D'Ambrogio Andrea, Buratti Emanuele, Stuani Cristiana, Guarnaccia Corrado, Romano Maurizio, Ayala Youhna M, Baralle Francisco E
International Centre for Genetic Engineering and Biotechnology (ICGEB), 34012 Trieste, Italy.
Nucleic Acids Res. 2009 Jul;37(12):4116-26. doi: 10.1093/nar/gkp342. Epub 2009 May 8.
Nuclear factor TDP-43 has been reported to play multiple roles in transcription, pre-mRNA splicing, mRNA stability and mRNA transport. From a structural point of view, TDP-43 is a member of the hnRNP protein family whose structure includes two RRM domains flanked by the N-terminus and C-terminal regions. Like many members of this family, the C-terminal region can interact with cellular factors and thus serve to modulate its function. Previously, we have described that TDP-43 binds to several members of the hnRNP A/B family through this region. In this work, we set up a coupled minigene/siRNA cellular system that allows us to obtain in vivo data to address the functional significance of TDP-43-recruited hnRNP complex formation. Using this method, we have finely mapped the interaction between TDP-43 and the hnRNP A2 protein to the region comprised between amino acid residues 321 and 366. Our results provide novel details of protein-protein interactions in splicing regulation. In addition, we provide further insight on TDP-43 functional properties, particularly the lack of effects, as seen with our assays, of the disease-associated mutations that fall within the TDP-43 321-366 region: Q331K, M337V and G348C.
据报道,核因子TDP-43在转录、前体mRNA剪接、mRNA稳定性和mRNA运输中发挥多种作用。从结构角度来看,TDP-43是hnRNP蛋白家族的成员,其结构包括两个RRM结构域,两侧分别是N端和C端区域。与该家族的许多成员一样,C端区域可以与细胞因子相互作用,从而调节其功能。此前,我们已经描述过TDP-43通过该区域与hnRNP A/B家族的几个成员结合。在这项工作中,我们建立了一个耦合的小基因/siRNA细胞系统,使我们能够获得体内数据,以探讨TDP-43招募的hnRNP复合物形成的功能意义。使用这种方法,我们已经精确地将TDP-43与hnRNP A2蛋白之间的相互作用定位到氨基酸残基321和366之间的区域。我们的结果提供了剪接调控中蛋白质-蛋白质相互作用的新细节。此外,我们对TDP-43的功能特性有了进一步的了解,特别是在我们的实验中,位于TDP-43 321-366区域内的疾病相关突变:Q331K、M337V和G348C没有产生影响。