Fu Rui, Olsen Myanna T, Webb Kristofor, Bennett Eric J, Lykke-Andersen Jens
Division of Biological Sciences, University of California San Diego, La Jolla, California 92093, USA.
RNA. 2016 Mar;22(3):373-82. doi: 10.1261/rna.054833.115. Epub 2016 Jan 13.
The zinc finger protein tristetraprolin (TTP) promotes translation repression and degradation of mRNAs containing AU-rich elements (AREs). Although much attention has been directed toward understanding the decay process and machinery involved, the translation repression role of TTP has remained poorly understood. Here we identify the cap-binding translation repression 4EHP-GYF2 complex as a cofactor of TTP. Immunoprecipitation and in vitro pull-down assays demonstrate that TTP associates with the 4EHP-GYF2 complex via direct interaction with GYF2, and mutational analyses show that this interaction occurs via conserved tetraproline motifs of TTP. Mutant TTP with diminished 4EHP-GYF2 binding is impaired in its ability to repress a luciferase reporter ARE-mRNA. 4EHP knockout mouse embryonic fibroblasts (MEFs) display increased induction and slower turnover of TTP-target mRNAs as compared to wild-type MEFs. Our work highlights the function of the conserved tetraproline motifs of TTP and identifies 4EHP-GYF2 as a cofactor in translational repression and mRNA decay by TTP.
锌指蛋白Tristetraprolin(TTP)可促进含富AU元件(ARE)的mRNA的翻译抑制和降解。尽管人们已将大量注意力集中在理解所涉及的衰变过程和机制上,但TTP的翻译抑制作用仍知之甚少。在此,我们鉴定出帽结合翻译抑制因子4EHP-GYF2复合物是TTP的一个辅助因子。免疫沉淀和体外下拉实验表明,TTP通过与GYF2的直接相互作用与4EHP-GYF2复合物结合,突变分析表明这种相互作用通过TTP保守的四脯氨酸基序发生。与4EHP-GYF2结合减少的突变型TTP抑制荧光素酶报告基因ARE-mRNA的能力受损。与野生型小鼠胚胎成纤维细胞(MEF)相比,4EHP基因敲除的MEF中TTP靶标mRNA的诱导增加且周转较慢。我们的工作突出了TTP保守四脯氨酸基序的功能,并鉴定出4EHP-GYF2是TTP在翻译抑制和mRNA衰变中的一个辅助因子。