Kraushar Matthew L, Thompson Kevin, Wijeratne H R Sagara, Viljetic Barbara, Sakers Kristina, Marson Justin W, Kontoyiannis Dimitris L, Buyske Steven, Hart Ronald P, Rasin Mladen-Roko
Department of Neuroscience and Cell Biology, Rutgers University, Robert Wood Johnson Medical School, Piscataway, NJ 08854;
Division of Immunology, Biomedical Sciences Research Center Alexander Fleming, 16672 Vari, Greece; and.
Proc Natl Acad Sci U S A. 2014 Sep 9;111(36):E3815-24. doi: 10.1073/pnas.1408305111. Epub 2014 Aug 25.
Precise spatiotemporal control of mRNA translation machinery is essential to the development of highly complex systems like the neocortex. However, spatiotemporal regulation of translation machinery in the developing neocortex remains poorly understood. Here, we show that an RNA-binding protein, Hu antigen R (HuR), regulates both neocorticogenesis and specificity of neocortical translation machinery in a developmental stage-dependent manner in mice. Neocortical absence of HuR alters the phosphorylation states of initiation and elongation factors in the core translation machinery. In addition, HuR regulates the temporally specific positioning of functionally related mRNAs into the active translation sites, the polysomes. HuR also determines the specificity of neocortical polysomes by defining their combinatorial composition of ribosomal proteins and initiation and elongation factors. For some HuR-dependent proteins, the association with polysomes likewise depends on the eukaryotic initiation factor 2 alpha kinase 4, which associates with HuR in prenatal developing neocortices. Finally, we found that deletion of HuR before embryonic day 10 disrupts both neocortical lamination and formation of the main neocortical commissure, the corpus callosum. Our study identifies a crucial role for HuR in neocortical development as a translational gatekeeper for functionally related mRNA subgroups and polysomal protein specificity.
对mRNA翻译机制进行精确的时空控制对于像新皮质这样高度复杂系统的发育至关重要。然而,发育中的新皮质中翻译机制的时空调节仍知之甚少。在这里,我们表明一种RNA结合蛋白,Hu抗原R(HuR),在小鼠中以发育阶段依赖的方式调节新皮质发生和新皮质翻译机制的特异性。新皮质中缺乏HuR会改变核心翻译机制中起始和延伸因子的磷酸化状态。此外,HuR调节功能相关mRNA在时间上特定地定位到活跃翻译位点,即多核糖体。HuR还通过定义核糖体蛋白以及起始和延伸因子的组合组成来确定新皮质多核糖体的特异性。对于一些依赖HuR的蛋白质,与多核糖体的结合同样依赖于真核起始因子2α激酶4,其在产前发育的新皮质中与HuR相关联。最后,我们发现胚胎第10天之前缺失HuR会破坏新皮质分层以及主要的新皮质连合即胼胝体的形成。我们的研究确定了HuR在新皮质发育中的关键作用,它作为功能相关mRNA亚组和多核糖体蛋白特异性的翻译守门人。