Manchester Interdisciplinary Biocentre, University of Manchester, Manchester, UK.
Nucleic Acids Res. 2011 Sep 1;39(17):7764-74. doi: 10.1093/nar/gkr474. Epub 2011 Jun 28.
Dhh1 and Pat1 in yeast are mRNA decapping activators/translational repressors thought to play key roles in the transition of mRNAs from translation to degradation. However, little is known about the physical and functional relationships between these proteins and the translation machinery. We describe a previously unknown type of diauxic shift-dependent modulation of the intracellular locations of Dhh1 and Pat1. Like the formation of P bodies, this phenomenon changes the spatial relationship between components involved in translation and mRNA degradation. We report significant spatial separation of Dhh1 and Pat1 from ribosomes in exponentially growing cells. Moreover, biochemical analyses reveal that these proteins are excluded from polysomal complexes in exponentially growing cells, indicating that they may not be associated with active states of the translation machinery. In contrast, under diauxic growth shift conditions, Dhh1 and Pat1 are found to co-localize with polysomal complexes. This work suggests that Dhh1 and Pat1 functions are modulated by a re-localization mechanism that involves eIF4A. Pull-down experiments reveal that the intracellular binding partners of Dhh1 and Pat1 change as cells undergo the diauxic growth shift. This reveals a new dimension to the relationship between translation activity and interactions between mRNA, the translation machinery and decapping activator proteins.
酵母中的 Dhh1 和 Pat1 被认为是 mRNA 去帽激活因子/翻译抑制因子,在 mRNA 从翻译到降解的转变中发挥关键作用。然而,人们对这些蛋白质与翻译机制之间的物理和功能关系知之甚少。我们描述了一种以前未知的二型生长依赖性调节 Dhh1 和 Pat1 细胞内位置的现象。与 P 体的形成一样,这种现象改变了参与翻译和 mRNA 降解的成分之间的空间关系。我们报告说,在指数生长期细胞中,Dhh1 和 Pat1 与核糖体的空间分离显著。此外,生化分析表明,这些蛋白质在指数生长期细胞的多核糖体复合物中被排除,表明它们可能与翻译机制的活跃状态无关。相比之下,在二型生长转换条件下,Dhh1 和 Pat1 被发现与多核糖体复合物共定位。这项工作表明,Dhh1 和 Pat1 的功能受到一种重新定位机制的调节,该机制涉及 eIF4A。下拉实验表明,细胞经历二型生长转换时,Dhh1 和 Pat1 的细胞内结合伴侣发生变化。这揭示了翻译活性与 mRNA、翻译机制和去帽激活蛋白之间相互作用之间关系的一个新维度。