Ranjan Amitabh, Mattijssen Sandy, Charlly Nithin, Gallardo Isabel Cruz, Pitman Leah F, Coleman Jennifer C, Conte Maria R, Maraia Richard J
Section on Molecular and Cellular Biology, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD.
Randall Centre for Cell and Molecular Biophysics, King's College London, London SE1 1UL, UK.
bioRxiv. 2024 Nov 1:2024.11.01.621267. doi: 10.1101/2024.11.01.621267.
LARP4 interacts with poly(A)-binding protein (PABP) to protect mRNAs from deadenylation and decay, and recent data indicate it can direct the translation of functionally related mRNA subsets. LARP4 was known to bind RACK1, a ribosome-associated protein, although the specific regions involved, and relevance had been undetermined. Here, yeast two-hybrid domain mapping followed by other methods identified positions 615-625 in conserved region-2 (CR2) of LARP4 (and LARP4B) as directly binding RACK1 region 200-317. Consistent with these results, AlphaFold2-multimer predicted high confidence interaction of CR2 with RACK1 propellers 5-6. CR2 mutations strongly decreased LARP4 association with cellular RACK1 and ribosomes by multiple assays, whereas less effect was observed for PABP association, consistent with independent interactions. CR2 mutations decreased LARP4 ability to optimally stabilize a β-globin mRNA reporter containing an AU-rich element (ARE) more significantly than a β-globin and other reporters lacking this element. While polysome profiles indicate the β-glo-ARE mRNA is inefficiently translated, consistent with published data, we show that LARP4 increases its translation whereas the LARP4-CR2 mutant is impaired. Analysis of nanoLuc-ARE mRNA for production of luciferase activity confirmed LARP4 promotes translation efficiency while CR2 mutations are disabling. Thus, LARP4 CR2-mediated interaction with RACK1 can promote translational efficiency of some mRNAs.
LARP4与多聚腺苷酸结合蛋白(PABP)相互作用,以保护mRNA免于去腺苷酸化和降解,并且最近的数据表明它可以指导功能相关的mRNA亚群的翻译。已知LARP4与核糖体相关蛋白RACK1结合,尽管所涉及的特定区域及其相关性尚未确定。在这里,通过酵母双杂交结构域定位及其他方法确定了LARP4(和LARP4B)保守区域2(CR2)中的615-625位直接与RACK1的200-317区域结合。与这些结果一致,AlphaFold2多聚体预测CR2与RACK1螺旋桨5-6有高可信度的相互作用。通过多种测定,CR2突变显著降低了LARP4与细胞RACK1和核糖体的结合,而对PABP结合的影响较小,这与独立相互作用一致。CR2突变比缺乏该元件的β-珠蛋白和其他报告基因更显著地降低了LARP4最佳稳定含有富含AU元件(ARE)的β-珠蛋白mRNA报告基因的能力。虽然多核糖体图谱表明β-glo-ARE mRNA翻译效率低下,这与已发表的数据一致,但我们表明LARP4增加了其翻译,而LARP4-CR2突变体则受损。对用于产生荧光素酶活性的nanoLuc-ARE mRNA的分析证实LARP4促进翻译效率,而CR2突变则使其丧失功能。因此,LARP4 CR2介导的与RACK1的相互作用可以促进某些mRNA的翻译效率。