Brooks Mark A, Dziembowski Andrzej, Quevillon-Cheruel Sophie, Henriot Véronique, Faux Céline, van Tilbeurgh Herman, Séraphin Bertrand
IBBMC-CNRS UMR8619, IFR 115, Université Paris-Sud, Orsay, France.
Nucleic Acids Res. 2009 Jan;37(1):129-43. doi: 10.1093/nar/gkn894. Epub 2008 Nov 25.
The RES complex was previously identified in yeast as a splicing factor affecting nuclear pre-mRNA retention. This complex was shown to contain three subunits, namely Snu17, Bud13 and Pml1, but its mode of action remains ill-defined. To obtain insights into its function, we have performed a structural investigation of this factor. Production of a short N-terminal truncation of residues that are apparently disordered allowed us to determine the X-ray crystallographic structure of Pml1. This demonstrated that it consists mainly of a FHA domain, a fold which has been shown to mediate interactions with phosphothreonine-containing peptides. Using a new sensitive assay based on alternative splice-site choice, we show, however, that mutation of the putative phosphothreonine-binding pocket of Pml1 does not affect pre-mRNA splicing. We have also investigated how Pml1 integrates into the RES complex. Production of recombinant complexes, combined with serial truncation and mutagenesis of their subunits, indicated that Pml1 binds to Snu17, which itself contacts Bud13. This analysis allowed us to demarcate the binding sites involved in the formation of this assembly. We propose a model of the organization of the RES complex based on these results, and discuss the functional consequences of this architecture.
RES复合物先前在酵母中被鉴定为一种影响核前体mRNA滞留的剪接因子。该复合物显示包含三个亚基,即Snu17、Bud13和Pml1,但其作用模式仍不清楚。为了深入了解其功能,我们对该因子进行了结构研究。产生一段明显无序的N端短截短序列,使我们能够确定Pml1的X射线晶体结构。这表明它主要由一个FHA结构域组成,该结构域已被证明可介导与含磷酸苏氨酸肽的相互作用。然而,使用基于可变剪接位点选择的新的灵敏检测方法,我们发现Pml1假定的磷酸苏氨酸结合口袋的突变并不影响前体mRNA剪接。我们还研究了Pml1如何整合到RES复合物中。重组复合物的产生,结合其亚基的连续截短和诱变,表明Pml1与Snu17结合,而Snu17本身与Bud13接触。该分析使我们能够划定参与该组装形成的结合位点。基于这些结果,我们提出了RES复合物的组织模型,并讨论了这种结构的功能后果。