Department of Molecular Biophysics and Biochemistry, Howard Hughes Medical Institute, Yale University School of Medicine, New Haven, Connecticut 06536, USA.
Genes Dev. 2011 May 15;25(10):1078-90. doi: 10.1101/gad.2045411.
Despite the lack of an exon junction complex (EJC), Saccharomyces cerevisiae contains Fal1p, a DEAD-box helicase highly homologous to eIF4AIII. We show that yeast Fal1p is functionally orthologous to human eIF4AIII, since expression of human eIF4AIII complements both the lethal phenotype and the 18S rRNA biogenesis defect of fal1Δ(null) yeast. We further show that yeast Fal1p interacts genetically with an eIF4G-like protein, Sgd1p: One allele of sgd1 acts as a dominant extragenic suppressor of a mutation in a predicted RNA-binding residue of Fal1p, whereas another synthetically exacerbates the growth defect of this fal1 mutation. Both sgd1 mutations map to a single, short, evolutionarily conserved patch that matches key eIF4A-interacting residues of eIF4G when superimposed on the X-ray structure of the eIF4A/eIF4G complex. We demonstrate direct physical interactions between yeast Sgd1p and Fal1p, and between their human orthologs (NOM1 and eIF4AIII) in vitro and in vivo, identifying human NOM1 as a missing eIF4G-like interacting partner of eIF4AIII. Knockdown of eIF4AIII and NOM1 in human cells demonstrates that this novel conserved eIF4A/eIF4G-like complex acts in pre-rRNA processing, adding to the established functions of eIF4A/eIF4G in translation initiation and of eIF4AIII as the core component of the EJC.
尽管缺乏外显子衔接复合物 (EJC),酿酒酵母仍含有 Fal1p,这是一种与 eIF4AIII 高度同源的 DEAD-box 解旋酶。我们表明,酵母 Fal1p 在功能上与人类 eIF4AIII 是同源的,因为表达人类 eIF4AIII 可弥补 fal1Δ(null)酵母的致死表型和 18S rRNA 生物发生缺陷。我们进一步表明,酵母 Fal1p 在遗传上与一种 eIF4G 样蛋白 Sgd1p 相互作用:sgd1 的一个等位基因充当 Fal1p 中预测的 RNA 结合残基突变的显性外显抑制子,而另一个等位基因则会加剧该 fal1 突变的生长缺陷。这两个 sgd1 突变都映射到一个单一的、短的、进化上保守的斑块上,当与 X 射线结构的 eIF4A/eIF4G 复合物叠加时,该斑块与 eIF4G 的关键 eIF4A 相互作用残基匹配。我们证明了酵母 Sgd1p 和 Fal1p 之间以及它们的人类同源物(NOM1 和 eIF4AIII)之间的直接物理相互作用,在体外和体内均证明了人类 NOM1 是 eIF4AIII 的缺失 eIF4G 样相互作用伴侣。在人类细胞中敲低 eIF4AIII 和 NOM1 表明,这个新的保守的 eIF4A/eIF4G 样复合物在 pre-rRNA 加工中起作用,这增加了 eIF4A/eIF4G 在翻译起始中的已有功能和 eIF4AIII 作为 EJC 的核心组成部分的功能。