Martino Luigi, Pennell Simon, Kelly Geoff, Busi Baptiste, Brown Paul, Atkinson R Andrew, Salisbury Nicholas J H, Ooi Zi-Hao, See Kang-Wei, Smerdon Stephen J, Alfano Caterina, Bui Tam T T, Conte Maria R
Randall Division of Cell and Molecular Biophysics, King's College London, New Hunt's House, Guy's Campus, London SE1 1UL, UK.
Division of Molecular Structure, MRC National Institute for Medical Research, The Ridgeway, Mill Hill, London NW7 1AA, UK.
Nucleic Acids Res. 2015 Jan;43(1):645-60. doi: 10.1093/nar/gku1287. Epub 2014 Dec 8.
The La-related proteins (LARPs) form a diverse group of RNA-binding proteins characterized by the possession of a composite RNA binding unit, the La module. The La module comprises two domains, the La motif (LaM) and the RRM1, which together recognize and bind to a wide array of RNA substrates. Structural information regarding the La module is at present restricted to the prototypic La protein, which acts as an RNA chaperone binding to 3' UUUOH sequences of nascent RNA polymerase III transcripts. In contrast, LARP6 is implicated in the regulation of collagen synthesis and interacts with a specific stem-loop within the 5' UTR of the collagen mRNA. Here, we present the structure of the LaM and RRM1 of human LARP6 uncovering in both cases considerable structural variation in comparison to the equivalent domains in La and revealing an unprecedented fold for the RRM1. A mutagenic study guided by the structures revealed that RNA recognition requires synergy between the LaM and RRM1 as well as the participation of the interdomain linker, probably in realizing tandem domain configurations and dynamics required for substrate selectivity. Our study highlights a considerable complexity and plasticity in the architecture of the La module within LARPs.
La相关蛋白(LARPs)构成了一组多样的RNA结合蛋白,其特征是拥有一个复合RNA结合单元——La模块。La模块由两个结构域组成,即La基序(LaM)和RRM1,它们共同识别并结合多种RNA底物。目前,关于La模块的结构信息仅限于原型La蛋白,该蛋白作为一种RNA伴侣,与新生RNA聚合酶III转录本的3' UUUOH序列结合。相比之下,LARP6参与胶原蛋白合成的调控,并与胶原蛋白mRNA 5' UTR内的一个特定茎环相互作用。在此,我们展示了人LARP6的LaM和RRM1的结构,结果表明,与La中的等效结构域相比,这两个结构域在结构上都有相当大的变化,并且RRM1呈现出前所未有的折叠形式。基于这些结构进行的诱变研究表明,RNA识别需要LaM和RRM1之间的协同作用以及结构域间连接子的参与,这可能是为了实现底物选择性所需的串联结构域构型和动力学。我们的研究突出了LARPs中La模块结构的相当大的复杂性和可塑性。