp9p and Prp11p, but the molecular basis of these interactions is unknown. Prp21p, its human homologue, and the so-called SWAP proteins share a tandemly repeated motif, the surp module. Given the evolutionary conservation and the role of SWAP proteins as splicing regulators, it has been proposed that surp motifs are essential for interactions between Prp21p and other splicing factors. In order to characterize functional domains of Prp21p and to identify potential additional functions of this protein, we isolated a series of heat-sensitive prp21 mutants. Our results indicate that prp21 heat-sensitive mutations are associated with defects in the interaction with Prp9p, but not with Prp11p. Interestingly, most heat-sensitive point mutants associate a strong splicing defect with a pre-mRNA nuclear export phenotype, as does the prp9-1 heat-sensitive mutant. Deletion analyses led to the definition of domains required for viability. These domains are responsible for the interaction with Prp9p and Prp11p and are conserved through evolution. They do not include the most conserved surp1 module, suggesting that the conservation of this motif in two families of proteins may reflect a still unknown function dispensable in yeast under standard conditions.
酵母中的Prp9p、Prp11p和Prp21p蛋白形成一种多分子复合物,在高等真核生物中被鉴定为SF3a剪接因子。该因子是前剪接体组装所必需的。Prp21p与Prp9p和Prp11p都相互作用,但这些相互作用的分子基础尚不清楚。Prp21p、其人类同源物以及所谓的SWAP蛋白共享一个串联重复基序,即surp模块。鉴于进化保守性以及SWAP蛋白作为剪接调节因子的作用,有人提出surp基序对于Prp21p与其他剪接因子之间的相互作用至关重要。为了表征Prp21p的功能结构域并确定该蛋白潜在的其他功能,我们分离出了一系列对温度敏感的prp21突变体。我们的结果表明,prp21温度敏感突变与与Prp9p相互作用的缺陷有关,但与Prp11p无关。有趣的是,大多数温度敏感点突变体都将强烈的剪接缺陷与前体mRNA核输出表型联系起来,prp9-1温度敏感突变体也是如此。缺失分析确定了存活所需的结构域。这些结构域负责与Prp9p和Prp11p相互作用,并且在进化过程中是保守的。它们不包括最保守的surp1模块,这表明该基序在两类蛋白中的保守性可能反映了在标准条件下酵母中仍未知的、非必需的功能。